Sprangers Remco, Gribun Anna, Hwang Peter M, Houry Walid A, Kay Lewis E
Department of Biochemistry, University of Toronto, ON, Canada.
Proc Natl Acad Sci U S A. 2005 Nov 15;102(46):16678-83. doi: 10.1073/pnas.0507370102. Epub 2005 Nov 1.
The highly conserved, 300-kDa cylindrical protease ClpP is an important component of the cellular protein quality machinery. It consists of 14 subunits arranged into two heptameric rings that enclose a large chamber containing the protease active sites. ClpP associates with ClpX and ClpA ATPases that unfold and translocate substrates into the protease catalytic chamber through axial pores located at both ends of the ClpP cylinder. Although the pathway of substrate delivery is well established, the pathway of product release is unknown. Here, we use recently developed transverse relaxation optimized spectroscopy (TROSY) of methyl groups to show that the interface between the heptameric rings exchanges between two structurally distinct conformations. The conformational exchange process has been quantified by magnetization exchange and methyl TROSY relaxation dispersion experiments recorded between 0.5 degrees C and 40 degrees C, so that the thermodynamic properties for the transition could be obtained. Restriction of the observed motional freedom in ClpP through the introduction of a cysteine linkage results in a protease where substrate release becomes significantly slowed relative to the rate observed in the reduced enzyme, suggesting that the observed motions lead to the formation of transient side pores that may play an important role in product release.
高度保守的300 kDa圆柱形蛋白酶ClpP是细胞蛋白质质量控制机制的重要组成部分。它由14个亚基组成,排列成两个七聚体环,围绕着一个包含蛋白酶活性位点的大腔室。ClpP与ClpX和ClpA ATP酶结合,这些ATP酶通过位于ClpP圆柱体两端的轴向孔将底物展开并转运到蛋白酶催化腔室中。尽管底物递送途径已得到充分确立,但产物释放途径尚不清楚。在这里,我们使用最近开发的甲基基团横向弛豫优化光谱(TROSY)来表明七聚体环之间的界面在两种结构不同的构象之间交换。通过在0.5℃至40℃之间记录的磁化交换和甲基TROSY弛豫色散实验对构象交换过程进行了量化,从而获得了转变的热力学性质。通过引入半胱氨酸连接来限制ClpP中观察到的运动自由度,会导致一种蛋白酶,其底物释放相对于还原酶中观察到的速率显著减慢,这表明观察到的运动导致形成瞬时侧孔,这些侧孔可能在产物释放中起重要作用。