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Catalysis uncoupling in a glutamine amidotransferase bienzyme by unblocking the glutaminase active site

机译:通过解封闭谷氨酰胺酶活性位点来催化谷氨酰胺酰胺转移酶双酶解偶联

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摘要

Nitrogen is incorporated into various metabolites by multifunctional glutamine amidotransferases via reactive ammonia generated by glutaminase hydrolysis of glutamine. Although this process is generally tightly regulated by subsequent synthase activity, little is known about how the glutaminase is inhibited in the absence of an activating signal. Here, we use imidazoleglycerolphosphate synthase as a model to investigate the mechanism of glutaminase regulation. A structure of the bienzyme-glutamine complex reveals that the glutaminase active site is in a catalysis-competent conformation but the ammonia pathway toward the synthase active site is blocked. Mutation of two residues blocking the pathway leads to a complete uncoupling of the two reactions and to a 2800-fold amplification of glutaminase activity. Our data advance the understanding of coupling enzymatic activities in glutamine amidotransferases and raise hypotheses of the underlying molecular mechanism.
机译:多功能谷氨酰胺酰胺转移酶通过谷氨酰胺水解谷氨酰胺酶产生的活性氨将氮掺入各种代谢物中。尽管此过程通常由随后的合酶活性严格调控,但对于在没有激活信号的情况下如何抑制谷氨酰胺酶知之甚少。在这里,我们使用咪唑甘油磷酸合酶作为模型来研究谷氨酰胺酶调节的机制。双酶-谷氨酰胺复合物的结构表明,谷氨酰胺酶活性位点处于催化能力的构象,但通向合酶活性位点的氨途径被阻断。阻断该途径的两个残基的突变导致两个反应的完全解偶联以及谷氨酰胺酶活性的2800倍扩增。我们的数据提高了对谷氨酰胺酰胺转移酶中耦合酶活性的理解,并提出了潜在分子机制的假设。

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