阿拉伯甘露聚糖脂
阿拉伯半乳聚糖
周质间隙
单元格信封
结核分枝杆菌
细胞壁
跨膜结构域
跨膜蛋白
生物化学
化学
立体化学
生物
膜
肺结核
大肠杆菌
受体
病理
基因
医学
作者
Yaqi Liu,Chelsea M. Brown,Satchal K. Erramilli,Yi‐Chia Su,Po-Sen Tseng,Yu-Jen Wang,Nam Ha Duong,Piotr Tokarz,Brian Kloss,Cheng-Ruei Han,Hung‐Yu Chen,José J. Rodrigues,Margarida Archer,Todd L. Lowary,Anthony A. Kossiakoff,Phillip J. Stansfeld,Rie Nygaard,Filippo Mancia
标识
DOI:10.1101/2024.09.17.613533
摘要
The emergence of drug-resistant strains exacerbates the global challenge of tuberculosis caused by Mycobacterium tuberculosis (Mtb). Central to the pathogenicity of Mtb is its complex cell envelope, which serves as a barrier against both immune system and pharmacological attacks. Two key components of this envelope, arabinogalactan (AG) and lipoarabinomannan (LAM) are complex polysaccharides that contain integral arabinan domains important for cell wall structural and functional integrity. The arabinofuranosyltransferase AftB terminates the synthesis of these arabinan domains by catalyzing the addition of the addition of β-(1→2)-linked terminal arabinofuranose residues. Here, we present the cryo-EM structures of Mycobacterium chubuense AftB in its apo and donor substrate analog-bound form, determined to 2.9 Å and 3.4 Å resolution, respectively. Our structures reveal that AftB has a GT-C fold transmembrane (TM) domain comprised of eleven TM helices and a periplasmic cap domain. AftB has an irregular tube-shaped cavity that bridges the two proposed substrate binding sites. By integrating structural analysis, biochemical assays, and molecular dynamics simulations, we elucidate the molecular basis of the reaction mechanism of AftB and propose a model for catalysis.
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