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扩展 . 的软骨素糖蛋白组。

Expanding the chondroitin glycoproteome of .

机构信息

Department of Clinical Chemistry and Transfusion Medicine, Institute of Biomedicine, University of Gothenburg, SE-413 45 Gothenburg.

Department of Medical Biochemistry and Microbiology, Uppsala University, SE-751 23 Uppsala, Sweden.

出版信息

J Biol Chem. 2018 Jan 5;293(1):379-389. doi: 10.1074/jbc.M117.807800. Epub 2017 Nov 14.

Abstract

Chondroitin sulfate proteoglycans (CSPGs) are important structural components of connective tissues in essentially all metazoan organisms. In vertebrates, CSPGs are involved also in more specialized processes such as neurogenesis and growth factor signaling. In invertebrates, however, knowledge of CSPGs core proteins and proteoglycan-related functions is relatively limited, even for This nematode produces large amounts of non-sulfated chondroitin in addition to low-sulfated chondroitin sulfate chains. So far, only nine core proteins (CPGs) have been identified, some of which have been shown to be involved in extracellular matrix formation. We recently introduced a protocol to characterize proteoglycan core proteins by identifying CS-glycopeptides with a combination of biochemical enrichment, enzymatic digestion, and nano-scale liquid chromatography MS/MS analysis. Here, we have used this protocol to map the chondroitin glycoproteome in , resulting in the identification of 15 novel CPG proteins in addition to the nine previously established. Three of the newly identified CPGs displayed homology to vertebrate proteins. Bioinformatics analysis of the primary protein sequences revealed that the CPG proteins altogether contained 19 unique functional domains, including Kunitz and endostatin domains, suggesting direct involvement in protease inhibition and axonal migration, respectively. The analysis of the core protein domain organization revealed that all chondroitin attachment sites are located in unstructured regions. Our results suggest that CPGs display a much greater functional and structural heterogeneity than previously appreciated and indicate that specialized proteoglycan-mediated functions evolved early in metazoan evolution.

摘要

硫酸软骨素蛋白聚糖(CSPGs)是基本上所有后生动物组织中结缔组织的重要结构成分。在脊椎动物中,CSPGs 还参与更专门的过程,如神经发生和生长因子信号传导。然而,在无脊椎动物中,CSPGs 核心蛋白和蛋白聚糖相关功能的知识相对有限,即使是对于这种线虫,除了低硫酸化的软骨素硫酸盐链外,还会产生大量非硫酸化的软骨素。到目前为止,已经鉴定出了 9 种核心蛋白(CPGs),其中一些已经被证明参与细胞外基质的形成。我们最近引入了一种通过结合生化富集、酶消化和纳米级液相色谱 MS/MS 分析来鉴定 CS-糖肽来表征蛋白聚糖核心蛋白的方案。在这里,我们使用该方案对进行了软骨质糖蛋白组学分析,除了之前确定的 9 种之外,还鉴定出了 15 种新的 CPG 蛋白。新鉴定的 CPG 中有 3 种与脊椎动物蛋白具有同源性。对初级蛋白质序列的生物信息学分析表明,CPG 蛋白总共包含 19 个独特的功能域,包括 Kunitz 和内皮抑素结构域,分别表明其直接参与蛋白酶抑制和轴突迁移。核心蛋白结构域组织的分析表明,所有的软骨素附着位点都位于无结构区域。我们的结果表明,CPGs 显示出比以前认识到的更大的功能和结构异质性,并表明专门的蛋白聚糖介导的功能在后生动物进化的早期就已经进化。

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