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首页> 外文期刊>Journal of bacteriology >Functional Mapping of Brucella abortus Cyclic β-1,2-Glucan Synthase: Identification of the Protein Domain Required for Cyclization
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Functional Mapping of Brucella abortus Cyclic β-1,2-Glucan Synthase: Identification of the Protein Domain Required for Cyclization

机译:流产布鲁氏菌环状β-1,2-葡聚糖合酶的功能定位:环化所需的蛋白质域的鉴定。

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摘要

Cyclic β-1,2-glucans (CβG) are periplasmic homopolysaccharides that have been shown to play an important role in several symbiotic and pathogenic relationships. Cyclic β-1,2-glucan synthase (Cgs), the enzyme responsible for the synthesis of CβG, is an integral membrane polyfunctional protein that catalyzes the four enzymatic activities (initiation, elongation, phosphorolysis, and cyclization) required for the synthesis of CβG. Recently, we have identified the glycosyltransferase and the β-1,2-glucooligosaccharide phosphorylase domains of Brucella abortus Cgs. In this study, we performed large-scale linker-scanning mutagenesis to gain further insight into the functional domains of Cgs. This analysis allowed us to construct a functional map of the enzyme and led to the identification of the minimal region required for the catalysis of initiation and elongation reactions. In addition, we identified the Cgs region (residues 991 to 1544) as being the protein domain required for cyclization and demonstrated that upon cyclization and releasing of the CβG, one or more glucose residues remain attached to the protein intermediate that serves as a primer for the next round of CβG synthesis. Finally, our results indicate that the overall control of the degree of polymerization of CβG is the result of a balance between elongation, phosphorolysis, and cyclization reactions.
机译:环状β-1,2-葡聚糖(CβG)是周质均多糖,已显示在几种共生和致病关系中起重要作用。环状β-1,2-葡聚糖合酶(Cgs)是负责合成CβG的酶,是一种不可或缺的膜多官能蛋白,可催化合成CβG所需的四个酶活性(起始,延伸,磷酸分解和环化)。 。最近,我们确定了流产布鲁氏菌Cgs的糖基转移酶和β-1,2-葡糖寡糖磷酸化酶结构域。在这项研究中,我们进行了大规模的接头扫描诱变,以进一步了解Cgs的功能域。该分析使我们能够构建酶的功能图谱,并导致鉴定引发和延伸反应的催化所需的最小区域。此外,我们确定Cgs区(991至1544位残基)是环化所需的蛋白质结构域,并证明了在环化和释放CβG后,一个或多个葡萄糖残基仍附着在蛋白质中间体上,该中间体充当下一轮CβG合成。最后,我们的结果表明,对CβG聚合度的总体控制是伸长,磷酸分解和环化反应之间平衡的结果。

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