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各种细菌蛋白酶前肽酶 C 末端 (PPC) 结构域结合和溶胀功能的机制研究

Mechanistic Insight into the Binding and Swelling Functions of Prepeptidase C-Terminal (PPC) Domains from Various Bacterial Proteases.

机构信息

School of Life Sciences, Central South University, Changsha, People's Republic of China.

Shandong Provincial Key Laboratory of Fine Chemicals, School of Chemistry and Pharmaceutical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, People's Republic of China.

出版信息

Appl Environ Microbiol. 2019 Jul 1;85(14). doi: 10.1128/AEM.00611-19. Print 2019 Jul 15.

Abstract

The bacterial prepeptidase C-terminal (PPC) domain can be found in the C termini of a wide variety of proteases that are secreted by marine bacteria. However, the functions of these PPC domains remain unknown due to a lack of systematic research. Here, the binding and swelling abilities of eight PPC domains from six different proteases were compared systematically via scanning electron microscopy (SEM), enzyme assays, and fluorescence spectroscopy. These PPC domains all possess the ability to bind and swell insoluble collagen. PPC domains can expose collagen monomers but cannot disrupt the pyridinoline cross-links or unwind the collagen triple helix. This ability can play a synergistic role alongside collagenase in collagen hydrolysis. Site-directed mutagenesis of the PPC domain from showed that the conserved polar and aromatic residues Y6, D26, D28, Y30, W42, E53, C55, and Y65 and the hydrophobic residues V10, V18, and I57 played key roles in substrate binding. Molecular dynamic simulations were conducted to investigate the interactions between PPC domains and collagen. Most PPC domains have a similar mechanism for binding collagen, and the hydrophobic binding pocket of PPC domains may play an important role in collagen binding. This study sheds light on the substrate binding mechanisms of PPC domains and reveals a new function for the PPC domains of bacterial proteases in substrate degradation. Prepeptidase C-terminal (PPC) domains commonly exist in the C termini of marine bacterial proteases. Reports examining PPC have been limited, and its functions remain unclear. In this study, eight PPCs from six different bacteria were examined. Most of the PPCs possessed the ability to bind collagen, feathers, and chitin, and all PPCs could significantly swell insoluble collagen. PPCs can expose collagen monomers but cannot disrupt pyridinoline cross-links or unwind the collagen triple helix. This swelling ability may also play synergistic roles in collagen hydrolysis. Comparative structural analyses and the examination of PPC mutants revealed that the hydrophobic binding pockets of PPCs may play important roles in collagen binding. This study provides new insights into the functions and ecological significance of PPCs, and the molecular mechanism of the collagen binding of PPCs was clarified, which is beneficial for the protein engineering of highly active PPCs and collagenase in the pharmaceutical industry and of artificial biological materials.

摘要

细菌前肽酶 C 端(PPC)结构域存在于多种由海洋细菌分泌的蛋白酶的 C 端。然而,由于缺乏系统研究,这些 PPC 结构域的功能仍然未知。在这里,通过扫描电子显微镜(SEM)、酶测定和荧光光谱法系统比较了来自六种不同蛋白酶的 8 个 PPC 结构域的结合和膨胀能力。这些 PPC 结构域都具有结合和膨胀不溶性胶原蛋白的能力。PPC 结构域可以暴露胶原蛋白单体,但不能破坏吡啶啉交联或解开胶原蛋白三螺旋。这种能力可以与胶原酶协同作用于胶原蛋白水解。来自 的 PPC 结构域的定点突变表明,保守的极性和芳香族残基 Y6、D26、D28、Y30、W42、E53、C55 和 Y65 以及疏水性残基 V10、V18 和 I57 在底物结合中起关键作用。进行了分子动力学模拟以研究 PPC 结构域与胶原蛋白之间的相互作用。大多数 PPC 结构域具有相似的胶原蛋白结合机制,并且 PPC 结构域的疏水性结合口袋可能在胶原蛋白结合中起重要作用。这项研究揭示了 PPC 结构域的底物结合机制,并揭示了海洋细菌蛋白酶 PPC 结构域在底物降解中的新功能。前肽酶 C 端(PPC)结构域通常存在于海洋细菌蛋白酶的 C 端。关于 PPC 的报道有限,其功能仍不清楚。在这项研究中,检查了来自六种不同细菌的八个 PPC。大多数 PPC 具有结合胶原蛋白、羽毛和几丁质的能力,并且所有 PPC 都可以显著膨胀不溶性胶原蛋白。PPC 可以暴露胶原蛋白单体,但不能破坏吡啶啉交联或解开胶原蛋白三螺旋。这种膨胀能力在胶原蛋白水解中也可能发挥协同作用。比较结构分析和 PPC 突变体的检查表明,PPC 的疏水性结合口袋可能在胶原蛋白结合中起重要作用。这项研究为 PPC 的功能和生态意义提供了新的见解,并阐明了 PPC 与胶原蛋白结合的分子机制,这有利于制药行业中高度活跃的 PPC 和胶原酶以及人工生物材料的蛋白质工程。

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