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{CAPTURING} RNA-DEPENDENT {PATHWAYS} {FOR} CRYO-EM {ANALYSIS}

机译:{CAPTURING} RNA依赖{PATHWAYS} {FOR} CRYO-EM {ANALYSIS}

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Cryo-Electron Microscopy (EM) is a powerful technique to visualize biological processes at nanometer resolution. Structural studies of macromolecular assemblies are typically performed on individual complexes that are biochemically isolated from their cellular context. Here we present a molecular imaging platform to capture and view multiple components of cellular pathways within a functionally relevant framework. We utilized the bacterial protein synthesis machinery as a model system to develop our approach. By using modified Affinity Grid surfaces, we were able to recruit multiple protein assemblies bound to nascent strands of mRNA. The combined use of Affinity Capture technology and single particle electron microscopy provide the basis for visualizing RNA-dependent pathways in a remarkable new way.
机译:低温电子显微镜(EM)是一种强大的技术,可以在纳米分辨率下可视化生物过程。大分子组装体的结构研究通常是对从其细胞环境生化分离的单个复合物进行的。在这里,我们介绍一个分子成像平台,以捕获和查看功能相关框架内的细胞途径的多个组成部分。我们利用细菌蛋白质合成机制作为模型系统来开发我们的方法。通过使用改良的亲和网格表面,我们能够募集与mRNA新生链结合的多个蛋白质装配体。 Affinity Capture技术与单粒子电子显微镜的结合使用为以显着新方式可视化RNA依赖性途径提供了基础。

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