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ClpP双环十四聚体蛋白酶表现出可塑性的环-环相互作用,其亚基的N末端形成柔性环,这对于ClpXP和ClpAP复合物的形成至关重要。

The ClpP double ring tetradecameric protease exhibits plastic ring-ring interactions, and the N termini of its subunits form flexible loops that are essential for ClpXP and ClpAP complex formation.

作者信息

Gribun Anna, Kimber Matthew S, Ching Reagan, Sprangers Remco, Fiebig Klaus M, Houry Walid A

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

J Biol Chem. 2005 Apr 22;280(16):16185-96. doi: 10.1074/jbc.M414124200. Epub 2005 Feb 8.

Abstract

ClpP is a conserved serine-protease with two heptameric rings that enclose a large chamber containing the protease active sites. Each ClpP subunit can be divided into a handle region, which mediates ring-ring interactions, and a head domain. ClpP associates with the hexameric ATPases ClpX and ClpA, which can unfold and translocate substrate proteins through the ClpP axial pores into the protease lumen for degradation. We have determined the x-ray structure of Streptococcus pneumoniae ClpP(A153P) at 2.5 A resolution. The structure revealed two novel features of ClpP which are essential for ClpXP and ClpAP functional activities. First, the Ala --> Pro mutation disrupts the handle region, resulting in an altered ring-ring dimerization interface, which, in conjunction with biochemical data, demonstrates the unusual plasticity of this region. Second, the structure shows the existence of a flexible N-terminal loop in each ClpP subunit. The loops line the axial pores in the ClpP tetradecamer and then protrude from the protease apical surface. The sequence of the N-terminal loop is highly conserved in ClpP across all kingdoms of life. These loops are essential determinants for complex formation between ClpP and ClpX/ClpA. Mutation of several amino acid residues in this loop or the truncation of the loop impairs ClpXP and ClpAP complex formation and prevents the coupling between ClpX/ClpA and ClpP activities.

摘要

ClpP是一种保守的丝氨酸蛋白酶,由两个七聚体环组成,包围着一个含有蛋白酶活性位点的大腔室。每个ClpP亚基可分为介导环-环相互作用的柄部区域和头部结构域。ClpP与六聚体ATP酶ClpX和ClpA结合,后者可将底物蛋白展开并通过ClpP轴向孔转运到蛋白酶腔中进行降解。我们已确定肺炎链球菌ClpP(A153P)在2.5埃分辨率下的X射线结构。该结构揭示了ClpP的两个新特征,它们对ClpXP和ClpAP的功能活性至关重要。首先,丙氨酸到脯氨酸的突变破坏了柄部区域,导致环-环二聚化界面改变,结合生化数据表明该区域具有不同寻常的可塑性。其次,结构显示每个ClpP亚基中存在一个灵活的N端环。这些环排列在ClpP十四聚体的轴向孔中,然后从蛋白酶顶端表面突出。N端环的序列在所有生命王国的ClpP中高度保守。这些环是ClpP与ClpX/ClpA之间形成复合物的关键决定因素。该环中几个氨基酸残基的突变或环的截断会损害ClpXP和ClpAP复合物的形成,并阻止ClpX/ClpA与ClpP活性之间的偶联。

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