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Control of substrate gating and translocation into ClpP by channel residues and ClpX binding.

机译:通过通道残基和 ClpX 结合控制底物门控和易位到 ClpP 中。

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摘要

ClpP is a self-compartmentalized protease, which has very limited degradation activity unless it associates with ClpX to form ClpXP or with ClpA to form ClpAP. Here, we show that ClpX binding stimulates ClpP cleavage of peptides larger than a few amino acids and enhances ClpP active-site modification. Stimulation requires ATP binding but not hydrolysis by ClpX. The magnitude of this enhancement correlates with increasing molecular weight of the molecule entering ClpP. Amino-acid substitutions in the channel loop or helix A of ClpP enhance entry of larger substrates into the free enzyme, eliminate ClpX binding in some cases, and are not further stimulated by ClpX binding in other instances. These results support a model in which the channel residues of free ClpP exclude efficient entry of all but the smallest peptides into the degradation chamber, with ClpX binding serving to relieve these inhibitory interactions. Specific ClpP channel variants also prevent ClpXP translocation of certain amino-acid sequences, suggesting that the wild-type channel plays an important role in facilitating broad translocation specificity. In combination with previous studies, our results indicate that collaboration between ClpP and its partner ATPases opens a gate that functions to exclude larger substrates from isolated ClpP.
机译:ClpP 是一种自区室化的蛋白酶,除非它与 ClpX 结合形成 ClpXP 或与 ClpA 结合形成 ClpAP,否则其降解活性非常有限。在这里,我们表明ClpX结合刺激ClpP切割大于几个氨基酸的肽,并增强ClpP活性位点修饰。刺激需要 ATP 结合,但不需要 ClpX 水解。这种增强的幅度与进入ClpP的分子的分子量增加有关。 ClpP通道环或螺旋A中的氨基酸取代增强了较大底物进入游离酶,在某些情况下消除了ClpX结合,并且在其他情况下不会受到ClpX结合的进一步刺激。这些结果支持一种模型,在该模型中,游离ClpP的通道残基排除了除最小肽以外的所有肽的有效进入降解室,ClpX结合用于缓解这些抑制性相互作用。特异性 ClpP 通道变体还可阻止某些氨基酸序列的 ClpXP 易位,这表明野生型通道在促进广泛的易位特异性方面起着重要作用。结合之前的研究,我们的结果表明,ClpP与其伙伴ATP酶之间的合作打开了一扇门,其功能是从分离的ClpP中排除更大的底物。

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