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主动脉羧肽酶样蛋白分泌的机制及与埃勒斯-当洛斯综合征相关的一种细胞内滞留变异体的鉴定。

Mechanisms of aortic carboxypeptidase-like protein secretion and identification of an intracellularly retained variant associated with Ehlers-Danlos syndrome.

机构信息

Department of Biochemistry, Boston University School of Medicine, Boston, Massachusetts, USA.

Department of Biomedical Engineering, Boston University, Boston, Massachusetts, USA.

出版信息

J Biol Chem. 2020 Jul 10;295(28):9725-9735. doi: 10.1074/jbc.RA120.013902. Epub 2020 Jun 1.

Abstract

Aortic carboxypeptidase-like protein (ACLP) is a collagen-binding extracellular matrix protein that has important roles in wound healing and fibrosis. ACLP contains thrombospondin repeats, a collagen-binding discoidin domain, and a catalytically inactive metallocarboxypeptidase domain. Recently, mutations in the ACLP-encoding gene, AE-binding protein 1 (), have been discovered, leading to the identification of a new variant of Ehlers-Danlos syndrome causing connective tissue disruptions in multiple organs. Currently, little is known about the mechanisms of ACLP secretion or the role of post-translational modifications in these processes. We show here that the secreted form of ACLP contains -linked glycosylation and that inhibition of glycosylation results in its intracellular retention. Using site-directed mutagenesis, we determined that glycosylation of Asn-471 and Asn-1030 is necessary for ACLP secretion and identified a specific N-terminal proteolytic ACLP fragment. To determine the contribution of secreted ACLP to extracellular matrix mechanical properties, we generated and mechanically tested wet-spun collagen ACLP composite fibers, finding that ACLP enhances the modulus (or stiffness), toughness, and tensile strength of the fibers. Some mutations were null alleles, whereas others resulted in expressed proteins. We tested the hypothesis that a recently discovered 40-amino acid mutation and insertion in the ACLP discoidin domain regulates collagen binding and assembly. Interestingly, we found that this protein variant is retained intracellularly and induces endoplasmic reticulum stress identified with an XBP1-based endoplasmic reticulum stress reporter. Our findings highlight the importance of -linked glycosylation of ACLP for its secretion and contribute to our understanding of ACLP-dependent disease pathologies.

摘要

主动脉羧肽酶样蛋白 (ACLP) 是一种结合细胞外基质的胶原蛋白,在伤口愈合和纤维化中具有重要作用。ACLP 包含血栓反应蛋白重复序列、一个结合胶原的盘状结构域和一个无催化活性的金属羧肽酶结构域。最近,在编码 ACLP 的基因 AE 结合蛋白 1 () 中发现了突变,导致了一种新的埃勒斯-当洛斯综合征变体的鉴定,这种变体导致多个器官的结缔组织破裂。目前,人们对 ACLP 分泌的机制或翻译后修饰在这些过程中的作用知之甚少。我们在这里表明,分泌形式的 ACLP 含有 -连接的糖基化,并且糖基化的抑制导致其在细胞内保留。通过定点突变,我们确定了 Asn-471 和 Asn-1030 的糖基化对于 ACLP 分泌是必要的,并鉴定了一个特定的 N 端蛋白水解 ACLP 片段。为了确定分泌的 ACLP 对细胞外基质机械性能的贡献,我们生成并机械测试了湿纺胶原 ACLP 复合纤维,发现 ACLP 增强了纤维的模量(或刚度)、韧性和拉伸强度。一些 突变是无效等位基因,而另一些则导致表达蛋白。我们检验了这样一个假设,即最近在 ACLP 盘状结构域中发现的 40 个氨基酸突变和插入调节胶原结合和组装。有趣的是,我们发现这种蛋白质变体在细胞内被保留,并诱导内质网应激,这可以通过基于 XBP1 的内质网应激报告器来识别。我们的发现强调了 ACLP 的 -连接糖基化对于其分泌的重要性,并有助于我们理解 ACLP 依赖性疾病的病理机制。

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