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前胶原C蛋白酶(BMP1)的蛋白酶结构域缺乏底物选择性,这种选择性由非蛋白水解结构域赋予。

The protease domain of procollagen C-proteinase (BMP1) lacks substrate selectivity, which is conferred by non-proteolytic domains.

作者信息

Wermter Carsten, Höwel Markus, Hintze Vera, Bombosch Bettina, Aufenvenne Karin, Yiallouros Irene, Stöcker Walter

机构信息

Institute of Zoology, Department I, Cell and Matrix Biology, Johannes Gutenberg University, Mainz, Germany.

出版信息

Biol Chem. 2007 May;388(5):513-21. doi: 10.1515/BC.2007.054.

Abstract

Procollagen C-proteinase (PCP) removes the C-terminal pro-peptides of procollagens and also processes other matrix proteins. The major splice form of the PCP is termed BMP1 (bone morphogenetic protein 1). Active BMP1 is composed of an astacin-like protease domain, three CUB (complement, sea urchin Uegf, BMP1) domains and one EGF-like domain. Here we compare the recombinant human full-length BMP1 with its isolated proteolytic domain to further unravel the functional influence of the CUB and EGF domains. We show that the protease domain alone cleaves truncated procollagen VII within the short telopeptide region into fragments of similar size as the full-length enzyme does. However, unlike full-length BMP1, the protease domain does not stop at this point, but degrades its substrate completely. Moreover, the protease domain cleaves other matrix proteins such as fibronectin, collagen I and collagen IV, which are left intact by the full-length enzyme. In addition, we show for the first time that thrombospondin-1 is differently cleaved by both BMP1 and its catalytic domain. In summary, our data support the concept that the C-terminal domains of BMP1 are important for substrate recognition and for controlling and restricting its proteolytic activity via exosite binding.

摘要

前胶原C蛋白酶(PCP)可去除前胶原的C末端前肽,还可加工其他基质蛋白。PCP的主要剪接形式被称为骨形态发生蛋白1(BMP1)。活性BMP1由一个类astacin蛋白酶结构域、三个CUB(补体、海胆Uegf、BMP1)结构域和一个EGF样结构域组成。在此,我们将重组人全长BMP1与其分离的蛋白水解结构域进行比较,以进一步阐明CUB和EGF结构域的功能影响。我们发现,单独的蛋白酶结构域可在短端肽区域内将截短的前胶原VII切割成与全长酶切割产物大小相似的片段。然而,与全长BMP1不同的是,蛋白酶结构域不会就此停止,而是会将其底物完全降解。此外,蛋白酶结构域还可切割其他基质蛋白,如纤连蛋白、I型胶原和IV型胶原,而全长酶对这些蛋白则不会产生切割作用。此外,我们首次发现,血小板反应蛋白-1被BMP1及其催化结构域切割的方式有所不同。总之,我们的数据支持这样一种观点,即BMP1的C末端结构域对于底物识别以及通过别构位点结合来控制和限制其蛋白水解活性具有重要作用。

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