Program in Physical Biology, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, USA.
Cell Cycle. 2011 Oct 1;10(19):3387-96. doi: 10.4161/cc.10.19.17706.
Peloruside A is a microtubule-stabilizing macrolide that binds to beta tubulin at a site distinct from the taxol site. The site was previously identified by H-D exchange mapping and molecular docking as a region close to the outer surface of the microtubule and confined in a cavity surrounded by a continuous loop of protein folded so as to center on Y340. We have isolated a series of peloruside A-resistant lines of the human ovarian carcinoma cell line A2780(1A9) to better characterize this binding site and the consequences of altering residues in it. Four resistant lines (Pel A-D) are described with single-base mutations in class I β-tubulin that result in the following substitutions: R306H, Y340S, N337D, and A296S in various combinations. The mutations are localized to peptides previously identified by Hydrogen-Deuterium exchange mapping, and center on a cleft in which the drug side chain appears to dock. The Pel lines are 10-15-fold resistant to peloruside A and show cross resistance to laulimalide but not to any other microtubule stabilizers. They show no cross-sensitivity to any microtubule destabilizers, nor to two drugs with targets unrelated to microtubules. Peloruside A induces G2/M arrest in the Pel cell lines at concentrations 10-15 times that required in the parental line. The cells show notable changes in morphology compared to the parental line.
佩罗利昔德 A 是一种微管稳定的大环内酯类药物,它与β微管蛋白结合的部位与紫杉醇结合的部位不同。该部位先前通过 H-D 交换作图和分子对接被鉴定为靠近微管外表面的区域,并局限在一个由连续折叠的蛋白质环包围的腔中,该环折叠成一个中心位于 Y340 的环。我们已经分离出一系列人卵巢癌细胞系 A2780(1A9)的耐佩罗利昔德 A 系,以更好地描述该结合部位以及改变其中残基的后果。描述了四个耐系(Pel A-D),它们在 I 类β-微管蛋白中有一个碱基突变,导致以下取代:R306H、Y340S、N337D 和 A296S,以各种组合出现。突变定位于以前通过氢-氘交换作图鉴定的肽上,集中在药物侧链似乎与之对接的裂缝上。Pel 系对佩罗利昔德 A 的抗性为 10-15 倍,对 laurmalide 表现出交叉抗性,但对其他任何微管稳定剂均无交叉抗性。它们对任何微管解稳定剂或与微管无关的两种药物均无交叉敏感性。在需要母系 10-15 倍浓度的情况下,佩罗利昔德 A 可诱导 Pel 系细胞在 G2/M 期停滞。与母系相比,这些细胞在形态上有明显变化。