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Allosteric pyruvate kinase-based “logic gate” synergistically senses energy and sugar levels in Mycobacterium tuberculosis

机译:基于变构丙酮酸激酶的“逻辑门”可协同感测结核分枝杆菌中的能量和糖水平

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摘要

Pyruvate kinase (PYK) is an essential glycolytic enzyme that controls glycolytic flux and is critical for ATP production in all organisms, with tight regulation by multiple metabolites. Yet the allosteric mechanisms governing PYK activity in bacterial pathogens are poorly understood. Here we report biochemical, structural and metabolomic evidence that Mycobacterium tuberculosis (Mtb) PYK uses AMP and glucose-6-phosphate (G6P) as synergistic allosteric activators that function as a molecular “OR logic gate” to tightly regulate energy and glucose metabolism. G6P was found to bind to a previously unknown site adjacent to the canonical site for AMP. Kinetic data and structural network analysis further show that AMP and G6P work synergistically as allosteric activators. Importantly, metabolome profiling in the Mtb surrogate, Mycobacterium bovis BCG, reveals significant changes in AMP and G6P levels during nutrient deprivation, which provides insights into how a PYK OR gate would function during the stress of Mtb infection.
机译:丙酮酸激酶(PYK)是一种控制糖酵解通量的必不可少的糖酵解酶,对所有生物中的ATP产生至关重要,并具有多种代谢物的严格调节作用。然而,对细菌病原体中PYK活性的变构机制了解甚少。在这里,我们报告生化,结构和代谢组学证据,证明结核分枝杆菌(Mtb)PYK使用AMP和6-磷酸葡萄糖(G6P)作为协同变构活化剂,其充当分子“或逻辑门”来严格调节能量和葡萄糖代谢。发现G6P结合到与AMP经典位点相邻的先前未知位点。动力学数据和结构网络分析进一步表明AMP和G6P作为变构激活剂协同作用。重要的是,Mtb替代品牛分枝杆菌BCG中的代谢物谱分析揭示了营养剥夺期间AMP和G6P水平的显着变化,这为了解PYK OR门在Mtb感染压力下如何发挥作用提供了见识。

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