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The ADAMTS/Fibrillin Connection: Insights into the Biological Functions of ADAMTS10 and ADAMTS17 and Their Respective Sister Proteases

机译:ADAMTS /原纤维蛋白的连接:深入了解ADAMTS10和ADAMTS17及其各自的姐妹蛋白酶的生物学功能

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摘要

Secreted isintegrin-like nd etalloprotease with hrombo pondin type 1 motif (ADAMTS) proteases play crucial roles in tissue development and homeostasis. The biological and pathological functions of ADAMTS proteases are determined broadly by their respective substrates and their interactions with proteins in the pericellular and extracellular matrix. For some ADAMTS proteases, substrates have been identified and substrate cleavage has been implicated in tissue development and in disease. For other ADAMTS proteases, substrates were discovered in vitro, but the role of these proteases and the consequences of substrate cleavage in vivo remains to be established. Mutations in and cause Weill–Marchesani syndrome (WMS), a congenital syndromic disorder that affects the musculoskeletal system (short stature, pseudomuscular build, tight skin), the eyes (lens dislocation), and the heart (heart valve abnormalities). WMS can also be caused by mutations in fibrillin-1 ( ), which suggests that ADAMTS10 and ADAMTS17 cooperate with fibrillin-1 in a common biological pathway during tissue development and homeostasis. Here, we compare and contrast the biochemical properties of ADAMTS10 and ADAMTS17 and we summarize recent findings indicating potential biological functions in connection with fibrillin microfibrils. We also compare ADAMTS10 and ADAMTS17 with their respective sister proteases, ADAMTS6 and ADAMTS19; both were recently linked to human disorders distinct from WMS. Finally, we propose a model for the interactions and roles of these four ADAMTS proteases in the extracellular matrix.
机译:秘密的 具有hrombo蛋白酶1型基序(ADAMTS)蛋白酶的异整合素样nd蛋白酶,在组织发育和体内平衡中起关键作用。 ADAMTS蛋白酶的生物学和病理功能在很大程度上取决于其各自的底物以及它们与细胞周围和细胞外基质中蛋白质的相互作用。对于某些ADAMTS蛋白酶,已经鉴定了底物,并且底物切割与组织发育和疾病有关。对于其他ADAMTS蛋白酶,在体外发现了底物,但这些蛋白酶的作用和体内裂解底物的后果仍有待确定。 Weill-Marchesani综合征(WMS)的突变并引起该现象,这是一种先天性综合征,影响肌肉骨骼系统(身材矮小,假肌肉发达,皮肤紧绷),眼睛(晶状体脱位)和心脏(心脏瓣膜异常)。 WMS也可能由fibrillin-1()突变引起,这表明ADAMTS10和ADAMTS17与fibrillin-1在组织发育和体内平衡过程中以共同的生物学途径协同作用。在这里,我们比较和对比ADAMTS10和ADAMTS17的生化特性,并总结了最近的发现,这些发现表明与原纤维微纤蛋白有关的潜在生物学功能。我们还将ADAMTS10和ADAMTS17与它们各自的姊妹蛋白酶ADAMTS6和ADAMTS19进行了比较。两者最近都与不同于WMS的人类疾病有关。最后,我们提出了这四种ADAMTS蛋白酶在细胞外基质中的相互作用和作用的模型。

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