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过氧化物酶的结构-功能分析有助于深入了解IV型胶原蛋白交联机制。

Structure-function analysis of peroxidasin provides insight into the mechanism of collagen IV crosslinking.

作者信息

Lázár Enikő, Péterfi Zalán, Sirokmány Gábor, Kovács Hajnal A, Klement Eva, Medzihradszky Katalin F, Geiszt Miklós

机构信息

Department of Physiology, Semmelweis University, Budapest, Hungary; "Momentum" Peroxidase Enzyme Research Group of the Semmelweis University and the Hungarian Academy of Sciences, Szeged, Hungary.

Laboratory of Proteomics Research, Institute of Biochemistry, Biological Research Centre of the Hungarian Academy of Sciences, Szeged, Hungary.

出版信息

Free Radic Biol Med. 2015 Jun;83:273-82. doi: 10.1016/j.freeradbiomed.2015.02.015. Epub 2015 Feb 20.

Abstract

Basement membranes provide structural support and convey regulatory signals to cells in diverse tissues. Assembly of collagen IV into a sheet-like network is a fundamental mechanism during the formation of basement membranes. Peroxidasin (PXDN) was recently described to catalyze crosslinking of collagen IV through the formation of sulfilimine bonds. Despite the significance of this pathway in tissue genesis, our understanding of PXDN function is far from complete. In this work we demonstrate that collagen IV crosslinking is a physiological function of mammalian PXDN. Moreover, we carried out structure-function analysis of PXDN to gain a better insight into its role in collagen IV synthesis. We identify conserved cysteines in PXDN that mediate the oligomerization of the protein into a trimeric complex. We also demonstrate that oligomerization is not an absolute requirement for enzymatic activity, but optimal collagen IV coupling is only catalyzed by the PXDN trimers. Localization experiments of different PXDN mutants in two different cell models revealed that PXDN oligomers, but not monomers, adhere on the cell surface in "hot spots," which represent previously unknown locations of collagen IV crosslinking.

摘要

基底膜为多种组织中的细胞提供结构支持并传递调节信号。胶原蛋白IV组装成片状网络是基底膜形成过程中的一种基本机制。过氧化物酶(PXDN)最近被描述为通过形成亚磺酰亚胺键催化胶原蛋白IV的交联。尽管该途径在组织发生中具有重要意义,但我们对PXDN功能的了解还远未完善。在这项工作中,我们证明胶原蛋白IV交联是哺乳动物PXDN的一种生理功能。此外,我们对PXDN进行了结构-功能分析,以更好地了解其在胶原蛋白IV合成中的作用。我们在PXDN中鉴定出保守的半胱氨酸,这些半胱氨酸介导蛋白质寡聚形成三聚体复合物。我们还证明寡聚化不是酶活性的绝对要求,但最佳的胶原蛋白IV偶联仅由PXDN三聚体催化。在两种不同细胞模型中对不同PXDN突变体进行的定位实验表明,PXDN寡聚体而非单体在“热点”处粘附于细胞表面,这些“热点”代表了此前未知的胶原蛋白IV交联位置。

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