|
Photometics Inc
coolsnap hq charge-coupled device camera Coolsnap Hq Charge Coupled Device Camera, supplied by Photometics Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/coolsnap+hq+2+ccd+camera/pmc03378421-210-36-35?v=Photometics+Inc Average 90 stars, based on 1 article reviews
coolsnap hq charge-coupled device camera - by Bioz Stars,
2026-08
90/100 stars
|
Buy from Supplier |
|
BioImaging Solutions Inc
photometrics coolsnap hq2 cooled ccd camera Photometrics Coolsnap Hq2 Cooled Ccd Camera, supplied by BioImaging Solutions Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/coolsnap+hq+2+ccd+camera/bio_rxiv__2020__05__08__084749-292-22-28?v=BioImaging+Solutions+Inc Average 90 stars, based on 1 article reviews
photometrics coolsnap hq2 cooled ccd camera - by Bioz Stars,
2026-08
90/100 stars
|
Buy from Supplier |
|
MicroMax Inc
dark-field microscope coupled with ccd camera emccd coolsnap hq2 Dark Field Microscope Coupled With Ccd Camera Emccd Coolsnap Hq2, supplied by MicroMax Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/coolsnap+hq+2+ccd+camera/pmc03689031-63-16-26?v=MicroMax+Inc Average 90 stars, based on 1 article reviews
dark-field microscope coupled with ccd camera emccd coolsnap hq2 - by Bioz Stars,
2026-08
90/100 stars
|
Buy from Supplier |
|
Bruxton Corp
photometrics coolsnap hq 2 cooled ccd camera Photometrics Coolsnap Hq 2 Cooled Ccd Camera, supplied by Bruxton Corp, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/coolsnap+hq+2+ccd+camera/bio_rxiv__324269-134-9-21?v=Bruxton+Corp Average 90 stars, based on 1 article reviews
photometrics coolsnap hq 2 cooled ccd camera - by Bioz Stars,
2026-08
90/100 stars
|
Buy from Supplier |
|
Roper Scientific Inc
coolsnap hq2 ccd camera ![]() Coolsnap Hq2 Ccd Camera, supplied by Roper Scientific 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/coolsnap+hq+2+ccd+camera/pmc05383399-158-9-13?v=Roper+Scientific+Inc Average 86 stars, based on 1 article reviews
coolsnap hq2 ccd camera - by Bioz Stars,
2026-08
86/100 stars
|
Buy from Supplier |
|
Princeton Instruments
coolsnap hq ccd camera ![]() Coolsnap Hq Ccd Camera, supplied by Princeton Instruments, 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/coolsnap+hq+2+ccd+camera/pmc06456587-181-5-9?v=Princeton+Instruments Average 86 stars, based on 1 article reviews
coolsnap hq ccd camera - by Bioz Stars,
2026-08
86/100 stars
|
Buy from Supplier |
Image Search Results
Journal: eLife
Article Title: Kinesin-4 KIF21B is a potent microtubule pausing factor
doi: 10.7554/eLife.24746
Figure Lengend Snippet: ( A ) Histograms of fluorescence intensities at the initial moment of observation of single molecules of the indicated proteins immobilized on coverslips (symbols) and the corresponding fits with lognormal distributions (lines). n = 5063, 8830 and 12230 molecules; fluorophore density was 0.23, 0.4 and 0.45 µm −2 for GFP, GFP-EB3 and KIF21B-FL-GFP proteins. ( B ) Representative photobleaching time traces of GFP, EB3-GFP and KIF21B-FL-GFP individual molecules (background subtracted). ( C ) Kymographs illustrating MT dynamics in vitro in the presence of 15 µM tubulin with 3% Rhodamine-tubulin and 0.5 nM KIF21B-FL-GFP. Kymographs were generated from the movies acquired using CoolSNAP HQ2 CCD camera (Roper Scientific) with a 1.2-s interval between frames and an exposure time of 100 ms. DOI: http://dx.doi.org/10.7554/eLife.24746.014 10.7554/eLife.24746.015 Figure 3—figure supplements 1—source data 1. An excel sheet with numerical data on the quantification of the KIF21B-FL dimer and photobleaching step analysis represented as plots in . DOI: http://dx.doi.org/10.7554/eLife.24746.015
Article Snippet: Kymographs were generated from the movies acquired using a
Techniques: Fluorescence, In Vitro, Generated
Journal: eLife
Article Title: Kinesin-4 KIF21B is a potent microtubule pausing factor
doi: 10.7554/eLife.24746
Figure Lengend Snippet: ( A ) Kymographs showing the behavior of KIF21B in in vitro reconstitution assays on dynamic MTs grown from Rhodamine-tubulin-labeled seeds in the presence of 15 µM tubulin, 100 nM mCherry-EB3 (red) and 3 nM KIF21B-FL-GFP (green). Kymographs were generated from movies acquired using a Photometrics Evolve 512 EMCCD camera (Roper Scientific) (stream acquisition, exposure time 500 ms). Pausing and catastrophe events are indicated by arrows. ( B ) Quantification of MT seed length-dependent blocking of MT growth by 0.5 nM KIF21B- FL-GFP in the presence of 20 nM mCherry-EB3. 188 MT seeds of different lengths were analyzed in four independent experiments. ( C ) Kymographs illustrating pausing events induced by KIF21B-FL-GFP (0.5 nM) on dynamic MTs in vitro in the presence of 15 µM tubulin, 20 nM mCherry-EB3, 3% Rhodamine-tubulin. MTs were grown from GMPCPP-stabilized seeds labeled with Rhodamine-tubulin. Kymographs were generated from the movies acquired using a CoolSNAP HQ2 CCD camera (Roper Scientific) with a 1.2-s interval between frames and an exposure time of 100 ms. The rightmost panels show tracked positions of the kinesins and MT tips together with the fluorescence intensity of the kinesins over time for the corresponding kymographs. ( D ) Kymographs illustrating various events induced by KIF21B-FL-GFP (0.5 nM) on dynamic MTs in vitro in the presence of 15 µM tubulin, 20 nM mCherry-EB3 and 3% Rhodamine-tubulin. MTs were grown from GMPCPP-stabilized seeds labeled with Rhodamine-tubulin. Different events are indicated by arrows. Kymographs were generated from movies acquired as described for . ( E ) Quantification of different events observed after KIF21B-FL-GFP (0.5 nM) reaches a growing MT plus end, as illustrated in C and D. n = 132 events, four independent experiments were analyzed. ( F ) Kymograph illustrating a long pause event induced by multiple KIF21B-FL-GFP molecules on dynamic MTs in vitro in the presence of 15 µM tubulin, 20 nM mCherry-EB3 and 3% Rhodamine-tubulin in solution. Kymographs are generated from a movie acquired as described for . ( G ) Kymographs illustrating the effects of KIF21B-FL-GFP (0.5 nM) on dynamic MTs in vitro in the presence of 30 µM tubulin with 3% Rhodamine-tubulin and 20 nM mCherry-EB3. MTs were grown from GMPCPP-stabilized seeds labeled with Rhodamine-tubulin. The arrows show the position of KIF21B at the site of MT pause and the asterisk indicates the growing MT tip beyond the position of KIF21B binding; note that the slope of the kymograph after KIF21B attachment is less steep than before, indicating that the growth rate is reduced. Kymographs are generated from movies acquired as described for . ( H, I ) Quantification of MT growth rate and catastrophe frequency in vitro in the presence of 15 or 30 µM tubulin with 20 nM mCherry-EB3 alone or together with 0.5 nM KIF21B-FL-GFP. MTs were grown in the presence of 3% Rhodamine-tubulin. For 15 µM tubulin, n = 71 for control and n = 100 for KIF21B-FL-GFP, three independent experiments. For 30 µM tubulin, n = 71 for control and n = 80 for KIF21B-FL-GFP, three independent experiments, p<0.0001 Mann-Whitney U test (indicated by asterisks). DOI: http://dx.doi.org/10.7554/eLife.24746.012 10.7554/eLife.24746.013 Figure 3—source data 1. An excel sheet with numerical data on the quantification of KIF21B-FL seed blocking activity, pause induction, effects on MT growth rate and catastrophe frequency and outcomes of KIF21B-FL-GFP arrival at MT plus ends represented as plots in . DOI: http://dx.doi.org/10.7554/eLife.24746.013
Article Snippet: Kymographs were generated from the movies acquired using a
Techniques: In Vitro, Labeling, Generated, Blocking Assay, Fluorescence, Binding Assay, Control, MANN-WHITNEY, Activity Assay
Journal: eLife
Article Title: Kinesin-4 KIF21B is a potent microtubule pausing factor
doi: 10.7554/eLife.24746
Figure Lengend Snippet: The rightmost panel shows tracked positions of the kinesins and the MT tip together with the fluorescence intensities of the kinesins over time (white boxed area in kymograph). See also Supplemental . Kymograph was generated from a movies acquired using CoolSNAP HQ2 CCD camera (Roper Scientific) with a 1.2-s interval between frames and an exposure time of 100 ms. DOI: http://dx.doi.org/10.7554/eLife.24746.016 10.7554/eLife.24746.017 Figure 3—Figure Supplement 2—Source Data 1. An excel sheet with numerical data on the quantification of tracked positions of the kinesins and the MT tip together with the fluorescence intensities of the kinesins over time represented as plot in . DOI: http://dx.doi.org/10.7554/eLife.24746.017
Article Snippet: Kymographs were generated from the movies acquired using a
Techniques: Fluorescence, Generated
Journal: eLife
Article Title: Kinesin-4 KIF21B is a potent microtubule pausing factor
doi: 10.7554/eLife.24746
Figure Lengend Snippet: ( A, B ) Kymographs illustrating perturbation of MT growth in vitro by 0.5 nM KIF21B-FL-GFP in the presence of 15 and 30 µM tubulin with 3% Rhodamine-tubulin and 20 nM mCherry-EB3. Time lapse images on the right illustrate MT plus tip curling after the binding of KIF21B-FL-GFP to the MT plus end. The position of the kinesin on the MT is indicated by arrows. Asterisks show the position of growing MT tips extending beyond the point of KIF21B attachment. Boxed area is zoomed. See also Supplemental . Kymographs were generated from movies acquired using CoolSNAP HQ2 CCD camera (Roper Scientific) with a 1.2-s interval between frames and an exposure time of 100 ms. DOI: http://dx.doi.org/10.7554/eLife.24746.021
Article Snippet: Kymographs were generated from the movies acquired using a
Techniques: In Vitro, Binding Assay, Generated
Journal: eLife
Article Title: Kinesin-4 KIF21B is a potent microtubule pausing factor
doi: 10.7554/eLife.24746
Figure Lengend Snippet: ( A ) Histograms of fluorescence intensities at the initial moment of observation of single molecules of the indicated proteins immobilized on coverslips (symbols) and the corresponding fits with lognormal distributions (lines). n = 3907, 5002, 6725 and 6943 molecules; fluorophore density was 0.19, 0.24, 0.30 and 0.33 µm −2 for GFP, GFP-EB3, KIF21B-FL-ΔrCC-GFP and KIF21B-MD-CCΔrCC-GFP proteins. Insets show representative photobleaching traces of individual molecules (background subtracted). ( B ) Kymographs illustrating the behavior of the indicated deletion mutants of KIF21B at 3 nM concentration on dynamic MTs in the presence of 100 nM mCherry-EB3. GMPCPP-stabilized MT seeds were labeled with Rhodamine-tubulin (lines below kymographs). Kymographs were generated from the movies acquired using Photometrics Evolve 512 EMCCD (Roper Scientific) camera (stream acquisition with an exposure time of 500 ms). ( C ) Quantification of the velocity of KIF21B-FL-GFP and the deletion mutants on seeds and freshly polymerized MT lattices, shown in and . Seed: n = 295 for KIF21B-FL-GFP, n = 195 for KIF21B-FL-ΔrCC-GFP, n = 434 for KIF21B-MD-CCΔrCC-GFP; lattice: n = 131 for KIF21B-FL, n = 133 for KIF21B-FL-ΔrCC-GFP, n = 434 for KIF21B-MD-CCΔrCC-GFP. Data are from two or three independent experiments. Values significantly different from each other are indicated by asterisks, p<0.0001, Mann-Whitney U test. ( D ) Kymographs illustrating the interaction of purified GFP-L-WD40 (100 nM) with dynamic MTs grown from Rhodamine-tubulin labeled GMPCPP- or taxol-stabilized seeds (as indicated) in the presence of 20 nM mCherry-EB3. Kymographs were generated from the movies acquired in stream acquisition mode with an exposure time of 500 ms using Photometrics Evolve 512 EMCCD camera (Roper Scientific). ( E ) Kymographs illustrating the behavior of KIF21B deletion mutants on dynamic MTs in the presence of 20 nM mCherry-EB3 and 3% Rhodamine-tubulin. Pauses and KIF21B detachment from a depolymerizing MT end are indicated by arrows and asterisks, respectively. Arrowheads indicate kinesin detachment from the growing MT tip. Kymographs were generated from the movies acquired using CoolSNAP HQ2 CCD camera (Roper Scientific) with a 1.2-s interval between frames and an exposure time of 100 ms. ( F ) Quantification of MT growth rate in vitro in the presence of 15 µM tubulin with 20 nM mCherry-EB3 alone (n = 71) or together with 3 nM KIF21B-FL-ΔrCC-GFP (n = 79) or KIF21B-MD-CCΔrCC-GFP (n = 79). MTs were grown in the presence of 3% Rhodamine-tubulin. two independent experiments. ( G ) Quantification of different events observed after KIF21B-FL or its mutants reach a growing MT plus end. Data shown in are included here for comparison. n = 501 for KIF21B-FL-ΔrCC-GFP, n = 647 for KIF21B-MD-CCΔrCC-GFP. Data are from at least two independent experiments. ( H ) Percentage of pausing events induced by a single event of kinesin arrival from all detected pauses. Total number of pausing events: n = 51 for KIF21B-FL-GFP, n = 46 for KIF21B-FL-ΔrCC-GFP, n = 22 for KIF21B-MD-CCΔrCC-GFP. Data are from at least two independent experiments. ( I ) Quantification of the duration of MT pausing induced by a single kinesin arrival event at the growing MT plus end. n = 36 for KIF21B-FL-GFP, n = 8 for KIF21B-FL-ΔrCC-GFP, n = 3 for KIF21B-MD-CCΔrCC-GFP. Data are from at least two independent experiments.**p<0.0001, *p<0.0004 Mann-Whitney U test. ( J ) Model for the regulation of KIF21B motility and pause induction by the tail domain. In solution, KIF21B motor domains are inhibited by the regulatory region, while the WD40 domains are available for the interaction with MTs; WD40 domains show preference for the GMPCPP-stabilized seeds (red). After binding to seeds, KIF21B becomes activated and can walk to the plus end; it is likely that both the WD40 and the CC2 region contribute to MT binding. The kinesin can transfer from the seed to the freshly polymerized MT lattice; the interaction of the CC2 but not of the WD40 with the lattice promotes motor processivity. At the tip, the conversion to the autoinhibited conformation and the WD40 domain can prevent KIF21B from stepping off the MT plus end. This allows the motor to prevent both elongation and shortening of a small number of protofilaments with which it interacts. The remaining protofilaments might undergo short excursions of growth and shrinkage (upper panel); alternatively, they might elongate for some time and such an incomplete MT will be prone to bending and catastrophe (lower panel). DOI: http://dx.doi.org/10.7554/eLife.24746.035 10.7554/eLife.24746.036 Figure 7—source data 1. An excel sheet with numerical data on the quantification of KIF21B mutants dimer analysis, photobleaching step analysis, velocities on seeds and MT lattices, MT growth rate in vitro and outcomes of the arrival of KIF21B mutants at MT plus ends, represented as plots in . DOI: http://dx.doi.org/10.7554/eLife.24746.036
Article Snippet: Kymographs were generated from the movies acquired using a
Techniques: Fluorescence, Concentration Assay, Labeling, Generated, MANN-WHITNEY, Purification, In Vitro, Comparison, Binding Assay