Review



prism type tirf microscope  (Nikon)


Bioz Verified Symbol Nikon is a verified supplier  
  • Logo
  • About
  • News
  • Press Release
  • Team
  • Advisors
  • Partners
  • Contact
  • Bioz Stars
  • Bioz vStars
  • 99

    Structured Review

    Nikon prism type tirf microscope
    Prism Type Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 11616 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/ECLIPSE+Ti2/pmc13035910-465-11-14
    Average 99 stars, based on 11616 article reviews
    prism type tirf microscope - by Bioz Stars, 2026-09
    99/100 stars

    Images

    Related Articles

    Fluorescence:

    Article Title: Three-Dimensional and Chemical Mapping of Intracellular Signalling Nanodomains in Health and Disease with Enhanced Expansion Microscopy
    Article Snippet: .. Samples were imaged on bespoke single-molecule localisation systems consisting of Nikon TE2000 total internal reflection fluorescence (TIRF) microscopes equipped with 60x 1.49 NA TIRF objectives. .. A 671 nm diode laser (Viasho, China) beam was focused either in oblique (HiLo) configuration8 for dSTORM in imaging cell interior or at an angle greater than the TIRF critical angle, confirmed by the detection of TIR light at the back focal plane of the objective, for cell surface RyR imaging with DNA-PAINT as described previously in Jayasinghe et al supplementary methods.3 Single molecule emissions were detected with a 5.5 megapixel sCMOS camera (Andor, Belfast) and acquired into time series at 10-20 Hz using the freely-available Python Microscopy Environment (PYME) software (www.python-microscopy.org) which utilises an algorithm which corrects for the non-uniform pixel noise in single molecule image data acquired with sCMOS cameras, described previously.9 PYME was used for localising the fluorophore positions and rendering the point data of dSTORM and DNA-PAINT experiments onto 5 nm and 1 nm pixel grids for further spatial analyses.

    Imaging:

    Article Title: Optogenetic control of mechanotransduction based on light-induced homodimerization of talin
    Article Snippet: .. TIRF imaging of live cells was performed using a Nikon Eclipse Ti inverted microscope (Nikon Instruments), equipped with a motorized TIRF/FRAP illuminator (iLas2, Gataca Systems), with a polarization-maintaining optical fiber-coupled laser combiner (100 mW 405 nm, 60 mW 488 nm, 50 mW 561 nm, and 100 mW 642 nm solid-state lasers, Omicron Laserage), a light emitting diode-based epifluorescence excitation source (SOLA, Lumencor), an ORCA-flash 4.0 sCMOS camera (Hamamatsu), a 100× N.A. .. 1.49 Apo TIRF objective lens (Nikon Instruments), and an Okolab stage-top chamber with CO 2 and temperature control (Okolab, Italy).

    Inverted Microscopy:

    Article Title: Optogenetic control of mechanotransduction based on light-induced homodimerization of talin
    Article Snippet: .. TIRF imaging of live cells was performed using a Nikon Eclipse Ti inverted microscope (Nikon Instruments), equipped with a motorized TIRF/FRAP illuminator (iLas2, Gataca Systems), with a polarization-maintaining optical fiber-coupled laser combiner (100 mW 405 nm, 60 mW 488 nm, 50 mW 561 nm, and 100 mW 642 nm solid-state lasers, Omicron Laserage), a light emitting diode-based epifluorescence excitation source (SOLA, Lumencor), an ORCA-flash 4.0 sCMOS camera (Hamamatsu), a 100× N.A. .. 1.49 Apo TIRF objective lens (Nikon Instruments), and an Okolab stage-top chamber with CO 2 and temperature control (Okolab, Italy).

    Article Title: PILS-Nir1 is a sensitive phosphatidic acid biosensor that reveals mechanisms of lipid production
    Article Snippet: .. Transfected cells were imaged on a Nikon motorized TIRF illuminator mounted on a Nikon TiE inverted microscope stand, using a 100× 1.45 NA plan-apochromatic objective. ..

    Article Title: A conserved mechanism for the retrieval of polyubiquitinated proteins from cilia
    Article Snippet: Equal volumes of cell suspension and cr-TIRF buffer (5 mM HEPES pH 7.5, 5 mM EGTA pH 8.0) were mixed on glass coverslips (VWR, #48366-227), then mounted on glass microscope slides (Kemtech #0303-2122) using white petroleum (Vaseline, CAS #8009-03-8) and imaged at 23 °C. .. TIRF microscopy was performed using a Nikon Ti-E motorized inverted microscope with TIRF illuminator equipped with Agilent laser launch 488 and 561 nm laser lines and a Hamamatsu ImageEM EM-CCD camera fitted with DualView for simultaneous 2-color acquisition and 100x oil-immersion objective. .. Equal volumes of cell suspension and cr-TIRF buffer (5 mM HEPES pH 7.5, 5 mM EGTA pH 8.0) were mixed on glass coverslips (VWR, #48366-227), then mounted on glass microscope slides (Kemtech #0303-2122) using white petroleum (Vaseline, CAS #8009-03-8) and imaged at 23 °C.

    Article Title: Tolerance to the antifungal drug fluconazole is mediated by tuning cytoplasmic fluidity
    Article Snippet: .. The GEM nanoparticles were imaged, using TIRF on a Nikon Ti eclipse inverted microscope (Nikon France S.A.S., Champigny-sur-Marne, France) equipped with an iLas scan head (Roper scientific, Evry, France), an iXon 888 EMCCD camera (Andor technology, Belfast, UK) and a 100x CFI-APO-TIRF oil NA 1.49 objective as described with 30 msec image acquisition and readout time for all experiments except those shown in which used 10 msec image acquisition and readout time. .. Temperature was controlled with an Okolab incubator (Ottaviano, Italy) at 30°C for all acquisitions.

    Transfection:

    Article Title: PILS-Nir1 is a sensitive phosphatidic acid biosensor that reveals mechanisms of lipid production
    Article Snippet: .. Transfected cells were imaged on a Nikon motorized TIRF illuminator mounted on a Nikon TiE inverted microscope stand, using a 100× 1.45 NA plan-apochromatic objective. ..

    Microscopy:

    Article Title: A conserved mechanism for the retrieval of polyubiquitinated proteins from cilia
    Article Snippet: Equal volumes of cell suspension and cr-TIRF buffer (5 mM HEPES pH 7.5, 5 mM EGTA pH 8.0) were mixed on glass coverslips (VWR, #48366-227), then mounted on glass microscope slides (Kemtech #0303-2122) using white petroleum (Vaseline, CAS #8009-03-8) and imaged at 23 °C. .. TIRF microscopy was performed using a Nikon Ti-E motorized inverted microscope with TIRF illuminator equipped with Agilent laser launch 488 and 561 nm laser lines and a Hamamatsu ImageEM EM-CCD camera fitted with DualView for simultaneous 2-color acquisition and 100x oil-immersion objective. .. Equal volumes of cell suspension and cr-TIRF buffer (5 mM HEPES pH 7.5, 5 mM EGTA pH 8.0) were mixed on glass coverslips (VWR, #48366-227), then mounted on glass microscope slides (Kemtech #0303-2122) using white petroleum (Vaseline, CAS #8009-03-8) and imaged at 23 °C.

    other:

    Article Title: Suppression of nonsense mutations by small, cyclic peptides
    Article Snippet: Image stacks were recorded using a custom-built, objective-type TIRF microscope, based on a commercial inverted microscope (Eclipse Ti-E, Nikon), at a frame rate of 10 s −1 ( ).



    Similar Products

    94
    Mad City Labs microscope
    Microscope, supplied by Mad City Labs, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/RM21+MicroMirror+TIRF+Microscope/pmc13015893-384-7-8
    Average 94 stars, based on 1 article reviews
    microscope - by Bioz Stars, 2026-09
    94/100 stars
      Buy from Supplier

    86
    Photonics Inc tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Tirf Microscope, supplied by Photonics Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/microscope+tirf/bio_rxiv__64898__2026__04__23__719849-199-5-26
    Average 86 stars, based on 1 article reviews
    tirf microscope - by Bioz Stars, 2026-09
    86/100 stars
      Buy from Supplier

    99
    Nikon prism type tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Prism Type Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/ECLIPSE+Ti2/pmc13035910-465-11-14
    Average 99 stars, based on 1 article reviews
    prism type tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    Nikon tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/Objectives/pm41871101-922-5-7
    Average 99 stars, based on 1 article reviews
    tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    Carl Zeiss axio observer inverted tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Axio Observer Inverted Tirf Microscope, supplied by Carl Zeiss, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/Inverted+microscope+Axio+Observer+3/bio_rxiv__64898__2026__03__16__711994-255-6-11
    Average 99 stars, based on 1 article reviews
    axio observer inverted tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    Nikon orbital tirf nikon ti2e microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Orbital Tirf Nikon Ti2e Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/Objectives/pm41816981-430-28-30
    Average 99 stars, based on 1 article reviews
    orbital tirf nikon ti2e microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    Nikon orbital tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Orbital Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/Objectives/pm41816981-452-35-38
    Average 99 stars, based on 1 article reviews
    orbital tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    Nikon eclipse ti2 e tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Eclipse Ti2 E Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/ECLIPSE+Ti2/pm41811993-186-16-15
    Average 99 stars, based on 1 article reviews
    eclipse ti2 e tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    96
    Bio-Rad solid state laserstacktm 3i n a tirf laser microscope cube 3i n a gene pulser xcell bio rad
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Solid State Laserstacktm 3i N A Tirf Laser Microscope Cube 3i N A Gene Pulser Xcell Bio Rad, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/Gene+Pulser+Xcell+Main+Unit/pm41785860-340-183-196
    Average 96 stars, based on 1 article reviews
    solid state laserstacktm 3i n a tirf laser microscope cube 3i n a gene pulser xcell bio rad - by Bioz Stars, 2026-09
    96/100 stars
      Buy from Supplier

    99
    Nikon custom built tirf microscope
    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative <t>TIRF</t> microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.
    Custom Built Tirf Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/TIRF+Microscopes/ECLIPSE+Ti2/pm41722048-415-6-15
    Average 99 stars, based on 1 article reviews
    custom built tirf microscope - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    Image Search Results


    (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative TIRF microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.

    Journal: bioRxiv

    Article Title: Metal-induced energy transfer uncovers activation-induced axial reorganization of signaling complexes inside cells

    doi: 10.64898/2026.04.23.719849

    Figure Lengend Snippet: (A) Schematic of the surface functionalization strategy: mEGFP-ALFAnb captured into PLL-ALFA bNDAs is stained with EN ATTO643 for MIET-based axial distance measurements. The MIET substrate comprised a 30 nm silica spacer. (B) Representative TIRF microscopy image of EN ATTO643 -stained bNDAs on a MIET substrate. Inset shows a magnified view of the marked region. Scale bars: 10 µm; inset: 1 µm. (C) Representative fluorescence lifetime images of EN ATTO643 on glass (left) and MIET substrates (right). Insets show magnified views of the marked region. Scale bars: 5 µm; insets: 1 µm. (D) Representative normalized fluorescence decay curves of ATTO643 on glass (top) and MIET (bottom) substrates. (E) Per-nanodot fluorescence lifetime distributions on MIET (red; n = 8098 nanodots) and glass substrates (grey; n = 6975 nanodots). Solid lines represent Gaussian fits. (F) Axial distance distribution of ATTO643 from the silica surface ( n = 8098 nanodots). Solid line represents Gaussian fit.

    Article Snippet: Imaging was performed on the TIRF microscope described above at 25°C using 561 nm excitation in imaging buffer containing 50 pM Cy3B-conjugated imager strand F3 (Massive Photonics).

    Techniques: Staining, Microscopy, Fluorescence

    (A) Schematic of the model transmembrane construct ALFAnb-mEGFP-TMD-HaloTag captured into PLL-ALFA NDAs via its extracellular ALFAnb. The extracellular mEGFP stained with EN ATTO643 and the cytosolic HaloTag labeled with HTL-JFX549 report axial distances d 1 and d 2 from the substrate surface, respectively. (B) Representative dual-color TIRF microscopy images showing mEGFP, HTL-JFX549, and merged fluorescence channels with corresponding intensity line profiles along the indicated white dashed lines. Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (C) Representative raw fluorescence lifetime images of EN ATTO643 on glass and MIET substrates (20 nm silica spacer). Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (D) Representative results from single-nanodot fluorescence lifetime analysis of the cell shown in C on glass and MIET substrates. Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (E) Per-nanodot fluorescence lifetime distributions on MIET substrates for EN ATTO643 (red; n = 3428 nanodots, 9 cells) and HTL-JFX549 (magenta; n = 3022 nanodots, 7 cells). Solid lines represent Gaussian fits. (F) MIET calibration curves for EN ATTO643 (red) and HTL-JFX549 (magenta). Dashed lines indicate the axial distances d 1 and d 2 corresponding to the measured lifetimes. (G) Axial distance distributions of EN ATTO643 ( d 1 , red) and HTL-JFX549 ( d 2 , magenta) from the silica surface. Solid lines represent Gaussian fits. Δd marks the axial separation of both fluorescent reporters across the plasma membrane.

    Journal: bioRxiv

    Article Title: Metal-induced energy transfer uncovers activation-induced axial reorganization of signaling complexes inside cells

    doi: 10.64898/2026.04.23.719849

    Figure Lengend Snippet: (A) Schematic of the model transmembrane construct ALFAnb-mEGFP-TMD-HaloTag captured into PLL-ALFA NDAs via its extracellular ALFAnb. The extracellular mEGFP stained with EN ATTO643 and the cytosolic HaloTag labeled with HTL-JFX549 report axial distances d 1 and d 2 from the substrate surface, respectively. (B) Representative dual-color TIRF microscopy images showing mEGFP, HTL-JFX549, and merged fluorescence channels with corresponding intensity line profiles along the indicated white dashed lines. Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (C) Representative raw fluorescence lifetime images of EN ATTO643 on glass and MIET substrates (20 nm silica spacer). Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (D) Representative results from single-nanodot fluorescence lifetime analysis of the cell shown in C on glass and MIET substrates. Insets show magnified views of the marked region. Scale bars: 10 µm; insets: 1 µm. (E) Per-nanodot fluorescence lifetime distributions on MIET substrates for EN ATTO643 (red; n = 3428 nanodots, 9 cells) and HTL-JFX549 (magenta; n = 3022 nanodots, 7 cells). Solid lines represent Gaussian fits. (F) MIET calibration curves for EN ATTO643 (red) and HTL-JFX549 (magenta). Dashed lines indicate the axial distances d 1 and d 2 corresponding to the measured lifetimes. (G) Axial distance distributions of EN ATTO643 ( d 1 , red) and HTL-JFX549 ( d 2 , magenta) from the silica surface. Solid lines represent Gaussian fits. Δd marks the axial separation of both fluorescent reporters across the plasma membrane.

    Article Snippet: Imaging was performed on the TIRF microscope described above at 25°C using 561 nm excitation in imaging buffer containing 50 pM Cy3B-conjugated imager strand F3 (Massive Photonics).

    Techniques: Construct, Staining, Labeling, Microscopy, Fluorescence, Clinical Proteomics, Membrane

    (A) Schematic of the experimental design for probing activation-dependent axial changes of the GP130 IDR in bNDAs. ALFAnb-GP130ΔECD-mEGFP and JAK1-HT labeled with HTL-JFX549 are co-recruited into PLL-ALFA bNDAs, with kinase activity controlled by Ruxo (i) and tyrosine phosphorylation (pTyr, orange) detected with an anti-pTyr antibody (pTyrAb-Dy647) (ii). (B) Representative TIRF microscopy images showing ALFAnb-GP130ΔECD-mEGFP, JAK1-HT labeled with HTL-JFX549, and pTyrAb-Dy647 staining in the presence (+Ruxo, top) and absence (-Ruxo, bottom) of Ruxolitinib. Insets show magnified views of the marked regions. Scale bars: 10 µm; insets: 1 µm. (C) Single-nanodot correlation analysis of GP130ΔECD-mEGFP and JAK1-HT (HTL-JFX549) fluorescence intensities, color-coded by pTyrAb-Dy647 intensity, for +Ruxo (top; n = 7729 nanodots, 15 cells) and -Ruxo (bottom; n = 8174 nanodots, 21 cells) conditions. (D) Representative results from single-nanodot fluorescence lifetime analysis of EN ATTO643 on MIET substrates (20 nm silica spacer) in the presence (+Ruxo, top) and absence (-Ruxo, bottom) of the inhibitor. Insets show magnified views of the marked regions. Scale bars: 10 µm; insets: 1 µm. (E) Per-nanodot fluorescence lifetime distributions under +Ruxo (grey; n = 4460 nanodots, 9 cells) and -Ruxo (red; n = 2689 nanodots, 5 cells) conditions. Solid lines represent Gaussian fits. (F) Axial distance distributions for +Ruxo (grey) and -Ruxo (red) conditions, calculated from the fluorescence lifetimes shown in (E). Solid lines represent Gaussian fits. (G) Model of the three axial states of the GP130 IDR: the resting state with bound JAK1(FS) (10.5 nm), the Ruxo-inhibited state with full-length JAK1 (11.2 nm), and the activated state (6.8 nm). Distances refer to the IDR C-terminus above the inner plasma membrane leaflet.

    Journal: bioRxiv

    Article Title: Metal-induced energy transfer uncovers activation-induced axial reorganization of signaling complexes inside cells

    doi: 10.64898/2026.04.23.719849

    Figure Lengend Snippet: (A) Schematic of the experimental design for probing activation-dependent axial changes of the GP130 IDR in bNDAs. ALFAnb-GP130ΔECD-mEGFP and JAK1-HT labeled with HTL-JFX549 are co-recruited into PLL-ALFA bNDAs, with kinase activity controlled by Ruxo (i) and tyrosine phosphorylation (pTyr, orange) detected with an anti-pTyr antibody (pTyrAb-Dy647) (ii). (B) Representative TIRF microscopy images showing ALFAnb-GP130ΔECD-mEGFP, JAK1-HT labeled with HTL-JFX549, and pTyrAb-Dy647 staining in the presence (+Ruxo, top) and absence (-Ruxo, bottom) of Ruxolitinib. Insets show magnified views of the marked regions. Scale bars: 10 µm; insets: 1 µm. (C) Single-nanodot correlation analysis of GP130ΔECD-mEGFP and JAK1-HT (HTL-JFX549) fluorescence intensities, color-coded by pTyrAb-Dy647 intensity, for +Ruxo (top; n = 7729 nanodots, 15 cells) and -Ruxo (bottom; n = 8174 nanodots, 21 cells) conditions. (D) Representative results from single-nanodot fluorescence lifetime analysis of EN ATTO643 on MIET substrates (20 nm silica spacer) in the presence (+Ruxo, top) and absence (-Ruxo, bottom) of the inhibitor. Insets show magnified views of the marked regions. Scale bars: 10 µm; insets: 1 µm. (E) Per-nanodot fluorescence lifetime distributions under +Ruxo (grey; n = 4460 nanodots, 9 cells) and -Ruxo (red; n = 2689 nanodots, 5 cells) conditions. Solid lines represent Gaussian fits. (F) Axial distance distributions for +Ruxo (grey) and -Ruxo (red) conditions, calculated from the fluorescence lifetimes shown in (E). Solid lines represent Gaussian fits. (G) Model of the three axial states of the GP130 IDR: the resting state with bound JAK1(FS) (10.5 nm), the Ruxo-inhibited state with full-length JAK1 (11.2 nm), and the activated state (6.8 nm). Distances refer to the IDR C-terminus above the inner plasma membrane leaflet.

    Article Snippet: Imaging was performed on the TIRF microscope described above at 25°C using 561 nm excitation in imaging buffer containing 50 pM Cy3B-conjugated imager strand F3 (Massive Photonics).

    Techniques: Activation Assay, Labeling, Activity Assay, Phospho-proteomics, Microscopy, Staining, Fluorescence, Clinical Proteomics, Membrane