anti-alpha Tubulin-1D (TUBA-1D) Anticorps

Tubulin is the major constituent of microtubules.

afficher tous les anticorps Gène GeneID UniProt
TUBA-1D 64158 P68370
TUBA-1D 22142 P68369
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Top anti-alpha Tubulin-1D Anticorps sur

Showing 5 out of 6 products:

Catalogue No. Reactivité Hôte Conjugué Application Images Quantité Livraison Prix Détails
Fruit Fly Lapin Inconjugué ICC, IF, IHC (p), WB WB Image alpha Tubulin 1A antibody detects alpha Tubulin 1A protein by western blot analysis. A. 30 μg NIH-3T3 whole cell extract B. 30 μg mouse brain extract 10 % SDS-PAGE alpha Tubulin 1A antibody , dilution: 1:10000 WB Image alpha Tubulin 1A antibody detects alpha Tubulin 1A protein by western blot analysis. A. 30 μg drosophila lysate/extract 10 % SDS-PAGE alpha Tubulin 1A antibody , dilution: 1:1000 100 μL 3 to 4 Days
Humain Lapin Inconjugué ICC, IF, IHC (p), WB WB Image Sample (30 ug of whole cell lysate) A: NIH-3T3 10% SDS PAGE antibody diluted at 1:1000 IHC-P Image alpha Tubulin 1A antibody detects alpha Tubulin 1A protein at cytosol on mouse ovary by immunohistochemical analysis. Sample: Paraffin-embedded mouse ovary. alpha Tubulin 1A antibody , dilution: 1:500. 100 μL 3 to 4 Days
Humain Lapin Inconjugué IF/ICC, IHC (fp), WB   100 μL 6 to 8 Days
Humain Lapin Inconjugué ICC, IF, IHC (p), WB   100 μL 9 to 11 Days
Humain Lapin Inconjugué IF/ICC, IHC (fp), WB   100 μL 6 to 8 Days

Plus d’anticorps contre alpha Tubulin-1D partenaires d’interaction

Mouse (Murine) alpha Tubulin-1D (TUBA-1D) interaction partners

  1. In this study, we demonstrate that missense mutations affecting arginine at position 402 (R402) of TUBA1A alpha-tubulin selectively impair dynein motor activity and severely and dominantly disrupt cortical neuronal migration.

  2. Transgenic mdx mice expressing the short dystrophin isoform Dp116 served as a negative control. All mini- and micro-dystrophins restored elevated detyrosinated alpha-tubulin and microtubule density of mdx muscle to values not different from C57BL/10, however, only mini-dystrophins restored the transverse component of the microtubule lattice back to C57BL/10.

  3. Here the authors demonstrate that mice lacking the alpha-tubulin acetyltransferase Atat1 in sensory neurons display profound deficits in their ability to detect mechanical stimuli.

  4. Collectively, these findings suggest that Smo and primary cilia-dependent noncanonical Hh signaling leads to post-translational regulation of microtubules and may be important for modulating cell behaviors.

  5. Further PS treatment resulted in recovery of axonal outgrowth and enhanced retrograde axonal transport by decreasing histone deacetylase 6 (HDAC6) levels and thus increasing acetylation of alpha-tubulin levels. Thus, we have identified the molecular pathway that leads to neurodegeneration in FD and have demonstrated that phosphatidylserine treatment has the potential to slow progression of neurodegeneration

  6. mass spectrometry-based quantitative comparison of acetylated peptides from wild-type vs HDAC6 knockout mice allowed to identify six new deacetylation sites possibly mediated by HDAC6.

  7. These results give new insights into the functions of Tuba1a, mechanisms for regulating tubulin proteostasis, and how compromising these may lead to neural defects.

  8. Data indicate that alpha 1a tubulin (Tuba1a) showed the least variability in expression among the different stages of lung development.

  9. Tubulin-tyrosine ligase (TTL) is required to increase the levels of tyrosinated alpha-tubulin at the axon injury site and plays an important role in injury signaling.

  10. Data suggest a mechanistic link between tubulin hyperacetylation and autophagy induction.

  11. TFIIB co-localizes and interacts with alpha-tubulin during oocyte meiosis in the mouse and depletion of TFIIB causes arrest of subsequent embryo development.

  12. Acetylation of alpha-tubulin is under the control of the acetyltransferase MEC-17 and deacetylases SIRT2 (Sirtuin 2) and HDAC6 (histone deacetylase 6). Adipocyte development is inhibited in MEC-17-knockdown cells, but enhanced in MEC-17-overexpressing cells.

  13. Unambiguous identification of novel glutamylation sites E441 and E443 in mouse brain Tuba1a and Tuba1b.

  14. This study demonistrated that novel tubal(aspartic acid to glycine) mutant mouse is a novel animal model for neurodevelopmental disorders.

  15. These results demonstrate a role for CCP1 in the processing of Glu residues from beta- as well as alpha-tubulin in vitro and in vivo.

  16. Our results highlight the importance of Tuba1a for correct neuronal migration

  17. association between dysferlin and alpha-tubulin, as well as between dysferlin and microtubules

  18. mice harbouring an S140G mutation in Tuba1a present with normal neurogenic potential, but that this neurogenesis is often ectopic

  19. Data indicated that CacyBP/SIP could simultaneously interact with tubulin and actin, suggesting that CacyBP/SIP might link actin and tubulin cytoskeletons.

  20. Data support a model in which stathmin functions in interphase to control the partitioning of tubulins between dimer and polymer pools by setting the number of microtubules per cell.

Fruit Fly (Drosophila melanogaster) alpha Tubulin-1D (TUBA-1D) interaction partners

  1. To resolve how microtubule acetylation might affect neuronal morphogenesis, we mutated endogenous alpha-tubulin in vivo using a new Drosophila strain that facilitates the rapid knock-in of designer alphaTub84B alleles (the predominant alpha-tubulin-encoding gene in flies)...Our studies point to an unappreciated role for a-tubulin K40 and acetylation in dendrite morphogenesis.

  2. human RITA, binding to Drosophila Su(H) and tubulin, cannot influence the Notch signalling pathway in the fly

alpha Tubulin-1D (TUBA-1D) profil antigène

Profil protéine

forms heterodimers with beta-tubulin\; acts as a structural component of the microtubule cytoskeleton\; plays a role in microtubule-based processes

Gene names and symbols associated with TUBA-1D

  • tubulin, alpha 1A (Tuba1a) anticorps
  • alpha-Tubulin at 84B (alphaTub84B) anticorps
  • 1t anticorps
  • a-tub84B anticorps
  • a1t anticorps
  • alpha-tub anticorps
  • alpha-tub84B anticorps
  • alpha-tubulin anticorps
  • alpha-tubulin 84B anticorps
  • Alpha-Tubulin84B anticorps
  • alpha1 anticorps
  • alpha1t anticorps
  • alpha1tub anticorps
  • alpha1tub84B anticorps
  • alpha84B anticorps
  • ALPHA 84C anticorps
  • alphaT anticorps
  • alphat-1 anticorps
  • alphatub anticorps
  • alphaTub1 anticorps
  • alphaTub84 anticorps
  • alphatub84B anticorps
  • anon-EST:Liang-1.59 anticorps
  • anon-EST:Liang-2.30 anticorps
  • aTub84B anticorps
  • BEST:LD32507 anticorps
  • CG1913 anticorps
  • chr3R:2914276..2914416 anticorps
  • clone 1.59 anticorps
  • clone 2.30 anticorps
  • DM1alpha anticorps
  • Dmel\CG1913 anticorps
  • DTA1 anticorps
  • l(3)84Bd anticorps
  • l(3)g3 anticorps
  • ms(3)nc33 anticorps
  • nc33 anticorps
  • T anticorps
  • Talpha1 anticorps
  • TBA1_DROME anticorps
  • tub anticorps
  • Tub1C anticorps
  • Tub 84B anticorps
  • Tuba-1 anticorps
  • Tuba1 anticorps
  • tubA84B anticorps
  • tubalpha1 anticorps
  • tubulin anticorps

Protein level used designations for TUBA-1D

alpha-tubulin 1 , tubulin alpha-1 chain , tubulin alpha-1A chain , tubulin, alpha 1 , Talpha1 alpha-tubulin , alpha-tubulin isotype M-alpha-1 , CG1913 gene product from transcript CG1913-RA , CG1913-PA , Tubulin-alpha1 , alpha tubulin , alpha tubulin 84B , alpha-Tubulin , alpha-Tubulin 84B , alpha-tubulin84B , alpha1 tubulin , alpha1-tubulin , alphaT , alphaTub84B-PA , alphaTubulin 84B , alphaTubulin84B , alpha[[1]] tubulin , alpha[[1]]-tubulin , alphatubulin , tubulin , tubulin 1 alpha-chain , tubulin 1alpha , tubulin alpha1 , tubulin alpha1 promoter , tubulin(alpha1) , tubulin1alpha , tubulin84B

64158 Rattus norvegicus
22142 Mus musculus
40848 Drosophila melanogaster
Fournisseurs de qualité sélectionnés pour anti-alpha Tubulin-1D (TUBA-1D) Anticorps
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