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用于结构肿瘤学应用的微芯片平台。

A microchip platform for structural oncology applications.

作者信息

Winton Carly E, Gilmore Brian L, Demmert Andrew C, Karageorge Vasilea, Sheng Zhi, Kelly Deborah F

机构信息

Virginia Tech Carilion Research Institute, Roanoke, VA, USA ; School of Biomedical Engineering and Science, Virginia Tech, Blacksburg, VA, USA.

Virginia Tech Carilion Research Institute, Roanoke, VA, USA.

出版信息

NPJ Breast Cancer. 2016;2:16016-. doi: 10.1038/npjbcancer.2016.16. Epub 2016 Jun 15.

Abstract

Recent advances in the development of functional materials offer new tools to dissect human health and disease mechanisms. The use of tunable surfaces is especially appealing as substrates can be tailored to fit applications involving specific cell types or tissues. Here we use tunable materials to facilitate the three-dimensional (3D) analysis of BRCA1 gene regulatory complexes derived from human cancer cells. We employed a recently developed microchip platform to isolate BRCA1 protein assemblies natively formed in breast cancer cells with and without BRCA1 mutations. The captured assemblies proved amenable to cryo-electron microscopy (EM) imaging and downstream computational analysis. Resulting 3D structures reveal the manner in which wild-type BRCA1 engages the RNA polymerase II (RNAP II) core complex that contained K63-linked ubiquitin moieties-a putative signal for DNA repair. Importantly, we also determined that molecular assemblies harboring the mutation exhibited altered protein interactions and ubiquitination patterns compared to wild-type complexes. Overall, our analyses proved optimal for developing new structural oncology applications involving patient-derived cancer cells, while expanding our knowledge of BRCA1's role in gene regulatory events.

摘要

功能材料开发的最新进展为剖析人类健康和疾病机制提供了新工具。可调谐表面的应用尤其具有吸引力,因为可以定制底物以适应涉及特定细胞类型或组织的应用。在这里,我们使用可调谐材料来促进对源自人类癌细胞的BRCA1基因调控复合物的三维(3D)分析。我们采用了最近开发的微芯片平台,以分离在有和没有BRCA1突变的乳腺癌细胞中天然形成的BRCA1蛋白组装体。捕获的组装体被证明适用于冷冻电子显微镜(EM)成像和下游计算分析。所得的3D结构揭示了野生型BRCA1与包含K63连接的泛素部分的RNA聚合酶II(RNAP II)核心复合物结合的方式——这是一种DNA修复的假定信号。重要的是,我们还确定,与野生型复合物相比,携带该突变的分子组装体表现出改变的蛋白质相互作用和泛素化模式。总体而言,我们的分析被证明最适合开发涉及患者来源癌细胞的新的结构肿瘤学应用,同时扩展了我们对BRCA1在基因调控事件中作用的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af55/5515328/6aa5566830bb/npjbcancer201616-f1.jpg

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