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通过在酿酒酵母(变种)Sta1 葡糖淀粉酶和纤维囊菌 Bgl1β-葡萄糖苷酶之间的结构域改组生成的杂合酶的结构和功能分析。

Structural and functional analysis of hybrid enzymes generated by domain shuffling between Saccharomyces cerevisiae (var. diastaticus) Sta1 glucoamylase and Saccharomycopsis fibuligera Bgl1 β-glucosidase.

机构信息

Instituto de Agroquímica y Tecnología de Alimentos, CSIC, Paterna, Valencia, Spain.

出版信息

Appl Microbiol Biotechnol. 2011 Jan;89(1):121-30. doi: 10.1007/s00253-010-2845-3. Epub 2010 Sep 7.

Abstract

Saccharomyces cerevisiae Sta1 glucoamylase and Saccharomycopsis fibuligera Bgl1 β-glucosidase, two relevant enzymes from a biotechnological point of view, are proteins with multidomain structure. Starting with homology-based structural models of Sta1 and Bgl1, we have constructed a series of hybrid enzymes by interchanging domains of the two proteins. The first purpose of these constructs was to check available hypotheses about the uncertain biological functions of two domains: the serine/threonine-rich domain (STRD) of Sta1 and a β-sandwich domain present in Bgl1 that we have designated fibronectin-like domain (FLD). While, according to the initial hypothesis, proteins carrying the FLD tend to adhere to the cell wall, our results argued against the idea of an involvement of the STRD in protein secretion that stemmed from the presence of similar domains in different proteins secreted by yeast. The second objective of this work was to increase the enzymatic repertoire by generating enzymes with new structural and functional properties.

摘要

酿酒酵母 Sta1 葡糖淀粉酶和纤维小囊菌 Bgl1 β-葡萄糖苷酶,这两种从生物技术角度来看相关的酶,都是具有多结构域的蛋白质。基于 Sta1 和 Bgl1 的同源结构模型,我们构建了一系列通过交换两种蛋白质结构域的杂交酶。这些构建体的第一个目的是检验关于 Sta1 的丝氨酸/苏氨酸丰富结构域(STRD)和我们指定的纤维连接蛋白样结构域(FLD)这两个不确定的生物学功能的假设。尽管根据最初的假设,携带 FLD 的蛋白质倾向于附着在细胞壁上,但我们的结果反对 STRD 参与蛋白质分泌的观点,该观点源于酵母分泌的不同蛋白质中存在类似结构域。这项工作的第二个目的是通过生成具有新结构和功能特性的酶来增加酶的种类。

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