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A New Helical Binding Domain Mediates a Glycosyltransferase Activity of a Bifunctional Protein

机译:新的螺旋结合结构域介导双功能蛋白的糖基转移酶活性

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摘要

Serine-rich repeat glycoproteins (SRRPs) conserved in streptococci and staphylococci are important for bacterial colonization and pathogenesis. Fap1, a well studied SRRP is a major surface constituent of Streptococcus parasanguinis and is required for bacterial adhesion and biofilm formation. Biogenesis of Fap1 is a multistep process that involves both glycosylation and secretion. A series of glycosyltransferases catalyze sequential glycosylation of Fap1. We have identified a unique hybrid protein dGT1 (dual glycosyltransferase 1) that contains two distinct domains. N-terminal DUF1792 is a novel GT-D-type glycosyltransferase, transferring Glc residues to Glc-GlcNAc-modified Fap1. C-terminal dGT1 (CgT) is predicted to possess a typical GT-A-type glycosyltransferase, however, the activity remains unknown. In this study, we determine that CgT is a distinct glycosyltransferase, transferring GlcNAc residues to Glc-Glc-GlcNAc-modified Fap1. A 2.4-Å x-ray crystal structure reveals that CgT has a unique binding domain consisting of three α helices in addition to a typical GT-A-type glycosyltransferase domain. The helical domain is crucial for the oligomerization of CgT. Structural and biochemical studies revealed that the helix domain is required for the protein-protein interaction and crucial for the glycosyltransferase activity of CgT in vitro and in vivo. As the helix domain presents a novel structural fold, we conclude that CgT represents a new member of GT-A-type glycosyltransferases.
机译:链球菌和葡萄球菌中保守的富含丝氨酸的重复糖蛋白(SRRP)对于细菌定植和发病机理很重要。 Fap1,一个经过充分研究的SRRP,是副链球菌的主要表面成分,是细菌粘附和生物膜形成所必需的。 Fap1的生物发生是一个多步骤过程,涉及糖基化和分泌。一系列的糖基转移酶催化Fap1的顺序糖基化。我们已经确定了一个独特的杂合蛋白dGT1(双糖基转移酶1),其中包含两个不同的域。 N端DUF1792是一种新颖的GT-D型糖基转移酶,可将Glc残基转移至Glc-GlcNAc修饰的Fap1。 C末端dGT1(CgT)预计具有典型的GT-A型糖基转移酶,但是,其活性仍然未知。在这项研究中,我们确定CgT是一个独特的糖基转移酶,将GlcNAc残基转移到Glc-Glc-GlcNAc修饰的Fap1。 2.4ÅX射线晶体结构表明,CgT除具有典型的GT-A型糖基转移酶结构域外,还具有由三个α螺旋组成的独特结合结构域。螺旋结构域对于CgT的低聚至关重要。结构和生化研究表明,螺旋结构域是蛋白-蛋白相互作用所必需的,并且对于体外和体内CgT的糖基转移酶活性至关重要。由于螺旋结构域呈现新颖的结构折叠,我们得出结论,CgT代表GT-A型糖基转移酶的新成员。

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