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使用多构建体方法对膜中蛋白质转运通道TatA进行结构分析。

Structure analysis of the protein translocating channel TatA in membranes using a multi-construct approach.

作者信息

Lange Christian, Müller Sonja D, Walther Torsten H, Bürck Jochen, Ulrich Anne S

机构信息

Forschungszentrum Karlsruhe, POB 3640, D-76021 Karlsruhe, Germany.

出版信息

Biochim Biophys Acta. 2007 Oct;1768(10):2627-34. doi: 10.1016/j.bbamem.2007.06.021. Epub 2007 Jul 6.

DOI:10.1016/j.bbamem.2007.06.021
PMID:17669355
Abstract

The twin-arginine-translocase (Tat) can transport proteins in their folded state across bacterial or thylakoid membranes. In Bacillus subtilis the Tat-machinery consists of only two integral (inner) membrane proteins, TatA and TatC. Multiple copies of TatA are supposed to form the transmembrane channel, but little structural data is available on this 70-residue component. We used a multi-construct approach for expressing several characteristic fragments of TatA(d), to determine their individual structures and to cross-validate them comprehensively within the architecture of the full-length protein. Here, we report the design, high-yield expression, detergent-aided purification and lipid-reconstitution of five constructs of TatA(d), overcoming difficulties associated with the very different hydrophobicities and sizes of these membrane protein fragments. Circular dichroism (CD) and oriented CD (OCD) were used to determine their respective conformations and alignments in suitable, negatively charged phospholipid bilayers. CD spectroscopy showed an N-terminal alpha-helix, a central helical stretch, and an unstructured C-terminus, thus proving the existence of these secondary structures in TatA(d) for the first time. The OCD spectra demonstrated a transmembrane orientation of the N-terminal alpha-helix and a surface alignment of the central amphiphilic helix in lipid bilayers, thus supporting the postulated topology model and function of TatA as a transmembrane channel.

摘要

双精氨酸转运酶(Tat)能够将折叠状态的蛋白质转运穿过细菌或类囊体膜。在枯草芽孢杆菌中,Tat机制仅由两种整合(内膜)膜蛋白TatA和TatC组成。TatA的多个拷贝被认为形成跨膜通道,但关于这个由70个残基组成的组件的结构数据很少。我们采用多构建体方法来表达TatA(d)的几个特征片段,以确定它们各自的结构,并在全长蛋白的结构中对其进行全面交叉验证。在这里,我们报告了TatA(d)的五个构建体的设计、高产表达、去污剂辅助纯化和脂质重构,克服了与这些膜蛋白片段非常不同的疏水性和大小相关的困难。圆二色性(CD)和定向CD(OCD)用于确定它们在合适的带负电荷的磷脂双层中的各自构象和排列。CD光谱显示了一个N端α螺旋、一个中央螺旋段和一个无结构的C端,从而首次证明了这些二级结构在TatA(d)中的存在。OCD光谱证明了N端α螺旋在脂质双层中的跨膜取向以及中央两亲性螺旋的表面排列,从而支持了TatA作为跨膜通道的假定拓扑模型和功能。

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