Suppr超能文献

人胶原酶-3(基质金属蛋白酶-13,MMP-13)C末端结构域在原胶原酶-3激活、底物特异性及金属蛋白酶组织抑制剂相互作用中的作用

The role of the C-terminal domain of human collagenase-3 (MMP-13) in the activation of procollagenase-3, substrate specificity, and tissue inhibitor of metalloproteinase interaction.

作者信息

Knäuper V, Cowell S, Smith B, López-Otin C, O'Shea M, Morris H, Zardi L, Murphy G

机构信息

Department of Cell and Molecular Biology, Strangeways Research Laboratory, Worts' Causeway, Cambridge CB1 4RN, United Kingdom.

出版信息

J Biol Chem. 1997 Mar 21;272(12):7608-16. doi: 10.1074/jbc.272.12.7608.

Abstract

Recombinant human procollagenase-3 and a C-terminal truncated form (Delta249-451 procollagenase-3) have been stably expressed in myeloma cells and purified. The truncated proenzyme could be processed by aminophenylmercuric acetate via a short-lived intermediate form (N-terminal Leu58) to the final active form (N-terminal Tyr85). The kinetics of activation were not affected by removal of the hemopexin-like C-terminal domain. The specific activities of both collagenase-3 and Delta249-451 collagenase-3 were found to be similar using two quenched fluorescent substrates, but Delta249-451 collagenase-3 failed to cleave native triple helical collagens (types I and II) into characteristic one- and three-quarter fragments. It was noted, however, that the beta1,2(I) chains of type I collagen were susceptible to Delta249-451 collagenase-3, which indicates that the catalytic domain displays telopeptidase activity, thereby generating alpha1,2(I) chains that are slightly shorter than those in native type I collagen. It can be concluded that the C-terminal domain is only essential for the triple helicase activity of collagenase-3. Binding of procollagenase-3 and active collagenase-3 to type I collagen is mediated by the C-terminal domain. Both collagenase-3 and Delta249-451 collagenase-3 hydrolyzed the large tenascin C isoform, fibronectin, recombinant fibronectin fragments, and type IV, IX, X, and XIV collagens; thus, these events were independent from C-terminal domain interactions. In contrast, the minor cartilage type XI collagen was resistant to cleavage. Kinetic analysis of the mechanism of inhibition of wild-type and Delta249-451 collagenase-3 by wild-type and mutant tissue inhibitors of metalloproteinase (TIMPs) revealed that the association rates for complex formation were influenced by both N- and C-terminal domain interactions. The C-terminal domain of wild-type collagenase-3 promoted increased association rates with the full-length inhibitors TIMP-1 and TIMP-3 and the hybrid N.TIMP-2/C.TIMP-1 by a factor of up to 33. In contrast, the association rates for complex formation with TIMP-2 and N.TIMP-1/C.TIMP-2 were only marginally affected by C-terminal domain interactions.

摘要

重组人原胶原酶 -3 及其 C 端截短形式(Δ249 - 451 原胶原酶 -3)已在骨髓瘤细胞中稳定表达并纯化。截短的酶原可通过氨基苯基汞乙酸盐经短暂的中间形式(N 端 Leu58)加工成最终的活性形式(N 端 Tyr85)。激活动力学不受血色素结合蛋白样 C 端结构域去除的影响。使用两种淬灭荧光底物时,发现胶原酶 -3 和 Δ249 - 451 胶原酶 -3 的比活性相似,但 Δ249 - 451 胶原酶 -3 无法将天然三螺旋胶原(I 型和 II 型)切割成特征性的一个和四分之一个片段。然而,值得注意的是,I 型胶原的 β1,2(I)链对 Δ249 - 451 胶原酶 -3 敏感,这表明催化结构域具有端肽酶活性,从而产生比天然 I 型胶原中的 α1,2(I)链略短的链。可以得出结论,C 端结构域仅对胶原酶 -3 的三螺旋酶活性至关重要。原胶原酶 -3 和活性胶原酶 -3 与 I 型胶原的结合由 C 端结构域介导。胶原酶 -3 和 Δ249 - 451 胶原酶 -3 均能水解大型腱生蛋白 C 同工型、纤连蛋白、重组纤连蛋白片段以及 IV 型、IX 型、X 型和 XIV 型胶原;因此,这些作用与 C 端结构域相互作用无关。相比之下,次要的软骨 XI 型胶原对切割具有抗性。对野生型和金属蛋白酶组织抑制剂(TIMPs)突变体抑制野生型和 Δ249 - 451 胶原酶 -3 的机制进行动力学分析表明,复合物形成的结合速率受 N 端和 C 端结构域相互作用的影响。野生型胶原酶 -3 的 C 端结构域使与全长抑制剂 TIMP -1、TIMP -3 以及杂交体 N.TIMP -2/C.TIMP -1 形成复合物的结合速率提高了高达 33 倍。相比之下,与 TIMP -2 和 N.TIMP -1/C.TIMP -2 形成复合物的结合速率仅受到 C 端结构域相互作用的轻微影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验