Chemical and Physical Biology, Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas CIB-CSIC, Madrid, Spain.
Biophys J. 2011 Dec 21;101(12):2970-80. doi: 10.1016/j.bpj.2011.11.005. Epub 2011 Dec 20.
Microtubules assembled with paclitaxel and docetaxel differ in their numbers of protofilaments, reflecting modification of the lateral association between αβ-tubulin molecules in the microtubule wall. These modifications of microtubule structure, through a not-yet-characterized mechanism, are most likely related to the changes in tubulin-tubulin interactions responsible for microtubule stabilization by these antitumor compounds. We have used a set of modified taxanes to study the structural mechanism of microtubule stabilization by these ligands. Using small-angle x-ray scattering, we have determined how modifications in the shape and size of the taxane substituents result in changes in the interprotofilament angles and in their number. The observed effects have been explained using NMR-aided docking and molecular dynamic simulations of taxane binding at the microtubule pore and luminal sites. Modeling results indicate that modification of the size of substituents at positions C7 and C10 of the taxane core influence the conformation of three key elements in microtubule lateral interactions (the M-loop, the S3 β-strand, and the H3 helix) that modulate the contacts between adjacent protofilaments. In addition, modifications of the substituents at position C2 slightly rearrange the ligand in the binding site, modifying the interaction of the C7 substituent with the M-loop.
微管与紫杉醇和多西紫杉醇组装后,原丝数量不同,反映了微管壁中αβ-微管蛋白分子之间的侧向结合发生了修饰。这些微管结构的修饰,通过尚未确定的机制,很可能与负责这些抗肿瘤化合物稳定微管的微管-微管相互作用的变化有关。我们使用了一组修饰的紫杉烷来研究这些配体稳定微管的结构机制。通过小角度 X 射线散射,我们确定了-taxane 取代基的形状和大小的修饰如何导致原丝间角度及其数量的变化。利用 NMR 辅助对接和紫杉烷在微管孔和内腔位点结合的分子动力学模拟,解释了观察到的效应。建模结果表明,在紫杉烷核的 C7 和 C10 位置上取代基大小的修饰影响微管侧向相互作用的三个关键元素(M 环、S3 β-链和 H3 螺旋)的构象,从而调节相邻原丝之间的接触。此外,C2 位取代基的修饰略微改变了配体在结合位点的位置,修饰了 C7 取代基与 M 环的相互作用。