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HsIU的结构以及ATP依赖性蛋白酶HsIU-HsIV

The structures of HsIU and the ATP-dependent protease HsIU-HsIV.

作者信息

Bochtler M, Hartmann C, Song H K, Bourenkov G P, Bartunik H D, Huber R

机构信息

Max-Planck-Institut für Biochemie, Planegg, Germany.

出版信息

Nature. 2000 Feb 17;403(6771):800-5. doi: 10.1038/35001629.

Abstract

The degradation of cytoplasmic proteins is an ATP-dependent process. Substrates are targeted to a single soluble protease, the 26S proteasome, in eukaryotes and to a number of unrelated proteases in prokaryotes. A surprising link emerged with the discovery of the ATP-dependent protease HslVU (heat shock locus VU) in Escherichia coli. Its protease component HslV shares approximately 20% sequence similarity and a conserved fold with 20S proteasome beta-subunits. HslU is a member of the Hsp100 (Clp) family of ATPases. Here we report the crystal structures of free HslU and an 820,000 relative molecular mass complex of HslU and HslV-the first structure of a complete set of components of an ATP-dependent protease. HslV and HslU display sixfold symmetry, ruling out mechanisms of protease activation that require a symmetry mismatch between the two components. Instead, there is conformational flexibility and domain motion in HslU and a localized order-disorder transition in HslV. Individual subunits of HslU contain two globular domains in relative orientations that correlate with nucleotide bound and unbound states. They are surprisingly similar to their counterparts in N-ethylmaleimide-sensitive fusion protein, the prototype of an AAA-ATPase. A third, mostly alpha-helical domain in HslU mediates the contact with HslV and may be the structural equivalent of the amino-terminal domains in proteasomal AAA-ATPases.

摘要

细胞质蛋白的降解是一个依赖ATP的过程。在真核生物中,底物被靶向单一的可溶性蛋白酶——26S蛋白酶体,而在原核生物中则被靶向多种不相关的蛋白酶。随着大肠杆菌中依赖ATP的蛋白酶HslVU(热休克基因座VU)的发现,出现了一个惊人的联系。其蛋白酶组分HslV与20S蛋白酶体β亚基具有约20%的序列相似性和保守的折叠结构。HslU是Hsp100(Clp)ATP酶家族的成员。在此,我们报道了游离HslU以及HslU和HslV的820,000相对分子质量复合物的晶体结构——这是依赖ATP的蛋白酶完整组分的首个结构。HslV和HslU呈现六重对称性,排除了需要两个组分之间对称性不匹配的蛋白酶激活机制。相反,HslU存在构象灵活性和结构域运动,HslV存在局部的有序-无序转变。HslU的各个亚基包含两个球状结构域,其相对取向与核苷酸结合和未结合状态相关。它们与AAA-ATP酶原型N-乙基马来酰亚胺敏感融合蛋白中的对应结构域惊人地相似。HslU中的第三个结构域(主要是α螺旋结构域)介导与HslV的接触,可能相当于蛋白酶体AAA-ATP酶中氨基末端结构域的结构等效物。

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