Miguel-Ruano Vega, Rivera Ivanna, Rajkovic Jelena, Knapik Kamila, Torrado Ana, Otero José Manuel, Beneventi Elisa, Becerra Manuel, Sánchez-Costa Mercedes, Hidalgo Aurelio, Berenguer José, González-Siso María-Isabel, Cruces Jacobo, Rúa María L, Hermoso Juan A
Department of Crystallography and Structural Biology, Institute of Physical-Chemistry "Rocasolano", Spanish National Research Council (CSIC), Madrid, Spain.
Biochemistry Laboratory, CITACA-Agri-Food Research and Transfer Cluster, Campus Auga, University of Vigo, Ourense, Spain.
Comput Struct Biotechnol J. 2021 Feb 10;19:1214-1232. doi: 10.1016/j.csbj.2021.01.047. eCollection 2021.
A novel esterase, EstD11, has been discovered in a hot spring metagenomic library. It is a thermophilic and thermostable esterase with an optimum temperature of 60°C. A detailed substrate preference analysis of EstD11 was done using a library of chromogenic ester substrate that revealed the broad substrate specificity of EstD11 with significant measurable activity against 16 substrates with varied chain length, steric hindrance, aromaticity and flexibility of the linker between the carboxyl and the alcohol moiety of the ester. The tridimensional structures of EstD11 and the inactive mutant have been determined at atomic resolutions. Structural and bioinformatic analysis, confirm that EstD11 belongs to the family IV, the hormone-sensitive lipase (HSL) family, from the α/β-hydrolase superfamily. The canonical α/β-hydrolase domain is completed by a cap domain, composed by two subdomains that can unmask of the active site to allow the substrate to enter. Eight crystallographic complexes were solved with different substrates and reaction products that allowed identification of the hot-spots in the active site underlying the specificity of the protein. Crystallization and/or incubation of EstD11 at high temperature provided unique information on cap dynamics and a first glimpse of enzymatic activity . Very interestingly, we have discovered a unique Met zipper lining the active site and the cap domains that could be essential in pivotal aspects as thermo-stability and substrate promiscuity in EstD11.
在一个温泉宏基因组文库中发现了一种新型酯酶EstD11。它是一种嗜热且耐热的酯酶,最适温度为60°C。使用显色酯底物文库对EstD11进行了详细的底物偏好分析,结果显示EstD11具有广泛的底物特异性,对16种具有不同链长、空间位阻、芳香性以及酯的羧基和醇部分之间连接子柔韧性的底物具有显著的可测量活性。已在原子分辨率下确定了EstD11和无活性突变体的三维结构。结构和生物信息学分析证实,EstD11属于α/β水解酶超家族中的IV族,即激素敏感脂肪酶(HSL)家族。典型的α/β水解酶结构域由一个帽结构域完成,该帽结构域由两个亚结构域组成,可揭开活性位点以允许底物进入。用不同的底物和反应产物解析了八个晶体学复合物,从而确定了蛋白质特异性背后活性位点中的热点。在高温下对EstD11进行结晶和/或孵育,提供了关于帽结构域动力学的独特信息以及酶活性的初步情况。非常有趣的是,我们发现了一个独特的甲硫氨酸拉链,它排列在活性位点和帽结构域中,这可能在EstD11的热稳定性和底物多特异性等关键方面至关重要。