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Structural basis for the regulated proteaseand chaperone function of DegP

机译:DegP调控蛋白酶和伴侣功能的结构基础

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All organisms have to monitor the folding state of cellular proteins precisely. The heat-shock protein DegP is a protein quality control factor in the bacterial envelope that is involved in eliminating misfolded proteins and in the biogenesis of outer-membrane proteins. Here we describe the molecular mechanisms underlying the regulated protease and chaperone function of DegP from Escherichia coli. We show that binding of misfolded proteins transforms hexameric DegP into large, catalytically active 12-meric and 24-meric multimers. A structural analysis of these particles revealed that DegP represents a protein packaging device whose central compartment is adaptable to the size and concentration of substrate. Moreover, the inner cavity serves antagonistic functions. Whereas the encapsulation of folded protomers of outer-membrane proteins is protective and might allow safe transit through the periplasm, misfolded proteins are eliminated in the molecular reaction chamber. Oligomer reassembly and concomitant activation on substrate binding may also be critical in regulating other HtrA proteases implicated in protein-folding diseases.
机译:所有生物都必须精确监控细胞蛋白质的折叠状态。热休克蛋白DegP是细菌包膜中的一种蛋白质质量控​​制因子,它参与消除错误折叠的蛋白质和外膜蛋白质的生物发生。在这里我们描述了来自大肠杆菌的DegP调节蛋白酶和伴侣功能的分子机制。我们表明,错误折叠的蛋白质的结合将六聚体DegP转变成大的,催化活性的12位和24位多聚体。对这些颗粒的结构分析表明,DegP代表一种蛋白质包装装置,其中央部分可适应底物的大小和浓度。此外,内腔起到拮抗作用。外部膜蛋白折叠的前体的包裹是保护性的,并且可能允许通过周质的安全转运,而错误折叠的蛋白在分子反应室中被消除。寡聚物的重组和底物结合上的伴随活化在调节与蛋白质折叠疾病有关的其他HtrA蛋白酶中也可能是关键的。

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