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Delineation of proteolytic and non-proteolytic functions of the membrane-anchored serine protease prostasin

机译:膜锚丝氨酸蛋白酶前列腺素的蛋白水解和非蛋白水解功能的描述

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The membrane-anchored serine proteases prostasin (PRSS8) and matriptase (ST14) initiate a cell surface proteolytic pathway essential for epithelial function. Mice expressing only catalytically inactive prostasin are viable, unlike prostasin null mice, indicating that at least some prostasin functions are non-proteolytic. Here we used knock-in mice expressing catalytically inactive prostasin (Prss8(Ki)/(Ki)) to show that the physiological and pathological functions of prostasin vary in their dependence on its catalytic activity. Whereas prostasin null mice exhibited partial embryonic and complete perinatal lethality, Prss8(Ki)/(Ki) mice displayed normal prenatal and postnatal survival. Unexpectedly, catalytically inactive prostasin caused embryonic lethality in mice lacking its cognate inhibitors HAI-1 (SPINT1) or HAI-2 (SPINT2). Proteolytically inactive prostasin, unlike the wild-type protease, was unable to activate matriptase during placentation. Surprisingly, all essential functions of prostasin in embryonic and postnatal development were compensated for by loss of HAI-1, indicating that prostasin is only required for mouse development and overall viability in the presence of this inhibitor. This study expands our knowledge of non-proteolytic functions of membrane-anchored serine proteases and provides unexpected new data on the mechanistic interactions between matriptase and prostasin in the context of epithelial development.
机译:膜锚定的丝氨酸蛋白酶前列腺素(PRSS8)和金属肽酶(ST14)启动上皮功能必不可少的细胞表面蛋白水解途径。与无前列腺素的小鼠不同,仅表达无催化活性的前列腺素的小鼠是可行的,这表明至少一些前列腺素功能是非蛋白水解的。在这里,我们使用表达催化失活的前列腺素(Prss8(Ki)/(Ki))的敲入小鼠来证明前列腺素的生理和病理功能在其对催化活性的依赖性方面有所不同。前列腺素无效小鼠表现出部分胚胎和完全的围生期致死性,而Prss8(Ki)/(Ki)小鼠表现出正常的产前和产后存活率。出乎意料的是,缺乏催化活性的前列腺素在缺乏其同源抑制剂HAI-1(SPINT1)或HAI-2(SPINT2)的小鼠中引起胚胎致死性。与野生型蛋白酶不同,蛋白水解无活性的前列腺素在胎盘形成过程中不能激活苹果酸酶。出人意料的是,HAI-1的丢失补偿了前列腺素在胚胎和出生后发育中的所有基本功能,这表明前列腺素仅在存在该抑制剂的情况下才对小鼠的发育和整体生存能力是必需的。这项研究扩展了我们对膜锚定的丝氨酸蛋白酶的非蛋白水解功能的认识,并提供了关于上皮细胞发育过程中苹果酸蛋白酶和前列腺素之间的机械相互作用的意外新数据。

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