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Biochemical and Structural Characterization of a novel thermophilic esterase EstD11 provide catalytic insights for the HSL family

机译:新型嗜热酯酶ESTD11的生化和结构表征为HSL家族提供催化洞察

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摘要

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 in vivo. 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.
机译:在热弹簧偏见的文库中发现了一种新的酯酶ESTD11。它是一种嗜热和热稳定的酯酶,温度为60℃。使用发色酯基质文库进行ESTD11的详细底物偏好分析,所述发育酯基质文库揭示了eSTD11的宽底物特异性,具有显着的可测量活性,其具有可变的链长,空间障碍,芳香性和羧基之间的接头的芳香性和柔韧性。酯的醇部分。在原子分辨率下确定了eSTD11和无活性突变体的串趋势结构。结构和生物信息分析,证实ESTD11属于家族IV,激素敏感脂肪酶(HSL)家族,来自α/β-水解酶超家族。规范α/β-水解酶结构域通过帽结构域完成,由两个亚域组成,其可以揭开活性位点以允许基材进入。用不同的底物和反应产物求解八个晶体复合物,其允许鉴定蛋白质的特异性的活性位点中的热点。在高温下的eSTD11结晶和/或培养提供了关于帽动态的独特信息,以及体内酶活性的首次瞥见。非常有趣的是,我们已经发现了一个独特的遇到拉链衬里,衬里衬里和帽结构域,其在枢轴方面可能是必不可少的,作为ESTD11中的热稳定性和基材滥己。

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