HadBD dehydratase from Mycobacterium tuberculosis fatty acid synthase type II: A singular structure for a unique function

Pascaline Bories, Julie Rima,Samuel Tranier, Julien Marcoux, Yasmina Grimoire, Mathilde Tomaszczyk, Anne Launay, Karine Fata,Hedia Marrakchi,Odile Burlet-Schiltz,Lionel Mourey,Manuelle Ducoux-Petit,Fabienne Bardou,Cecile Bon,Annaik Quemard

PROTEIN SCIENCE(2024)

引用 0|浏览0
暂无评分
摘要
Worldwide, tuberculosis is the second leading infectious killer and multidrug resistance severely hampers disease control. Mycolic acids are a unique category of lipids that are essential for viability, virulence, and persistence of the causative agent, Mycobacterium tuberculosis (Mtb). Therefore, enzymes involved in mycolic acid biosynthesis represent an important class of drug targets. We previously showed that the (3R)-hydroxyacyl-ACP dehydratase (HAD) protein HadD is dedicated mainly to the production of ketomycolic acids and plays a determinant role in Mtb biofilm formation and virulence. Here, we discovered that HAD activity requires the formation of a tight heterotetramer between HadD and HadB, a HAD unit encoded by a distinct chromosomal region. Using biochemical, structural, and cell-based analyses, we showed that HadB is the catalytic subunit, whereas HadD is involved in substrate binding. Based on HadBDMtb crystal structure and substrate-bound models, we identified determinants of the ultra-long-chain lipid substrate specificity and revealed details of structure-function relationship. HadBDMtb unique function is partly due to a wider opening and a higher flexibility of the substrate-binding crevice in HadD, as well as the drastically truncated central alpha-helix of HadD hotdog fold, a feature described for the first time in a HAD enzyme. Taken together, our study shows that HadBDMtb, and not HadD alone, is the biologically relevant functional unit. These results have important implications for designing innovative antivirulence molecules to fight tuberculosis, as they suggest that the target to consider is not an isolated subunit, but the whole HadBD complex.
更多
查看译文
关键词
(3R)-hydroxyacyl-ACP dehydratase HadBD,catalytic subunit,crystal structure,fatty acid synthase type II system,hotdog helix,Mycobacterium tuberculosis,mycolic acids,structure-function relationships,substrate-binding subunit,ultra-long-chain substrates
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要