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一种新型 PL7 家族褐藻胶裂解酶的底物定位机制的结构和分子基础来自北极。

Structural and molecular basis for the substrate positioning mechanism of a new PL7 subfamily alginate lyase from the arctic.

机构信息

State Key Laboratory of Microbial Technology, and Marine Biotechnology Research Center, Shandong University, Qingdao, China.

State Key Laboratory of Microbial Technology, and Marine Biotechnology Research Center, Shandong University, Qingdao, China; Laboratory for Marine Biology and Biotechnology, Pilot National Laboratory for Marine Science and Technology, Qingdao, China.

出版信息

J Biol Chem. 2020 Nov 27;295(48):16380-16392. doi: 10.1074/jbc.RA120.015106. Epub 2020 Sep 23.

Abstract

Alginate lyases play important roles in alginate degradation in the ocean. Although a large number of alginate lyases have been characterized, little is yet known about those in extremely cold polar environments, which may have unique mechanisms for environmental adaptation and for alginate degradation. Here, we report the characterization of a novel PL7 alginate lyase AlyC3 from sp. C-3 isolated from the Arctic brown alga , including its phylogenetic classification, catalytic properties, and structure. We propose the establishment of a new PM-specific subfamily of PL7 (subfamily 6) represented by AlyC3 based on phylogenetic analysis and enzymatic properties. Structural and biochemical analyses showed that AlyC3 is a dimer, representing the first dimeric endo-alginate lyase structure. AlyC3 is activated by NaCl and adopts a novel salt-activated mechanism; that is, salinity adjusts the enzymatic activity by affecting its aggregation states. We further solved the structure of an inactive mutant H127A/Y244A in complex with a dimannuronate molecule and proposed the catalytic process of AlyC3 based on structural and biochemical analyses. We show that Arg and Tyr at the two ends of the catalytic canyon help the positioning of the repeated units of the substrate and that His, Tyr, Arg, and Gln mediate the catalytic reaction. Our study uncovers, for the first time, the amino acid residues for alginate positioning in an alginate lyase and demonstrates that such residues involved in alginate positioning are conserved in other alginate lyases. This study provides a better understanding of the mechanisms of alginate degradation by alginate lyases.

摘要

海藻酸盐裂解酶在海洋中降解海藻酸盐的过程中发挥着重要作用。尽管已经对大量的海藻酸盐裂解酶进行了特征描述,但对于来自极端寒冷的极地环境的海藻酸盐裂解酶却知之甚少,这些酶可能具有独特的环境适应机制和海藻酸盐降解机制。在这里,我们报道了从北极棕色海藻中分离到的 sp. C-3 中一种新型 PL7 海藻酸盐裂解酶 AlyC3 的特征,包括其系统发育分类、催化特性和结构。我们提出基于系统发育分析和酶学特性,建立一个新的 PM 特异性 PL7 亚家族(亚家族 6),由 AlyC3 代表。结构和生化分析表明,AlyC3 是一个二聚体,代表了第一个内切海藻酸盐裂解酶的二聚体结构。AlyC3 被 NaCl 激活,并采用一种新的盐激活机制;即盐度通过影响其聚集状态来调节酶的活性。我们进一步解决了与二甘露糖酸盐分子复合物的无活性突变体 H127A/Y244A 的结构,并基于结构和生化分析提出了 AlyC3 的催化过程。我们表明,催化峡谷两端的 Arg 和 Tyr 有助于底物重复单元的定位,而 His、Tyr、Arg 和 Gln 介导催化反应。我们的研究首次揭示了海藻酸盐裂解酶中海藻酸盐定位的氨基酸残基,并表明参与海藻酸盐定位的这些残基在其他海藻酸盐裂解酶中是保守的。这项研究为海藻酸盐裂解酶降解海藻酸盐的机制提供了更好的理解。

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