首页> 外文期刊>Development >Regulation of cell surface protease matriptase by HAI2 is essential for placental development, neural tube closure and embryonic survival in mice.
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Regulation of cell surface protease matriptase by HAI2 is essential for placental development, neural tube closure and embryonic survival in mice.

机译:HAI2对细胞表面蛋白酶matriptase的调节对于小鼠胎盘发育,神经管闭合和胚胎存活至关重要。

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Hypomorphic mutations in the human SPINT2 gene cause a broad spectrum of abnormalities in organogenesis, including organ and digit duplications, atresia, fistulas, hypertelorism, cleft palate and hamartoma. SPINT2 encodes the transmembrane serine protease inhibitor HAI2 (placental bikunin), and the severe developmental effects of decreased HAI2 activity can be hypothesized to be a consequence of excess pericellular proteolytic activity. Indeed, we show here that HAI2 is a potent regulator of protease-guided cellular responses, including motogenic activity and transepithelial resistance of epithelial monolayers. Furthermore, we show that inhibition of the transmembrane serine protease matriptase (encoded by St14) is an essential function of HAI2 during tissue morphogenesis. Genetic inactivation of the mouse Spint2 gene led to defects in neural tube closure, abnormal placental labyrinth development associated with loss of epithelial cell polarity, and embryonic demise. Developmental defects observed in HAI2-deficient mice were caused by unregulated matriptase activity, as both placental development and embryonic survival in HAI2-deficient embryos were completely restored by the simultaneous genetic inactivation of matriptase. However, neural tube defects were detected in HAI2-deficient mice even in the absence of matriptase, although at lower frequency, indicating that the inhibition of additional serine protease(s) by HAI2 is required to complete neural development. Finally, by genetic complementation analysis, we uncovered a unique and complex functional interaction between HAI2 and the related HAI1 in the regulation of matriptase activity during development. This study indicates that unregulated matriptase-dependent cell surface proteolysis can cause a diverse array of abnormalities in mammalian development.
机译:人SPINT2基因的亚同型突变会导致器官发生中的各种异常,包括器官和手指重复,闭锁,瘘管,纤维过硬,left裂和错构瘤。 SPINT2编码跨膜丝氨酸蛋白酶抑制剂HAI2(胎盘比库宁),并且可以假设HAI2活性降低的严重发育效应是细胞周围蛋白水解活性过高的结果。确实,我们在这里表明HAI2是蛋白酶引导的细胞应答(包括运动活性和上皮单层跨上皮抵抗)的有效调节剂。此外,我们表明抑制跨膜丝氨酸蛋白酶matriptase(由St14编码)是HAI2在组织形态发生过程中的基本功能。小鼠Spint2基因的遗传失活导致神经管闭合缺陷,与上皮细胞极性丧失相关的胎盘迷宫发育异常和胚胎死亡。在HAI2缺陷型小鼠中观察到的发育缺陷是由于苹果酸酶的失控引起的,因为HAI2缺陷型胚胎的同时遗传失活可以完全恢复胎盘发育和HAI2缺陷胚胎的胚胎存活。但是,即使在缺乏matriptase的情况下,在HAI2缺陷型小鼠中也检测到了神经管缺陷,尽管频率较低,这表明HAI2需要抑制其他丝氨酸蛋白酶才能完成神经发育。最后,通过遗传互补分析,我们发现了HAI2和相关HAI1之间在发育过程中对苹果酸酶活性的调控中独特而复杂的功能相互作用。这项研究表明,不受调节的依赖麦芽糖酶的细胞表面蛋白水解会导致哺乳动物发育中的各种异常。

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