Black M M, Slaughter T, Moshiach S, Obrocka M, Fischer I
Department of Anatomy and Cell Biology, Temple University School of Medicine, Philadelphia, Pennsylvania 19140, USA.
J Neurosci. 1996 Jun 1;16(11):3601-19. doi: 10.1523/JNEUROSCI.16-11-03601.1996.
It is widely held that tau determines the stability of microtubules in growing axons, although direct evidence supporting this hypothesis is lacking. Previous studies have shown that the microtubule polymer in the distal axon and growth cone is the most dynamic of growing axons; it turns over more rapidly and is more sensitive to microtubule depolymerizing drugs than the polymer situated proximally. We reasoned that if the stability of axonal microtubules is directly related to their content of tau, then the polymer in the distal axon should have less tau than the polymer in the proximal axon. We tested this proposition by measuring the relative tau content of microtubule along growing axons of cultured sympathetic neurons immunostained for tau and tubulin. Our results show that the tau content of microtubules varies along the axon, but in the opposite way predicted. Specifically, the relative tau content of microtubules increases progressively along the axon to reach a peak near the growth cone that is severalfold greater than that observed proximally. Thus, tau is most enriched on the most dynamic polymer of the axon. We also show that the gradient in tau content of microtubules does not generate corresponding gradients in the extent of tubulin assembly or in the sensitivity of axonal microtubules to nocodazole. On the basis of these findings, we propose that tau in growing axons has functions other than promoting microtubule assembly and stability and the key sites for these functions are the distal axon and growth cone.
人们普遍认为,tau决定了生长轴突中微管的稳定性,尽管缺乏支持这一假设的直接证据。先前的研究表明,轴突远端和生长锥中的微管聚合物是生长轴突中最具动态性的;与近端的聚合物相比,它周转更快,对微管解聚药物更敏感。我们推断,如果轴突微管的稳定性与其tau含量直接相关,那么轴突远端的聚合物应该比近端的聚合物含有更少的tau。我们通过测量沿培养的交感神经元生长轴突的微管相对tau含量来验证这一命题,这些轴突对tau和微管蛋白进行了免疫染色。我们的结果表明,微管的tau含量沿轴突变化,但与预测的相反。具体而言,微管的相对tau含量沿轴突逐渐增加,在生长锥附近达到峰值,该峰值比近端观察到的高几倍。因此,tau在轴突最具动态性的聚合物上最为富集。我们还表明,微管tau含量的梯度在微管蛋白组装程度或轴突微管对诺考达唑的敏感性方面不会产生相应的梯度。基于这些发现,我们提出,生长轴突中的tau具有促进微管组装和稳定性以外的功能,这些功能的关键部位是轴突远端和生长锥。