首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Degrons in protein substrates program the speed and operating efficiency of the AAA+ Lon proteolytic machine
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Degrons in protein substrates program the speed and operating efficiency of the AAA+ Lon proteolytic machine

机译:蛋白质底物中的去污剂可对AAA + Lon蛋白水解仪的速度和运行效率进行编程

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摘要

AAA+ proteases are ATP-fueled machines that bind protein substrates via a degradation tag, unfold the molecule if necessary, and then translocate the polypeptide into a chamber for proteolysis. Tag recognition is normally viewed as a passive reaction. By contrast, for the AAA+ Lon protease, we show that degron tags are also regulatory elements that determine protease activity levels. Indeed, different tags fused to the same protein change degradation speeds and energetic efficiencies by 10-fold or more. Degron binding to multiple sites in the Lon hexamer appears to differentially stabilize specific enzyme conformations, including one with high protease and low ATPase activity, and results in positively cooperative degradation. These allosteric mechanisms allow Lon to operate in either a fast or slow proteolysis mode, according to specific physiological needs, and may help maximize degradation of misfolded proteins following stress-induced denaturation.
机译:AAA +蛋白酶是由ATP供电的机器,可通过降解标签结合蛋白质底物,在必要时展开分子,然后将多肽转移到腔室内进行蛋白水解。标签识别通常被视为被动反应。相比之下,对于AAA + Lon蛋白酶,我们显示出degron标签也是决定蛋白酶活性水平的调控元件。实际上,融合到相同蛋白质上的不同标签将降解速度和能量效率提高了10倍或更多倍。 Degron与Lon六聚体中多个位点的结合似乎可以差异化稳定特定的酶构象,包括具有高蛋白酶和低ATPase活性的构象,并导致正向协同降解。这些变构机制使Lon可以根据特定的生理需要以快速或缓慢的蛋白水解模式运行,并且可以帮助在应力诱导的变性后最大化错折叠蛋白的降解。

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