Authors' Affiliations: Institute of Molecular Health Sciences, ETH Zurich, Zurich, Switzerland; and Department of Cell Biology, The Scripps Research Institute, La Jolla, California.
Cancer Res. 2014 Jan 1;74(1):353-62. doi: 10.1158/0008-5472.CAN-13-1334. Epub 2013 Nov 26.
Cancer-associated mutations in oncogene products and tumor suppressors contributing to tumor progression manifest themselves, at least in part, by deregulating microtubule-dependent cellular processes that play important roles in many cell biological pathways, including intracellular transport, cell architecture, and primary cilium and mitotic spindle organization. An essential characteristic of microtubules in the performance of these varied cell processes is their ability to continuously remodel, a phenomenon known as dynamic instability. It is therefore conceivable that part of the normal function of certain cancer-causing genes is to regulate microtubule dynamic instability. Here, we report the results of a high-resolution live-cell image-based RNA interference screen targeting a collection of 70 human tumor suppressor genes to uncover cancer genes affecting microtubule dynamic instability. Extraction and computational analysis of microtubule dynamics from EB3-GFP time-lapse image sequences identified the products of the tumor suppressor genes NF1 and NF2 as potent microtubule-stabilizing proteins. Further in-depth characterization of NF2 revealed that it binds to and stabilizes microtubules through attenuation of tubulin turnover by lowering both rates of microtubule polymerization and depolymerization as well as by reducing the frequency of microtubule catastrophes. The latter function appears to be mediated, in part, by inhibition of hydrolysis of tubulin-bound GTP on the growing microtubule plus end.
癌基因产物和肿瘤抑制因子中的癌症相关突变导致肿瘤进展,至少部分原因是它们扰乱了微管依赖性的细胞过程,这些过程在许多细胞生物学途径中发挥着重要作用,包括细胞内运输、细胞结构以及初级纤毛和有丝纺锤体的组织。微管在执行这些多样化的细胞过程中的一个重要特征是它们能够不断重塑,这一现象被称为动态不稳定性。因此,可以想象,某些致癌基因的正常功能之一是调节微管的动态不稳定性。在这里,我们报告了针对 70 个人类肿瘤抑制基因进行高分辨率活细胞图像基于 RNA 干扰筛选的结果,以发现影响微管动态不稳定性的癌症基因。从 EB3-GFP 时间 lapse 图像序列中提取和计算微管动力学,鉴定出肿瘤抑制基因 NF1 和 NF2 的产物是强有力的微管稳定蛋白。对 NF2 的进一步深入表征表明,它通过降低微管聚合和解聚的速度以及降低微管灾难的频率,从而降低了微管周转率,从而结合并稳定微管。后一种功能似乎部分是通过抑制微管生长端上结合的微管蛋白 GTP 的水解来介导的。