- WB
Unknown
Western blot - Anti-Tau antibody (AB47579)
All lanes:
Western blot - Anti-Tau antibody (ab47579)
Lane 1:
Mouse brain cell extract
Lane 2:
Mouse brain cell extract with peptide
Predicted band size: 78 kDa
false
- WB
CiteAb
Western blot - Anti-Tau antibody (AB47579)
Tau western blot using anti-Tau antibody ab47579. Publication image and figure legend from Qi, B., Yang, Y., et al., 2020, Mol Brain, PubMed 32272942.
ab47579 was used in this publication in western blot. This may not be the same as the application(s) guaranteed by Abcam. For a full list of applications guaranteed by Abcam for ab47579 please see the product overview.
CBD3 expression reduces Aβ1–42 and p-tau plaques. Representative western blots of lysates (n = 4) from the indicated conditions probed with antibodies against ADAM10, Aβ1–42, p-tau, t-tau, or GAPDH (housekeeping/loading control). The hippocampal tissues were from wildtype (WT) mice, APP/PS1 mice, APP/PS1 mice administered control AAV, or APP/PS1 mice administered CBD3 harboring AAV. Quantification of levels of Aβ1–42 (b), p-tau/t-tau (c), and ADAM10 (d) normalized to control (n = 4 per condition). *p < 0.05, one-way ANOVA with Dunnett's post-hoc test. n.s., not significant.
false
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This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
Tau is involved in the assembly and stabilization of microtubules essential for maintaining neuronal structure. It interacts with microtubule-binding domains (MBD) to bind and bundle microtubules facilitating intracellular transport. Tau forms a part of the neuronal cytoskeleton complex working closely with other cytoskeletal proteins to preserve the proper axonal transport and function. Abnormally phosphorylated Tau often termed phospho-Tau disrupts this complex affecting microtubule stability.
Pathways
Tau has critical involvement in several signaling cascades such as the microtubule-binding and transport pathways. Glycogen synthase kinase 3 beta (GSK3β) and cyclin-dependent kinase 5 (CDK5) frequently phosphorylate Tau controlling its interaction with microtubules. Phosphorylated Tau accumulates leading to the formation of neurofibrillary tangles often observed in neurodegenerative conditions. Additionally Tau interacts with GAPDH impacting cellular energy regulation through potential pathway cross-talk involving oxidative stress responses.
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