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A helical processing pipeline for EM structure determination of membrane proteins

机译:用于确定膜蛋白EM结构的螺旋加工管线

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摘要

Electron crystallography plays a key role in the structural biology of integral membrane proteins (IMPs) by offering one of the most direct means of providing insight into the functional state of these molecular machines in their lipid-associated forms, and also has the potential to facilitate examination of physiologically relevant transitional states and complexes. Helical or tubular crystals, which are the natural product of proteins crystallizing on the surface of a cylindrical vesicle, offer some unique advantages, such as three-dimensional (3D) information from a single view, compared to other crystalline forms. While a number of software packages are available for processing images of helical crystals to produce 3D electron density maps, widespread exploitation of helical image reconstruction is limited by a lack of standardized approaches and the initial effort and specialized expertise required. Our goal is to develop an integrated pipeline to enable structure determination by transmission electron microscopy (TEM) of IMPs in the form of tubular crystals. We describe here the integration of standard Fourier-Bessel helical analysis techniques into Appion, an integrated, database-driven pipeline.
机译:电子晶体学通过提供最直接的方法之一来洞察这些分子机器的脂质相关形式的功能状态,从而在整体膜蛋白(IMP)的结构生物学中发挥关键作用,并且有可能促进检查生理相关的过渡态和复合物。螺旋形或管状晶体是蛋白质在圆柱形囊泡表面上结晶的天然产物,与其他晶体形式相比,具有一些独特的优势,例如从单一角度查看三维(3D)信息。尽管有许多软件包可用于处理螺旋晶体的图像以产生3D电子密度图,但是由于缺乏标准化的方法以及所需的初步工作和专门知识,限制了螺旋图像重建的广泛应用。我们的目标是开发一条集成管道,以通过透射电子显微镜(TEM)确定管状晶体形式的IMP的结构。我们在这里描述了将标准傅里叶-贝塞尔螺旋分析技术集成到Appion(集成的数据库驱动的管道)中。

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