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Structural Basis of Glycerophosphodiester Recognitionby the Mycobacterium tuberculosis Substrate-BindingProtein UgpB

机译:甘油磷酸二酯识别的结构基础通过结核分枝杆菌底物结合蛋白UgpB

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摘要

Mycobacterium tuberculosis (Mtb) is the causative agent of tuberculosis (TB) and has evolved an incredible ability to survive latently within the human host for decades. The Mtb pathogen encodes for a low number of ATP-binding cassette (ABC) importers for the acquisition of carbohydrates that may reflect the nutrient poor environment within the host macrophages. Mtb UgpB (Rv2833c) is the substrate binding domain of the UgpABCE transporter that recognizes glycerophosphocholine (GPC), indicating that this transporter has a role in recycling glycerophospholipid metabolites. By using a combination of saturation transfer difference (STD) NMR and X-ray crystallography, we report the structural analysis of Mtb UgpB complexed with GPC and have identified that Mtb UgpB not only recognizes GPC but is also promiscuous for a broad range of glycerophosphodiesters. Complementary biochemical analyses and site-directed mutagenesis precisely define the molecular basis and specificity of glycerophosphodiester recognition. Our results provide critical insights into the structural and functional role of the Mtb UgpB transporter and reveal thatthe specificity of this ABC-transporter is not limited to GPC, thereforeoptimizing the ability of Mtb to scavenge scarcenutrients and essential glycerophospholipid metabolites via a singletransporter during intracellular infection.
机译:结核分枝杆菌(Mtb)是结核病(TB)的病原体,并且已经发展出令人难以置信的能力,可以在人类宿主中潜伏数十年。 Mtb病原体编码少量的ATP结合盒(ABC)进口商,以获取可能反映宿主巨噬细胞内营养不良的环境的碳水化合物。 Mtb UgpB(Rv2833c)是UgpABCE转运蛋白的底物结合结构域,可识别甘油磷酸胆碱(GPC),表明该转运蛋白在回收甘油磷脂代谢物中具有作用。通过结合使用饱和转移差异(STD)NMR和X射线晶体学,我们报告了与GPC结合的Mtb UgpB的结构分析,并确定Mtb UgpB不仅识别GPC,而且对于广泛的甘油二磷酸酯也是混杂的。辅助生化分析和定点诱变可精确定义甘油磷酸二酯识别的分子基础和特异性。我们的结果提供了有关Mtb UgpB转运蛋白的结构和功能作用的重要见解,并揭示了该ABC转运蛋白的特异性不仅限于GPC,因此优化Mtb清除稀缺性的能力营养和必需的甘油磷脂代谢产物细胞内感染过程中的转运蛋白。

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