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Recognition and catabolism of synthetic heterotrimeric collagen peptides by matrix metalloproteinases

机译:基质金属蛋白酶对合成异源三聚体胶原肽的识别和分解代谢

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Background: The general consensus is that interstitial collagens are digested by collagenases and denatured collagen by gelatinases, although processing of fibrillar and acetic-acid-soluble collagen by gelatinase A has also been reported. One of the main difficulties in studying the mechanism of action of these matrix metalloproteinases (MMPs) derives from the physicochemical properties of the natural triple-helical collagen, which makes ii difficult to handle. Results: Synthetic heterotrimeric collagenous peptides that contain the collagenase cleavage site of human collagen type I and differ in the thermal stability of the triple-helical fold were used to mimic natural collagen and gelatin, respectively. Results from digestion of these substrates by fibroblast and neutrophil collagenases (MMP-1 and MMP-8), as well as by gelatinase A (MMP-2), confirmed that the two classes of enzymes operate within the context of strong conformational dependency of the substrates. It was also found that gelatinases and collagenases exhibit two distinct proteolytic mechanisms: gelatinase digests the gelatin-like heterotrimer rapidly in individual steps with intermediate releases of partially processed substrate into the medium, whereas collagenases degrade the triple-helical heterotrimer by trapping it until scission through all three alpha chains is achieved. Conclusions: The results confirm the usefulness of synthetic heterotrimeric collagenous peptides in the folded and unfolded state as mimics of the natural substrates collagen and gelatin, respectively, to gain a better a insight into the proteolytic mechanisms of matrix metalloproteinases. [References: 90]
机译:背景:普遍的共识是,间质胶原被胶原酶消化,而明胶酶则使变性胶原变性,尽管也有报道说明胶酶A可处理原纤维和乙酸可溶性胶原。研究这些基质金属蛋白酶(MMPs)作用机理的主要困难之一是天然三螺旋胶原的理化性质,这使其难以处理。结果:分别使用包含人类I型胶原酶的酶切位点和三螺旋折叠热稳定性不同的合成异三聚体胶原肽分别模拟天然胶原和明胶。成纤维细胞和嗜中性粒细胞胶原酶(MMP-1和MMP-8)以及明胶酶A(MMP-2)消化这些底物的结果证实,这两类酶在它们的强构象依赖性下起作用。基材。还发现明胶酶和胶原酶表现出两种截然不同的蛋白水解机制:明胶酶在单个步骤中快速消化明胶样异三聚体,部分释放的被处理底物向培养基中释放,而胶原酶则通过捕获三螺旋杂三聚体直至分解将其降解。这三个alpha链均已实现。结论:这些结果证实了折叠和未折叠状态下的合成异源三聚体胶原肽分别作为天然底物胶原蛋白和明胶的模拟物的有用性,从而可以更好地了解基质金属蛋白酶的蛋白水解机理。 [参考:90]

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