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Activation of the furin endoprotease is a multiple-step process: requirements for acidification and internal propeptide cleavage.

机译:弗林蛋白酶内蛋白酶的激活是一个多步骤过程:酸化和内部前肽裂解的要求。

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摘要

Activation of furin requires autoproteolytic cleavage of its 83-amino acid propeptide at the consensus furin site, Arg-Thr-Lys-Arg107/. This RER-localized cleavage is necessary, but not sufficient, for enzyme activation. Rather, full activation of furin requires exposure to, and correct routing within, the TGN/endosomal system. Here, we identify the steps in addition to the initial propeptide cleavage necessary for activation of furin. Exposure of membrane preparations containing an inactive RER-localized soluble furin construct to either: (i) an acidic and calcium-containing environment characteristic of the TGN; or (ii) mild trypsinization at neutral pH, resulted in the activation of the endoprotease. Taken together, these results suggest that the pH drop facilitates the removal of a furin inhibitor. Consistent with these findings, following cleavage in the RER, the furin propeptide remains associated with the enzyme and functions as a potent inhibitor of the endoprotease. Co-immunoprecipitation studies coupled with analysis by mass spectrometry show that release of the propeptide at acidic pH, and hence activation of furin, requires a second cleavage within the autoinhibitory domain at a site containing a P6 arginine (-Arg70-Gly-Val-Thr-Lys-Arg75/-). The significance of this cleavage in regulating the compartment-specific activation of furin, and the relationship of the furin activation pathway to those of other serine endoproteases are discussed.
机译:弗林蛋白酶的激活需要在共有弗林蛋白酶位点Arg-Thr-Lys-Arg107 /上自动水解其83个氨基酸的前肽。这种RER定位的裂解对于酶激活是必需的,但还不够。相反,弗林蛋白酶的完全活化需要暴露于TGN /内体系统中并在其中正确布线。在这里,我们确定了激活弗林蛋白酶所需的初始前肽裂解以外的步骤。含有无活性RER定位的可溶性弗林蛋白酶构建物的膜制剂暴露于以下任何一种情况:(i)TGN的酸性和含钙环境特征;或(ii)在中性pH下进行轻度胰蛋白酶消化,导致内切蛋白酶激活。综上所述,这些结果表明pH下降促进了弗林蛋白酶抑制剂的去除。与这些发现一致的是,在RER中裂解后,弗林蛋白酶前肽仍与酶结合,并作为内切蛋白酶的有效抑制剂起作用。免疫共沉淀研究以及质谱分析表明,在酸性pH下前肽的释放以及由此引发的弗林蛋白酶的活化需要在自抑制域内的第二个酶切位点上的P6精氨酸(-Arg70-Gly-Val-Thr -Lys-Arg75 /-)。讨论了这种裂解在调节弗林蛋白酶区室特异性激活中的重要性,以及弗林蛋白酶激活途径与其他丝氨酸内切蛋白酶之间的关系。

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