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首页> 外文期刊>Nature Communications >The highly conserved domain of unknown function 1792 has a distinct glycosyltransferase fold
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The highly conserved domain of unknown function 1792 has a distinct glycosyltransferase fold

机译:功能未知的高度保守的域1792具有明显的糖基转移酶折叠

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More than 33,000 glycosyltransferases have been identified. Structural studies, however, have only revealed two distinct glycosyltransferase (GT) folds, GT-A and GT-B. Here we report a 1.34-? resolution X-ray crystallographic structure of a previously uncharacterized ‘domain of unknown function’ 1792 (DUF1792) and show that the domain adopts a new fold and is required for glycosylation of a family of serine -rich repeat streptococcal adhesins. Biochemical studies reveal that the domain is a glucosyltransferase, and it catalyses the transfer of glucose to the branch point of the hexasaccharide O-linked to the serine -rich repeat of the bacterial adhesin, Fap1 of Streptococcus parasanguinis . DUF1792 homologues from both Gram-positive and Gram-negative bacteria also exhibit the activity. Thus, DUF1792 represents a new family of glycosyltransferases; therefore, we designate it as a GT-D glycosyltransferase fold. As the domain is highly conserved in bacteria and not found in eukaryotes, it can be explored as a new antibacterial target.
机译:已经鉴定出超过33,000个糖基转移酶。然而,结构研究仅揭示了两个不同的糖基转移酶(GT)折叠,即GT-A和GT-B。在这里我们报告1.34?解析度X射线晶体学结构,以前没有描述过的“未知功能域” 1792(DUF1792),并显示该域采用了新的折叠方式,是富含丝氨酸的重复链球菌粘附素家族糖基化所必需的。生化研究表明,该结构域是一个葡萄糖基转移酶,它催化葡萄糖转移到六糖O的分支点,后者与细菌粘附素Fap1副链球菌Fap1的富含丝氨酸的重复连接。来自革兰氏阳性和革兰氏阴性细菌的DUF1792同源物也显示出活性。因此,DUF1792代表了一个新的糖基转移酶家族。因此,我们将其指定为GT-D糖基转移酶折叠。由于该结构域在细菌中高度保守,而在真核生物中未发现,因此可以作为新的抗菌靶标进行探索。

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