Hardy S J, Randall L L
Department of Biology, University of York, U.K.
Philos Trans R Soc Lond B Biol Sci. 1993 Mar 29;339(1289):343-52; discussion 352-4. doi: 10.1098/rstb.1993.0033.
SecB is a molecular chaperone involved in protein export from Escherichia coli. It is a highly negatively charged, soluble, tetrameric protein with a monomer molecular mass of 16,400 kDa. It has two functions: it maintains precursors of some exported proteins in a conformation compatible with export, by preventing them from aggregating or from folding into their thermodynamically stable state in the cytoplasm, and it delivers both nascent and completed precursors to SecA, one of the components of the export apparatus that are on and in the plasma membrane. SecB recognizes completed precursors of soluble proteins, not by direct interaction with leader sequences but by virtue of the property, imposed by their leader sequences, that they fold slowly: i.e. there is a kinetic partitioning between folding and interaction with SecB. Only those polypeptides that fold slowly interact significantly with this molecular chaperone even though it is able to bind a wide variety of non-native proteins. Binding studies with purified peptides indicate that each SecB monomer has a binding site that can interact with flexible peptides having a net positive charge and a length of about ten residues, which may depend on the charge density. Binding of the hydrophobic fluorescent probe 1-anilino-naphthalene-8-sulphonate (ANS) indicates that simultaneous interaction of multiple peptides causes a conformational change that exposes a hydrophobic site on SecB. This hydrophobic region is thought to contribute an extra binding site for physiological ligands of SecB. A model of SecB binding to nonnative precursors is presented.
SecB是一种参与大肠杆菌蛋白质输出的分子伴侣。它是一种带高度负电荷的可溶性四聚体蛋白,单体分子量为16,400 kDa。它有两个功能:通过防止一些输出蛋白的前体在细胞质中聚集或折叠成其热力学稳定状态,使其保持与输出相容的构象;它将新生的和完整的前体都递送至SecA,SecA是位于质膜上及质膜内的输出装置的组成部分之一。SecB识别可溶性蛋白的完整前体,不是通过与前导序列直接相互作用,而是凭借其前导序列赋予的特性,即它们折叠缓慢:也就是说,在折叠和与SecB相互作用之间存在动力学分配。只有那些折叠缓慢的多肽才会与这种分子伴侣发生显著相互作用,尽管它能够结合多种非天然蛋白。对纯化肽段的结合研究表明,每个SecB单体都有一个结合位点,该位点可与净电荷为正且长度约为十个残基的柔性肽段相互作用,这可能取决于电荷密度。疏水荧光探针1-苯胺基萘-8-磺酸盐(ANS)的结合表明,多个肽段的同时相互作用会引起构象变化,从而暴露出SecB上的一个疏水位点。这个疏水区域被认为为SecB的生理配体提供了一个额外的结合位点。本文提出了SecB与非天然前体结合的模型。