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TSG-6的金属离子依赖性重链转移活性介导卵丘-卵母细胞基质的组装。

Metal Ion-dependent Heavy Chain Transfer Activity of TSG-6 Mediates Assembly of the Cumulus-Oocyte Matrix.

作者信息

Briggs David C, Birchenough Holly L, Ali Tariq, Rugg Marilyn S, Waltho Jon P, Ievoli Elena, Jowitt Thomas A, Enghild Jan J, Richter Ralf P, Salustri Antonietta, Milner Caroline M, Day Anthony J

机构信息

From the Wellcome Trust Centre for Cell-Matrix Research and the Faculty of Life Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, United Kingdom.

the Medical Research Council Immunochemistry Unit, Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.

出版信息

J Biol Chem. 2015 Nov 27;290(48):28708-23. doi: 10.1074/jbc.M115.669838. Epub 2015 Oct 14.

Abstract

The matrix polysaccharide hyaluronan (HA) has a critical role in the expansion of the cumulus cell-oocyte complex (COC), a process that is necessary for ovulation and fertilization in most mammals. Hyaluronan is organized into a cross-linked network by the cooperative action of three proteins, inter-α-inhibitor (IαI), pentraxin-3, and TNF-stimulated gene-6 (TSG-6), driving the expansion of the COC and providing the cumulus matrix with its required viscoelastic properties. Although it is known that matrix stabilization involves the TSG-6-mediated transfer of IαI heavy chains (HCs) onto hyaluronan (to form covalent HC·HA complexes that are cross-linked by pentraxin-3) and that this occurs via the formation of covalent HC·TSG-6 intermediates, the underlying molecular mechanisms are not well understood. Here, we have determined the tertiary structure of the CUB module from human TSG-6, identifying a calcium ion-binding site and chelating glutamic acid residue that mediate the formation of HC·TSG-6. This occurs via an initial metal ion-dependent, non-covalent, interaction between TSG-6 and HCs that also requires the presence of an HC-associated magnesium ion. In addition, we have found that the well characterized hyaluronan-binding site in the TSG-6 Link module is not used for recognition during transfer of HCs onto HA. Analysis of TSG-6 mutants (with impaired transferase and/or hyaluronan-binding functions) revealed that although the TSG-6-mediated formation of HC·HA complexes is essential for the expansion of mouse COCs in vitro, the hyaluronan-binding function of TSG-6 does not play a major role in the stabilization of the murine cumulus matrix.

摘要

基质多糖透明质酸(HA)在卵丘细胞 - 卵母细胞复合体(COC)的扩展中起关键作用,这一过程是大多数哺乳动物排卵和受精所必需的。透明质酸通过三种蛋白质,即α - 抑制因子(IαI)、五聚素 - 3和肿瘤坏死因子刺激基因 - 6(TSG - 6)的协同作用,组织成交联网络,驱动COC的扩展,并为卵丘基质提供所需的粘弹性特性。尽管已知基质稳定涉及TSG - 6介导的IαI重链(HCs)转移到透明质酸上(形成由五聚素 - 3交联的共价HC·HA复合物),并且这是通过共价HC·TSG - 6中间体的形成发生的,但其潜在的分子机制尚不清楚。在这里,我们确定了人TSG - 6的CUB结构域的三级结构,鉴定出介导HC·TSG - 6形成的钙离子结合位点和螯合谷氨酸残基。这是通过TSG - 6与HCs之间最初的金属离子依赖性非共价相互作用发生的,该相互作用还需要存在与HC相关的镁离子。此外,我们发现TSG - 6 Link结构域中特征明确的透明质酸结合位点在HCs转移到HA的过程中不用于识别。对TSG - 6突变体(具有受损的转移酶和/或透明质酸结合功能)的分析表明,尽管TSG - 6介导的HC·HA复合物的形成对于体外小鼠COCs的扩展至关重要,但TSG - 6的透明质酸结合功能在小鼠卵丘基质的稳定中不起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/603c/4661386/b66434dd3110/zbc0521531990001.jpg

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