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Furin-dependent intracellular activation of the human stromelysin-3 zymogen.

机译:人stromelysin-3酶原的弗林蛋白酶依赖性细胞内激活。

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Human stromelysin-3, a new member of the matrix metalloproteinase family, is expressed in tissues undergoing the active remodelling associated with embryonic development, wound healing and tumour invasion. But like all other members of the matrix metalloproteinase gene family, stromelysin-3 is synthesized as an inactive precursor that must be processed to its mature form in order to express enzymic activity. Here we identify stromelysin-3 as the first matrix metalloproteinase to be discovered that can be processed directly to its enzymically active form by an obligate intracellular proteolytic event that occurs within the constitutive secretory pathway. Intracellular activation is regulated by an unusual 10-amino-acid insert sandwiched between the pro- and catalytic-domains of stromelysin-3, which is encrypted with an Arg-X-Arg-X-Lys-Arg recognition motif for the Golgi-associated proteinase, furin, a mammalian homologue of the yeast Kex2 pheromone convertase. A furin-stromelysin-3 processing axis not only differentiates the regulation of this enzyme from all previously characterized matrix metalloproteinases, but also identifies pro-protein convertases as potential targets for therapeutic intervention in matrix-destructive disease states.
机译:人基质溶菌素3是基质金属蛋白酶家族的新成员,在经历与胚胎发育,伤口愈合和肿瘤侵袭相关的活动重塑的组织中表达。但是,与基质金属蛋白酶基因家族的所有其他成员一样,stromelysin-3被合成为无活性的前体,必须将其加工成其成熟形式才能表达酶活性。在这里我们确定stromelysin-3是第一个被发现的基质金属蛋白酶,可以通过组成性分泌途径内发生的专性细胞内蛋白水解事件将其直接加工成其酶促活性形式。细胞内激活受夹在stromelysin-3的前结构域和催化结构域之间的不寻常的10个氨基酸插入片段调控,该插入片段被与高尔基体相关的Arg-X-Arg-X-Lys-Arg识别基元加密蛋白酶,弗林蛋白酶,酵母Kex2信息素转化酶的哺乳动物同源物。弗林蛋白酶-基质溶素-3加工轴不仅使该酶的调节与所有先前表征的基质金属蛋白酶区分开,而且还将前蛋白转化酶确定为在基质破坏性疾病状态下进行治疗干预的潜在靶标。

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