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首页> 外文期刊>The FEBS journal >Structure determination and biochemical studies on Bacillus stearothermophilus E53Q serine hydroxymethyltransferase and its complexes provide insights on function and enzyme memory
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Structure determination and biochemical studies on Bacillus stearothermophilus E53Q serine hydroxymethyltransferase and its complexes provide insights on function and enzyme memory

机译:嗜热脂肪芽孢杆菌E53Q丝氨酸羟甲基转移酶及其复合物的结构测定和生化研究为功能和酶记忆提供了见识

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Serine hydroxymethyltransferase (SHMT) belongs to the α-family of pyridoxal 5'-phosphate-dependent enzymes and catalyzes the reversible conversion of l-Ser and tetrahydrofolate to Gly and 5,10-methylene tetrahydrofolate. 5,10-Methylene tetrahydrofolate serves as a source of one-carbon fragment in many biological processes. SHMT also catalyzes the tetrahydrofolate-independent conversion of l-allo-Thr to Gly and acetaldehyde. The crystal structure of Bacillus stearothermophilus SHMT (bsSHMT) suggested that E53 interacts with the substrate, l-Ser and tetrahydrofolate. To elucidate the role of E53, it was mutated to Q and structural and biochemical studies were carried out with the mutant enzyme. The internal aldimine structure of E53QbsSHMT was similar to that of the wild-type enzyme, except for significant changes at Q53, Y60 and Y61. The carboxyl of Gly and side chain of l-Ser were in two conformations in the respective external aldimine structures. The mutant enzyme was completely inactive for tetrahydrofolate-dependent cleavage of l-Ser, whereas there was a 1.5-fold increase in the rate of tetrahydrofolate-independent reaction with l-allo-Thr. The results obtained from these studies suggest that E53 plays an essential role in tetrahydrofolate/5-formyl tetrahydrofolate binding and in the proper positioning of Cβ of l-Ser for direct attack by N5 of tetrahydrofolate. Most interestingly, the structure of the complex obtained by cocrystallization of E53QbsSHMT with Gly and 5-formyl tetrahydrofolate revealed the gem-diamine form of pyridoxal 5'-phosphate bound to Gly and active site Lys. However, density for 5-formyl tetrahydrofolate was not observed. Gly carboxylate was in a single conformation, whereas pyridoxal 5'-phosphate had two distinct conformations. The differences between the structures of this complex and Gly external aldimine suggest that the changes induced by initial binding of 5-formyl tetrahydrofolate are retained even though 5-formyl tetrahydrofolate is absent in the final structure. Spectral studies carried out with this mutant enzyme also suggest that 5-formyl tetrahydrofolate binds to the E53QbsSHMT-Gly complex forming a quinonoid intermediate and falls off within 4 h of dialysis, leaving behind the mutant enzyme in the gem-diamine form. This is the first report to provide direct evidence for enzyme memory based on the crystal structure of enzyme complexes.
机译:丝氨酸羟甲基转移酶(SHMT)属于吡ido醛5'-磷酸依赖性酶的α家族,催化1-Ser和四氢叶酸可逆转化为Gly和5,10-亚甲基四氢叶酸。 5,10-亚甲基四氢叶酸在许多生物过程中均是一碳片段的来源。 SHMT还催化不依赖于四氢叶酸的l-allo-Thr转化为Gly和乙醛。嗜热脂肪芽孢杆菌SHMT(bsSHMT)的晶体结构表明,E53与底物,I-Ser和四氢叶酸相互作用。为了阐明E53的作用,将其突变为Q,并使用突变酶进行了结构和生化研究。 E53QbsSHMT的内部醛亚胺结构与野生型酶相似,除了在Q53,Y60和Y61处有显着变化。 Gly的羧基和1-Ser的侧链在各自的外部醛亚胺结构中处于两个构象。突变型酶完全不依赖于l-Ser的四氢叶酸依赖的裂解,而与l-allo-Thr的不依赖于四氢叶酸酯的反应速率增加了1.5倍。从这些研究中获得的结果表明,E53在四氢叶酸/ 5-甲酰基四氢叶酸的结合以及1-Ser的Cβ的适当定位中被四氢叶酸的N5直接攻击起着至关重要的作用。最有趣的是,通过将E53QbsSHMT与Gly和5-甲酰基四氢叶酸共结晶而获得的复合物的结构表明,吡ido醛5'-磷酸的宝石二胺形式与Gly和活性位点Lys结合。但是,未观察到5-甲酰基四氢叶酸酯的密度。糖基羧酸盐具有单一构象,而吡x醛5'-磷酸具有两个不同的构象。该复合物与Gly外部醛亚胺的结构之间的差异表明,即使最终结构中不存在5-甲酰基四氢叶酸,仍保留了由5-甲酰基四氢叶酸的初始结合引起的变化。用这种突变酶进行的光谱研究还表明,5-甲酰基四氢叶酸与E53QbsSHMT-Gly复合物结合形成醌类中间体,并在透析4小时内脱落,留下了宝石二胺形式的突变酶。这是第一个基于酶复合物晶体结构为酶记忆提供直接证据的报告。

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