首页> 外文期刊>The Journal of biological chemistry >Sizzled Is Unique among Secreted Frizzled-related Proteins for Its Ability to Specifically Inhibit Bone Morphogenetic Protein-1 (BMP-1)/Tolloid-like Proteinases
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Sizzled Is Unique among Secreted Frizzled-related Proteins for Its Ability to Specifically Inhibit Bone Morphogenetic Protein-1 (BMP-1)/Tolloid-like Proteinases

机译:Sizzled在分泌的毛细胞相关蛋白质中是独一无二的,其能够具体抑制骨形态发生蛋白-1(BMP-1)/碘蛋白样蛋白酶

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BMP-1/tolloid-like proteinases (BTPs) are major enzymes involved in extracellular matrix assembly and activation of bioactive molecules, both growth factors and anti-angiogenic molecules. Although the control of BTP activity by several enhancing molecules is well established, the possibility that regulation also occurs through endogenous inhibitors is still debated. Secreted frizzled-related proteins (sFRPs) have been studied as possible candidates, with highly contradictory results, after the demonstration that sizzled, a sFRP found in Xenopus and zebrafish, was a potent inhibitor of Xenopus and zebrafish tolloid-like proteases. In this study, we demonstrate that mammalian sFRP-1, -2, and -4 do not modify human BMP-1 activity on several of its known substrates including procollagen I, procollagen III, pN-collagen V, and prolysyl oxidase. In contrast, Xenopus sizzled appears as a tight binding inhibitor of human BMP-1, with a Ki of 1.5 ± 0.5 nm, and is shown to strongly inhibit other human tolloid isoforms mTLD and mTLL-1. Because sizzled is the most potent inhibitor of human tolloid-like proteinases known to date, we have studied its mechanism of action in detail and shown that the frizzled domain of sizzled is both necessary and sufficient for inhibitory activity and that it acts directly on the catalytic domain of BMP-1. Residues in sizzled required for inhibition include Asp-92, which is shared by sFRP-1 and -2, and also Phe-94, Ser-43, and Glu-44, which are specific to sizzled, thereby providing a rational basis for the absence of inhibitory activity of human sFRPs.
机译:BMP-1 / Tolloid样蛋白酶(BTPS)是参与细胞外基质组件和生物活性分子的激活的主要酶,生长因子和抗血管生成分子。虽然通过几种增强分子对BTP活性进行了控制,但是通过内源抑制剂也发生调节的可能性仍然讨论。被分泌的混血性相关的蛋白质(SFRPS)被研究了作为可能的候选者,具有高度矛盾的结果,在嘶嘶作业之后,在Xenopus和斑马鱼中发现的SFRP是一种有效的外爪疮和斑马鱼蛋白样蛋白酶。在该研究中,我们证明哺乳动物SFRP-1,-2和-4在其几个已知的基材上不改性人BMP-1活性,包括Procollagen I,ProCollagen III,PN-Collagen V和ololysyl氧化酶。相比之下,Xenopus Sizzle出现为人BMP-1的紧密结合抑制剂,Ki为1.5±0.5nm,并且被显示为强烈抑制其他人毛虫同种型MTLD和MTLL-1。因为嘶嘶声是迄今为止所知的人毛虫样蛋白酶最有效的抑制剂,我们已经详细研究了其作用机制,并表明嘶嘶声的嘶嘶声是必要的,并且足以用于抑制活性,并且它直接在催化剂上起作用BMP-1的领域。抑制所需的残留物中的残留物包括ASP-92,其由SFRP-1和-2共用,以及PHE-94,SER-43和Glu-44,其特异于嘶嘶声,从而为其提供合理的基础没有人SFRP的抑制活性。

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