结核分枝杆菌
肽聚糖
生物化学
周质间隙
生物
阿拉伯半乳聚糖
生物合成
细胞壁
酶
肺结核
基因
医学
病理
大肠杆菌
作者
Yicheng Gong,Chuancun Wei,Jun Wang,N. Mu,Qunying Lu,Chengyao Wu,Ning Yan,Huifang Yang,Yao Zhao,Xiuna Yang,Sudagar S. Gurcha,Natacha Veerapen,Sarah M. Batt,Zhiqiang Hao,Lin‐Tai Da,Gurdyal S. Besra,Zihe Rao,Lu Zhang
标识
DOI:10.1073/pnas.2302858120
摘要
Arabinogalactan (AG) is an essential cell wall component in mycobacterial species, including the deadly human pathogen Mycobacterium tuberculosis. It plays a pivotal role in forming the rigid mycolyl-AG-peptidoglycan core for in vitro growth. AftA is a membrane-bound arabinosyltransferase and a key enzyme involved in AG biosynthesis which bridges the assembly of the arabinan chain to the galactan chain. It is known that AftA catalyzes the transfer of the first arabinofuranosyl residue from the donor decaprenyl-monophosphoryl-arabinose to the mature galactan chain (i.e., priming); however, the priming mechanism remains elusive. Herein, we report the cryo-EM structure of Mtb AftA. The detergent-embedded AftA assembles as a dimer with an interface maintained by both the transmembrane domain (TMD) and the soluble C-terminal domain (CTD) in the periplasm. The structure shows a conserved glycosyltransferase-C fold and two cavities converging at the active site. A metal ion participates in the interaction of TMD and CTD of each AftA molecule. Structural analyses combined with functional mutagenesis suggests a priming mechanism catalyzed by AftA in Mtb AG biosynthesis. Our data further provide a unique perspective into anti-TB drug discovery.
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