Park Ha Ju, Lee Chang Woo, Kim Dockyu, Do Hackwon, Han Se Jong, Kim Jung Eun, Koo Bon-Hun, Lee Jun Hyuck, Yim Joung Han
Division of Polar Life Sciences, Korea Polar Research Institute, Incheon, Republic of Korea.
Unit of Polar Genomics, Korea Polar Research Institute, Incheon, Republic of Korea.
PLoS One. 2018 Feb 21;13(2):e0191740. doi: 10.1371/journal.pone.0191740. eCollection 2018.
Enzymes isolated from organisms found in cold habitats generally exhibit higher catalytic activity at low temperatures than their mesophilic homologs and are therefore known as cold-active enzymes. Cold-active proteases are very useful in a variety of biotechnological applications, particularly as active ingredients in laundry and dishwashing detergents, where they provide strong protein-degrading activity in cold water. We identified a cold-active protease (Pro21717) from a psychrophilic bacterium, Pseudoalteromonas arctica PAMC 21717, and determined the crystal structure of its catalytic domain (CD) at a resolution of 1.4 Å. The Pro21717-CD structure shows a conserved subtilisin-like fold with a typical catalytic triad (Asp185, His244, and Ser425) and contains four calcium ions and three disulfide bonds. Interestingly, we observed an unexpected electron density at the substrate-binding site from a co-purified peptide. Although the sequence of this peptide is unknown, analysis of the peptide-complexed structure nonetheless provides some indication of the substrate recognition and binding mode of Pro21717. Moreover, various parameters, including a wide substrate pocket size, an abundant active-site loop content, and a flexible structure provide potential explanations for the cold-adapted properties of Pro21717. In conclusion, this is first structural characterization of a cold-adapted subtilisin-like protease, and these findings provide a structural and functional basis for industrial applications of Pro21717 as a cold-active laundry or dishwashing detergent enzyme.
从寒冷栖息地发现的生物体中分离出的酶,通常在低温下比它们的嗜温同源物表现出更高的催化活性,因此被称为冷活性酶。冷活性蛋白酶在各种生物技术应用中非常有用,特别是作为洗衣和洗碗洗涤剂中的活性成分,它们在冷水中具有很强的蛋白质降解活性。我们从嗜冷细菌北极假交替单胞菌PAMC 21717中鉴定出一种冷活性蛋白酶(Pro21717),并以1.4 Å的分辨率确定了其催化结构域(CD)的晶体结构。Pro21717-CD结构显示出具有典型催化三联体(Asp185、His244和Ser425)的保守枯草杆菌蛋白酶样折叠,并且包含四个钙离子和三个二硫键。有趣的是,我们从共纯化的肽中在底物结合位点观察到意外的电子密度。尽管该肽的序列未知,但对肽复合物结构的分析仍然提供了一些关于Pro21717底物识别和结合模式的指示。此外,包括宽底物口袋大小、丰富的活性位点环含量和灵活结构在内的各种参数,为Pro21717的冷适应特性提供了潜在的解释。总之,这是对冷适应枯草杆菌蛋白酶样蛋白酶的首次结构表征,这些发现为Pro21717作为冷活性洗衣或洗碗洗涤剂酶的工业应用提供了结构和功能基础。