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GDSL 家族酯酶 EstL5 与 PMSF 复合物的晶体结构揭示了活性口袋的分支通道。

Crystal structure of the GDSL family esterase EstL5 in complex with PMSF reveals a branch channel of the active site pocket.

机构信息

School of Food and Bioengineering, Changsha University of Science & Technology, Changsha 410004, China.

State Key Laboratory of Microbial Metabolism, Joint International Research Laboratory of Metabolic and Developmental Sciences, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Acta Biochim Biophys Sin (Shanghai). 2023 Nov 25;55(11):1833-1839. doi: 10.3724/abbs.2023108.

Abstract

Esterases/lipases from the GDSL family have potential applications in the hydrolysis and synthesis of important esters of pharmaceutical, food, and biotechnical interests. However, the structural and functional understanding of GDSL enzymes is still limited. Here, we report the crystal structure of the GDSL family esterase EstL5 complexed with PMSF at 2.34 Å resolution. Intriguingly, the PMSF binding site is not located at the active site pocket but is situated in a surface cavity. At the active site, we note that there is a trapped crystallization solvent 1,6-hexanediol, which mimics the bound ester chain, allowing for further definition of the active site pocket of EstL5. The most striking structural feature of EstL5 is the presence of a unique channel, which extends approximately 18.9 Å, with a bottleneck radius of 6.8 Å, connecting the active-site pocket and the surface cavity. Replacement of Ser205 with the bulk aromatic residue Trp or Phe could partially block the channel at one end and perturb its access. Reduced enzymatic activity is found in the and mutants, suggesting the functional relevance of the channel to enzyme catalysis. Our study provides valuable information regarding the properties of the GDSL-family enzymes for designing more efficient and robust biocatalysts.

摘要

GDSL 家族的酯酶/脂肪酶在水解和合成有重要医药、食品和生物技术应用的酯类方面具有潜在的应用。然而,对 GDSL 酶的结构和功能的理解仍然有限。在这里,我们报告了与 PMSF 复合的 GDSL 家族酯酶 EstL5 的晶体结构,分辨率为 2.34 Å。有趣的是,PMSF 结合位点不在活性口袋,而是位于表面腔中。在活性位点,我们注意到有一个被捕获的结晶溶剂 1,6-己二醇,它模拟结合的酯链,从而进一步定义了 EstL5 的活性口袋。EstL5 的最显著结构特征是存在一个独特的通道,其延伸约 18.9 Å,瓶颈半径为 6.8 Å,连接活性口袋和表面腔。用较大的芳香残基色氨酸或苯丙氨酸替代 Ser205 可以在一端部分阻塞通道并干扰其进入。在 和 突变体中发现酶活性降低,表明通道对酶催化具有功能相关性。我们的研究为设计更高效和稳健的生物催化剂提供了有关 GDSL 家族酶性质的有价值信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c058/10686790/a7066f5e3abb/abbs-2023-086-t1.jpg

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