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鼠神经蛋白酶第三个清道夫受体胱氨酸丰富结构域的结构特征。

Structural characterization of the third scavenger receptor cysteine-rich domain of murine neurotrypsin.

机构信息

The Armenise-Harvard Laboratory of Structural Biology, Department of Biology and Biotechnology, University of Pavia, Via Ferrata 9/A, 27100 Pavia, Italy.

Department of Life Sciences and Systems Biology, University of Torino, 10123 Turin, Italy.

出版信息

Protein Sci. 2019 Apr;28(4):746-755. doi: 10.1002/pro.3587. Epub 2019 Mar 6.

Abstract

Neurotrypsin (NT) is a multi-domain serine protease of the nervous system with only one known substrate: the large proteoglycan Agrin. NT has seen to be involved in the maintenance/turnover of neuromuscular junctions and in processes of synaptic plasticity in the central nervous system. Roles which have been tied to its enzymatic activity, localized in the C-terminal serine-protease (SP) domain. However the purpose of NT's remaining 3-4 scavenger receptor cysteine-rich (SRCR) domains is still unclear. We have determined the crystal structure of the third SRCR domain of murine NT (mmNT-SRCR3), immediately preceding the SP domain and performed a comparative structural analysis using homologous SRCR structures. Our data and the elevated degree of structural conservation with homologous domains highlight possible functional roles for NT SRCRs. Computational and experimental analyses suggest the identification of a putative binding region for Ca ions, known to regulate NT enzymatic activity. Furthermore, sequence and structure comparisons allow to single out regions of interest that, in future studies, might be implicated in Agrin recognition/binding or in interactions with as of yet undiscovered NT partners.

摘要

神经蛋白酶(NT)是一种神经系统的多结构域丝氨酸蛋白酶,目前只知道有一种底物:大型蛋白聚糖 Agrin。NT 被认为参与了神经肌肉接头的维持/更新以及中枢神经系统中的突触可塑性过程。这些作用与其位于 C 端丝氨酸蛋白酶(SP)结构域的酶活性有关。然而,NT 剩余的 3-4 个清道夫受体富含半胱氨酸(SRCR)结构域的目的仍然不清楚。我们已经确定了鼠 NT(mmNT-SRCR3)的第三个 SRCR 结构域的晶体结构,该结构域位于 SP 结构域之前,并使用同源的 SRCR 结构进行了比较结构分析。我们的数据和与同源结构域的高度结构保守性突出了 NT SRCR 可能具有的功能作用。计算和实验分析表明,可以识别出已知可调节 NT 酶活性的 Ca 离子的潜在结合区域。此外,序列和结构比较可以确定感兴趣的区域,在未来的研究中,这些区域可能与 Agrin 的识别/结合有关,或者与尚未发现的 NT 伴侣相互作用有关。

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