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原蛋白编码的 pH 传感器调控弗林蛋白酶时空激活的机制。

The mechanism by which a propeptide-encoded pH sensor regulates spatiotemporal activation of furin.

机构信息

Department of Biochemistry and Molecular Biology, Oregon Health and Science University, Portland Oregon 97239, USA.

出版信息

J Biol Chem. 2013 Jun 28;288(26):19154-65. doi: 10.1074/jbc.M112.442681. Epub 2013 May 7.

Abstract

The proprotein convertase furin requires the pH gradient of the secretory pathway to regulate its multistep, compartment-specific autocatalytic activation. Although His-69 within the furin prodomain serves as the pH sensor that detects transport of the propeptide-enzyme complex to the trans-Golgi network, where it promotes cleavage and release of the inhibitory propeptide, a mechanistic understanding of how His-69 protonation mediates furin activation remains unclear. Here we employ biophysical, biochemical, and computational approaches to elucidate the mechanism underlying the pH-dependent activation of furin. Structural analyses and binding experiments comparing the wild-type furin propeptide with a nonprotonatable His-69 → Leu mutant that blocks furin activation in vivo revealed protonation of His-69 reduces both the thermodynamic stability of the propeptide as well as its affinity for furin at pH 6.0. Structural modeling combined with mathematical modeling and molecular dynamic simulations suggested that His-69 does not directly contribute to the propeptide-enzyme interface but, rather, triggers movement of a loop region in the propeptide that modulates access to the cleavage site and, thus, allows for the tight pH regulation of furin activation. Our work establishes a mechanism by which His-69 functions as a pH sensor that regulates compartment-specific furin activation and provides insights into how other convertases and proteases may regulate their precise spatiotemporal activation.

摘要

蛋白原转化酶 furin 需要分泌途径的 pH 梯度来调节其多步、区室特异性的自催化激活。虽然 furin 前肽域内的 His-69 作为 pH 传感器,可检测到前肽-酶复合物向反式高尔基体网络的转运,从而促进抑制前肽的切割和释放,但 His-69 质子化如何介导 furin 激活的机制仍不清楚。在这里,我们采用生物物理、生化和计算方法来阐明 furin 依赖 pH 的激活机制。结构分析和结合实验比较了野生型 furin 前肽与体内阻断 furin 激活的不可质子化 His-69→Leu 突变体,结果表明 His-69 的质子化降低了前肽的热力学稳定性及其在 pH 6.0 时与 furin 的亲和力。结构建模结合数学建模和分子动力学模拟表明,His-69 不会直接参与前肽-酶界面,而是触发前肽中一个环区的运动,从而调节切割位点的可及性,从而实现 furin 激活的严格 pH 调节。我们的工作建立了一种机制,即 His-69 作为 pH 传感器,调节区室特异性 furin 激活,并为其他转化酶和蛋白酶如何调节其精确的时空激活提供了见解。

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