|
Cytoskeleton Inc
microtubulebinding protein spin down assay kit Microtubulebinding Protein Spin Down Assay Kit, supplied by Cytoskeleton Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Microtubule+Binding+Protein+Spin-Down+Assay+Biochem+Kit/pm38661008-370-7-12 Average 95 stars, based on 1 article reviews
microtubulebinding protein spin down assay kit - by Bioz Stars,
2026-09
95/100 stars
|
Buy from Supplier |
|
Cytoskeleton Inc
fluorescence based tubulin polymerization assay ![]() Fluorescence Based Tubulin Polymerization Assay, supplied by Cytoskeleton Inc, 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/microtubules/Tubulin+polymerization+assay+using+%3E99%25+pure+tubulin%2C+fluorescence+based/pmc13231365-390-12-16 Average 96 stars, based on 1 article reviews
fluorescence based tubulin polymerization assay - by Bioz Stars,
2026-09
96/100 stars
|
Buy from Supplier |
|
Cytoskeleton Inc
tubulin polymerization assay kit ![]() Tubulin Polymerization Assay Kit, supplied by Cytoskeleton Inc, 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/microtubules/Tubulin+polymerization+assay+using+%3E99%25+pure+tubulin%2C+OD+based+-+Porcine/pmc03749096-87-9-14 Average 96 stars, based on 1 article reviews
tubulin polymerization assay kit - by Bioz Stars,
2026-09
96/100 stars
|
Buy from Supplier |
|
Elabscience Biotechnology
tau proteins ![]() Tau Proteins, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Human+MAP%CF%84+(Microtubule+Associated+Protein+Tau%2FTau+Protein)+ELISA+Kit/pmc11285547-177-10-33 Average 93 stars, based on 1 article reviews
tau proteins - by Bioz Stars,
2026-09
93/100 stars
|
Buy from Supplier |
|
Cytoskeleton Inc
bk038 ![]() Bk038, supplied by Cytoskeleton Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Microtubule+Tubulin+In+Vivo+Assay+Biochem+Kit/pmc02148313-216-12-14 Average 93 stars, based on 1 article reviews
bk038 - by Bioz Stars,
2026-09
93/100 stars
|
Buy from Supplier |
|
OriGene
code n am16708 mical1 ![]() Code N Am16708 Mical1, supplied by OriGene, 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/microtubules/MICAL1+(BC009972)+Human+Untagged+Clone/pm25576923-139-24-42 Average 90 stars, based on 1 article reviews
code n am16708 mical1 - by Bioz Stars,
2026-09
90/100 stars
|
Buy from Supplier |
|
AvesLabs
primary antibody for map2 ![]() Primary Antibody For Map2, supplied by AvesLabs, used in various techniques. Bioz Stars score: 98/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Anti-Microtubule-Associated+Protein+(MAP2)+Antibody/bio_rxiv__2024__12__02__625500-226-0-4 Average 98 stars, based on 1 article reviews
primary antibody for map2 - by Bioz Stars,
2026-09
98/100 stars
|
Buy from Supplier |
|
Cusabio
proteins 1a 1b light chain 3b map1lc3b elisa kit ![]() Proteins 1a 1b Light Chain 3b Map1lc3b Elisa Kit, supplied by Cusabio, 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/microtubules/Human+Microtubule-associated+proteins+1A%2F1B+light+chain+3B(MAP1LC3B)+ELISA+kit/pmc06492992-165-12-20 Average 90 stars, based on 1 article reviews
proteins 1a 1b light chain 3b map1lc3b elisa kit - by Bioz Stars,
2026-09
90/100 stars
|
Buy from Supplier |
|
Santa Cruz Biotechnology
microtubule ![]() Microtubule, supplied by Santa Cruz Biotechnology, 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/microtubules/Microtubule+Marker+Antibody/10__3727_slash_096368916x693671-124-41-50 Average 90 stars, based on 1 article reviews
microtubule - by Bioz Stars,
2026-09
90/100 stars
|
Buy from Supplier |
|
Cytoskeleton Inc
microtubule ![]() Microtubule, supplied by Cytoskeleton Inc, 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/microtubules/HTS+kinesin+ATPase+Endpoint+Assay+Biochem+Kit/pm33717854-253-10-25 Average 94 stars, based on 1 article reviews
microtubule - by Bioz Stars,
2026-09
94/100 stars
|
Buy from Supplier |
|
Elabscience Biotechnology
rat pmapt ptau ![]() Rat Pmapt Ptau, supplied by Elabscience Biotechnology, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Rat+pMAPT%2FpTAU+(phosphorylated+microtubule-associated+protein+tau)+ELISA+Kit/pm36442692-138-23-25 Average 93 stars, based on 1 article reviews
rat pmapt ptau - by Bioz Stars,
2026-09
93/100 stars
|
Buy from Supplier |
|
Cytoskeleton Inc
microtubule binding fraction mapf ![]() Microtubule Binding Fraction Mapf, supplied by Cytoskeleton Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more https://www.bioz.com/product/microtubules/Microtubule+associated+protein+rich+fraction+porcine+brain/pm20405035-105-9-16 Average 93 stars, based on 1 article reviews
microtubule binding fraction mapf - by Bioz Stars,
2026-09
93/100 stars
|
Buy from Supplier |
Image Search Results
Journal: RSC Advances
Article Title: Design, synthesis, and mechanistic evaluation of novel pyrazole/thiazole chalcone hybrids as dual tubulin polymerization and COX-2 inhibitors with potent antiproliferative activity
doi: 10.1039/d6ra03557d
Figure Lengend Snippet: Selected thiazole/chalcone-based tubulin polymerization inhibitors (I–VII) and combretastatin A-4.
Article Snippet: The effects of compounds 9a–o on tubulin polymerization were assessed using a
Techniques:
Journal: RSC Advances
Article Title: Design, synthesis, and mechanistic evaluation of novel pyrazole/thiazole chalcone hybrids as dual tubulin polymerization and COX-2 inhibitors with potent antiproliferative activity
doi: 10.1039/d6ra03557d
Figure Lengend Snippet: Tubulin polymerization inhibitory activity of compounds 9a–o and the reference inhibitor CA-4, expressed as IC 50 values (µM), as determined from a fluorescence-based polymerization assay monitored kinetically for 60 min at 37 °C. Data are presented as mean ± SEM.
Article Snippet: The effects of compounds 9a–o on tubulin polymerization were assessed using a
Techniques: Activity Assay, Fluorescence, Polymerization Assay
Journal: RSC Advances
Article Title: Design, synthesis, and mechanistic evaluation of novel pyrazole/thiazole chalcone hybrids as dual tubulin polymerization and COX-2 inhibitors with potent antiproliferative activity
doi: 10.1039/d6ra03557d
Figure Lengend Snippet: Superimposition of the co-crystallized (green) and redocked (brown) colchicine poses within the colchicine-binding site of tubulin (PDB ID: 4O2B).
Article Snippet: The effects of compounds 9a–o on tubulin polymerization were assessed using a
Techniques: Binding Assay
Journal: RSC Advances
Article Title: Design, synthesis, and mechanistic evaluation of novel pyrazole/thiazole chalcone hybrids as dual tubulin polymerization and COX-2 inhibitors with potent antiproliferative activity
doi: 10.1039/d6ra03557d
Figure Lengend Snippet: Binding interactions of compound 9l within the colchicine-binding site of tubulin (PDB ID: 4O2B): (A) 2D interaction diagram and (B) 3D binding mode.
Article Snippet: The effects of compounds 9a–o on tubulin polymerization were assessed using a
Techniques: Binding Assay
Journal: bioRxiv
Article Title: Dynamic Regulation OF The Chromatin Environment By Ash1L Modulates Human Neuronal Structure And Function
doi: 10.1101/2024.12.02.625500
Figure Lengend Snippet: (A) Diagram of ASH1L protein domains showing the location of the pathogenic variant E2148* (blue) in ASH1L catalytic domain and itsr associated clinical phenotypes. (B) Illustration depicts the dual SMAD inhibition protocol used to generate cortical excitatory human neurons. ( C ) ASH1L expression was quantified by qPCR using human neurons at day 35 of neuronal induction. Fold change is normalized to control. Bar represents the mean and individual measures from four independent experiments are shown for control (grey with open circles), and E2148* (light blue with solid blue circles). Samples were analyzed as a ratio of the control. Statistical analysis was conducted using unpaired t-test. **** P < 0.0001. ( D ) Representative images are shown for human neurons from control, and E2148* cultures at day 35 of neuronal induction. Neurons stained with MAP2 are shown in black and white for ease of viewing. Calibration bars represent 20µm. ( E-H ) Morphogenesis measures are shown for four independent experiments for control neurons (grey bar with open circles), and E2148* mutant neurons (light blue bars with solid dark blue circles). Individual points represent the average of 4 independent experiments, an average of 30 neurons were measured per experiment. ( E ) Mean neurite length is shown for control (n=124 neurons; 56.9 ± 2.41), and E2148* (n=118 neurons; 47.47 ± 1.99). Grouped statistical analysis was conducted using unpaired t-test, **P < 0.004. ( F ) Total neurite length is shown for control (n=124 neurons; 182.7 ± 6.39), and E2148* (n=118 neurons; 139.3 ± 4.66). Grouped statistical analysis was conducted using unpaired t-test, **** P < 0.0001. ( G ) Neuronal morphology analyzed by measuring the complexity index (see methods). Calculations were conducted after identifying outliers using the ROUT 1% method for control (n=115; 289.5 ± 18.21), and E2148* (n=112; 228.8 ± 13.42). Grouped statistical analysis was conducted unpaired t-test ** P < 0.0099. ( H ) Cell soma size was analyzed for three independent experiments by measuring the area for control (n=96; 77.67 ± 3.47), and E2148* (n=91; 69.15 ± 2.51). Statistical analysis was conducted using unpaired t-test P=0.056. ( I ) Sholl analysis was used to measure neuronal arborization. The number intersections away from the cell soma were measured every 10µm and are shown for control (open gray circles), and E2148* (solid dark blue circles) neurons from 10µm to 120µm. Statistical analysis was conducted using a mixed model effects *** P < 0.0006, and **** P < 0.0001. ( J-L ) Analysis of H3K36me2 and H3K4me3 levels on chromatin fraction for four independent experiments is shown for neurons at day 41 of neuronal induction. ( J ) Representative western blot shows H3K36me2, H3K4me3 and histone H3 for control, and E2148* neurons. H3 Histone marks were normalized to histone H3 levels for analysis. ( K ) H3K36me2 protein levels are shown for control (1± 0), and E2148* (0.67 ± 0.26). ( L ) H3K4me3 protein levels are shown for control (1± 0), and E2148* (0.68± 0.11). (K -L ) Statistical analysis was conducted using unpaired t-test *P< 0.025. Not significant P value is not shown.
Article Snippet:
Techniques: Variant Assay, Inhibition, Expressing, Control, Staining, Mutagenesis, Western Blot
Journal: bioRxiv
Article Title: Dynamic Regulation OF The Chromatin Environment By Ash1L Modulates Human Neuronal Structure And Function
doi: 10.1101/2024.12.02.625500
Figure Lengend Snippet: ( A ) PCA plots shows biological replicates (n=4) for control (green), and E2148* (salmon) neurons RNA seq experiments. ( B ) Heatmap shows top 100 DEGs for control (green), and E2148* (salmon) neurons at day 35 (n=4 biological replicates). The top 15 DEGs are listed. ( C ) Volcano plots showing DEGs in the heterozygous E2148* mutant iPSC-derived neurons. Log 2 fold changes (LFC) gene expression (x-axis) and -log 10 adjusted P values (y-axis) generated from DESeq2 differential gene expression analysis are shown. Vertical dotted lines represent 0.58 LFC (1.5 FC) and horizontal dotted line shows adjusted P=0.05. Significant DEGs are shown in red with the top 20 labelled in the plot. ( D-F ) Functional enrichment analysis by EnrichR for biological process ( D ), cellular compartment ( E ), and molecular function ( F ) show enrichment for all DEGs, upregulated and downregulated DEGs in E2148* mutant neurons vs. control neurons. Circle size represents the number of DEGs in that category and the color represents the adjusted P value. ( G ) Correlation of gene length to fold change analyzed for all significant DEGs in E2148* (blue line) mutant neurons. Grey shade shows the variability across samples. ( H ) Analysis of gene length in upregulated (blue) and downregulated (red) DEGs for E2148* neurons. ( I ) Analysis of de novo transcription by EU click chemistry at day 41 of neuronal differentiation. Representative images of human neurons that incorporated EU (gray), stained with neuronal marker MAP2 (cyan) and nuclear marker DAPI (blue) are shown for control (top row), and E2148* (bottom row). Enlarged nuclei stained with EU is shown. Calibration bars are 20µm. ( J-K ) Measurements of EU incorporation are shown for control neurons (grey bars with open circles), and E2148* (light blue bars with solid deep blue circles) mutant neurons. Mean and standard error are shown with individual dots representing the average of individual measures for five independent experiments. ( I ) Pearsons’ correlation coefficient analysis is shown for five independent experiments for control (n=187; 0.785 ± 0.003), and E2148* (n=115; 0.746 ± 0.005) neurons. ( J ) EU nuclear intensity normalized to control is shown for five independent experiments for control (n=187; 1.017 ± 0.029), and E2148* (n=115; 0.817 ± 0.027) neurons. ( I-J ) Grouped data analyzed using unpaired t test with Welch’s correction, ****P < 0.0001. Not significant P values are not shown.
Article Snippet:
Techniques: Control, RNA Sequencing, Mutagenesis, Derivative Assay, Gene Expression, Generated, Functional Assay, Staining, Marker
Journal: bioRxiv
Article Title: Dynamic Regulation OF The Chromatin Environment By Ash1L Modulates Human Neuronal Structure And Function
doi: 10.1101/2024.12.02.625500
Figure Lengend Snippet: (A) Representative images are shown for day 35 human neurons from control, and E2148* cultures treated for 3 days with DMSO, Tazemetostat (0.5µM) and Vorinostat (0.1µM). Neurons stained with MAP2 are shown in black and white for ease of viewing. Calibration bars represent 30µm. ( B-F ) Morphogenesis analysis is shown for at least 4 independent experiments (unless otherwise annotated) in which we measured at least 30 neurons per experiment for control (grey bar with open circles) and E2148* (light blue bars with solid dark blue circles) neurons treated with either DMSO, Tazemetostat (TAZ) or Vorinostat (VOR). Individual points represent the average of multiple independent experiments. ( B ) Total neurite length is shown as the mean (bar) with the average of individual measurements represented by the circles for: control + DMSO (n=93 neurons; 231.9 ± 7.27); control + TAZ (n=119; 184.4± 5.46); control + VOR (n=118 neurons; 227.3± 6.8); E2148* + DMSO (n=113 neurons; 163.3 ± 4.83); E2148* + TAZ (n=112; 200.5± 5.94); E2148* + VOR (n=129 neurons; 225.2± 8.38). ( C ) Mean neurite length is shown as the mean (bar) with the average of individual measurements represented by the circles for: control + DMSO (n=90 neurons; 69.86 ± 2.409); control + TAZ (n=117; 64.16± 2.04); control + VOR (n=118 neurons; 81.28± 2.75); E2148* + DMSO (n=112 neurons; 55.75 ± 1.88); E2148* + TAZ (n=111; 66.16 ± 2.47); E2148* + VOR (n=126 neurons; 76.02 ± 2.58). ( D ) Complexity index measurements were first analyzed using the “identify outliers” ROUT function in graph pad and are shown as the mean (bar) with the average of individual measurements represented by the circles for: control + DMSO (n=90 neurons; 390± 26.88); control + TAZ (n=111; 329.4 ± 22.40); control + VOR (n=116 neurons; 461.8 ± 25.45); E2148* + DMSO (n=116 neurons; 261.9 ± 18.80); E2148* + TAZ (n=105; 357.6 ± 20.83); E2148* + VOR (n=125 neurons; 458.3 ± 29.66). ( B-D ) Statistical analysis of grouped measurements was conducted using TWO-way ANOVA with Tukey’s test for multiple comparisons: * P < 0.04 ** P < 0.009, *** P < 0.0006, **** P < 0.0001. ( E ) Sholl analysis was used to measure neuronal arborization across three different treatments in the E2148* mutant neurons. The number intersections away from the cell soma were measured every 10µm and are shown for E2148* + DMSO (inverted dark blue triangles), E2148* + TAZ (open triangles), and E2148* + VOR (solid light blue triangles) neurons. Statistical analysis by TWO-way ANOVA with mixed model effects * P < 0.05, ** P < 0.009, and *** P = 0.0008. Green asterisk (E2148* +DMSO vs. E2148* + VOR), red asterisk (E2148* + DMSO vs. E2148* + TAZ). ( F ) Sholl analysis is shown to compare the most effective treatment (vorinostat) to the untreated control and E2148* mutant neurons. The number of intersections away from the cell soma were measured every 10µm and are shown for control+ DMSO (open gray circles), E2148* + DMSO (solid dark blue circles) and E2148* + VOR (half pink/light blue circles) neurons. Statistical analysis by TWO-way ANOVA with mixed model effects * P < 0.05, ** P < 0.005, *** P = 0.0005, and **** P < 0.0001. Green asterisk (E2148*+DMSO vs. Control + DMSO), red asterisk (E2148* + DMSO vs. E2148* + VOR). ( G-K ) Analysis of nuclear levels of H3K27me3 and H4K16ac in four independent experiments (unless otherwise indicated) across all treatments is shown for neurons at day 35 of neuronal induction. ( G ) Representative images of nuclear H3K27me3 (red) are shown for either DMSO (left column) or Tazemetostat (right column) treated control, or E2148* mutant neurons stained with MAP2 (cyan) and nuclei is stain with DAPI (blue). ( H ) Quantification of H3K27me3 nuclear levels measured by mean gray value is shown for all treatments. Measurements from at least 3 independent experiments with at least 30 neurons analyzed per experiment were analyzed as a group and are shown as the mean (bar) with the average of individual measurements represented by the circles for: control + DMSO (n=134 neurons; 547.4 ± 13.19); control + TAZ (n=154; 258.1 ± 10.83); control + VOR (n=101 neurons; 545.5 ± 19.07); E2148* + DMSO (n=141 neurons; 471.0 ± 10.87); E2148* + TAZ (n=140; 301.1 ± 8.03); E2148* + VOR (n=103 neurons; 539.4 ± 18.79). ( I ) Representative images of nuclear H4K16ac (red) are shown for either DMSO (left column) or Tazemetostat (right column) treated control, and E2148* mutant neurons stained with MAP2 (cyan) and nuclei is stain with DAPI (blue). ( J ) Quantification of H4K16ac nuclear levels measured by mean gray value is shown for all treatments. Measurements from at least 3 independent experiments with at least 30 neurons analyzed per experiment were analyzed as a group and are shown as the mean (bar) with the average of individual measurements represented by the circles for: control + DMSO (N= 4 experiments; n=114 neurons; 322.8 ± 12.85); control + TAZ (n=95; 360.5 ± 13.04); control + VOR (n=145 neurons; 581.6 ± 16.45); E2148* + DMSO (n=166 neurons; 270.3 ± 10.33); E2148* + TAZ (n=106; 350.4 ± 11.81); E2148* + VOR (n=158 neurons; 654.7 ± 9.49). ( H and J ) Statistical analysis of grouped measurements was conducted using TWO-way ANOVA with Tukey’s test for multiple comparisons: * P < 0.05, *** P < 0.005, *** P < 0.0005, **** P < 0.0001.
Article Snippet:
Techniques: Control, Staining, Mutagenesis
Journal: PloS one
Article Title: Dysferlin interacts with tubulin and microtubules in mouse skeletal muscle.
doi: 10.1371/journal.pone.0010122
Figure Lengend Snippet: Figure 6. Dysferlin binds to microtubules. His-myc-dysferlin purified on Ni-NTA beads was incubated with polymerized microtubules. Reactions were resolved by SDS-PAGE stained with SimplyBlue SafeStain. Arrows point to His-myc-dysferlin, tubulin, BSA, and to MAP1&MAP2 of the microtubule-associated protein fraction (MAPF), which includes MAP2A, MAP2B, MAP1 and tau. S: Soluble phase, P: Pellet. Lane 1: Microtubules alone, lane 2: Microtubules incubated with MAPF, lane 3: Microtubules incubated with BSA, lane 4: MAPF alone, lane 5: BSA alone, lane 6: Purified His-myc- dysferlin alone, lane 7: Microtubules incubated with purified His-myc-dysferlin. doi:10.1371/journal.pone.0010122.g006
Article Snippet: BSA was used as a negative control and the
Techniques: Purification, Incubation, SDS Page, Staining