首页> 外文期刊>International Journal of Molecular Sciences >Residue Asn277 Affects the Stability and Substrate Specificity of the SMG1 Lipase from Malassezia globosa
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Residue Asn277 Affects the Stability and Substrate Specificity of the SMG1 Lipase from Malassezia globosa

机译:残基Asn277影响球孢马拉色菌SMG1脂肪酶的稳定性和底物特异性。

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Thermostability and substrate specificity are important characteristics of enzymes for industrial application, which can be improved by protein engineering. SMG1 lipase from Malassezia globosa is a mono- and diacylglycerol lipase (MDL) that shows activity toward mono- and diacylglycerols, but no activity toward triacylglycerols. SMG1 lipase is considered a potential biocatalyst applied in oil/fat modification and its crystal structure revealed that an interesting residue-Asn277 may contribute to stabilize loop 273–278 and the 3104 helix which are important to enzyme characterization. In this study, to explore its role in affecting the stability and catalytic activity, mutagenesis of N277 with Asp (D), Val (V), Leu (L) and Phe (F) was conducted. Circular dichroism (CD) spectral analysis and half-life measurement showed that the N277D mutant has better thermostability. The melting temperature and half-life of the N277D mutant were 56.6 °C and 187 min, respectively, while that was 54.6 °C and 121 min for SMG1 wild type (WT). Biochemical characterization of SMG1 mutants were carried out to test whether catalytic properties were affected by mutagenesis. N277D had similar enzymatic properties as SMG1 WT, but N277F showed a different substrate selectivity profile as compared to other SMG1 mutants. Analysis of the SMG1 3D model suggested that N277D formed a salt bridge via its negative charged carboxyl group with a positively charged guanidino group of R227, which might contribute to confer N277D higher temperature stability. These findings not only provide some clues to understand the molecular basis of the lipase structure/function relationship but also lay the framework for engineering suitable MDL lipases for industrial applications.
机译:热稳定性和底物特异性是酶在工业应用中的重要特征,可以通过蛋白质工程加以改进。来自球形小马拉丝酵母的SMG1脂肪酶是单酰基和二酰基甘油脂肪酶(MDL),对单酰基和二酰基甘油具有活性,而对三酰基甘油则无活性。 SMG1脂肪酶被认为是一种潜在的生物催化剂,可用于油脂修饰,其晶体结构表明,有趣的残基Asn277可能有助于稳定环273-278和3 10 4螺旋,这对酶很重要表征。在这项研究中,为探讨其在影响稳定性和催化活性中的作用,对N277与Asp(D),Val(V),Leu(L)和Phe(F)进行了诱变。圆二色性(CD)光谱分析和半衰期测量表明N277D突变体具有更好的热稳定性。 N277D突变体的解链温度和半衰期分别为56.6°C和187 min,而SMG1野生型(WT)的解链温度为54.6°C和121 min。进行了SMG1突变体的生化表征,以测试诱变是否影响了催化性能。 N277D具有与SMG1 WT相似的酶促性质,但N277F与其他SMG1突变体相比具有不同的底物选择性。对SMG1 3D模型的分析表明,N277D通过其负电荷的羧基与R227的正电荷胍基形成盐桥,这可能有助于赋予N277D更高的温度稳定性。这些发现不仅为理解脂肪酶结构/功能关系的分子基础提供了一些线索,而且为工程化适合工业应用的MDL脂肪酶奠定了框架。

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