Padilla R, López Otin C, Serrano L, Avila J
Centro de Biología Molecular (CSIC-UAM), Universidad Autónoma, Madrid, Spain.
FEBS Lett. 1993 Jul 5;325(3):173-6. doi: 10.1016/0014-5793(93)81067-a.
The dynamic instability of microtubules depends on the GTP binding to tubulin, the rate of hydrolysis of GTP bound to tubulin molecules, at the microtubule caps, and on the affinity and exchange rate of tubulin for GTP versus GDP. It has been demonstrated that the binding of microtubule-associated proteins (MAPs) such as Tau or MAP2 notably enhances microtubule stability in vivo. These MAPs bind to the tubulin carboxy terminal domain. Consequently, an attractive hypothesis to explain the modulation of microtubule dynamics by MAPs is that the carboxy terminal domain of tubulin interacts with a region close to the GTP binding site, preventing the binding of GTP or exchange of GDP for GTP. By carrying out a combined analysis of crosslinking and limited proteolysis, an intramolecular interaction between the carboxy terminus and the tubulin region containing the GTP binding site in beta tubulin has been observed. It is proposed that this interaction modifies the binding of GTP to the tubulin beta-subunit and, therefore, affects tubulin assembly dynamics. This suggests a molecular explanation for the effect of MAPs in facilitating tubulin polymerization through the regulation of the interaction of GTP.
微管的动态不稳定性取决于与微管蛋白结合的GTP、微管帽处与微管蛋白分子结合的GTP的水解速率,以及微管蛋白对GTP与GDP的亲和力和交换速率。已经证明,诸如Tau或MAP2等微管相关蛋白(MAP)的结合在体内显著增强了微管的稳定性。这些MAP与微管蛋白的羧基末端结构域结合。因此,一个解释MAP对微管动力学调节作用的有吸引力的假说是,微管蛋白的羧基末端结构域与靠近GTP结合位点的区域相互作用,阻止GTP的结合或GDP与GTP的交换。通过对交联和有限蛋白酶解进行联合分析,观察到羧基末端与β微管蛋白中含有GTP结合位点的微管蛋白区域之间存在分子内相互作用。有人提出,这种相互作用改变了GTP与微管蛋白β亚基的结合,因此影响了微管蛋白的组装动力学。这为MAP通过调节GTP相互作用促进微管蛋白聚合的作用提供了分子解释。