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首页> 外文期刊>The Biochemical Journal >Structural and functional studies of Bacillus stearothermophilus serine hydroxymethyltransferase: the role of Asn(341), Tyr(60) and Phe(351) in tetrahydrofolate binding
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Structural and functional studies of Bacillus stearothermophilus serine hydroxymethyltransferase: the role of Asn(341), Tyr(60) and Phe(351) in tetrahydrofolate binding

机译:嗜热脂肪芽孢杆菌丝氨酸羟甲基转移酶的结构和功能研究:Asn(341),Tyr(60)和Phe(351)在四氢叶酸结合中的作用

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摘要

SHMT (serine hydoxymethyltransferase), a type I pyridoxal 5'-phosphate-dependent enzyme, catalyses the conversion of L-serine and THF (tetrahydrofolate) into glycine and 5,10-methylene THF. SHMT also catalyses several THF-independent side reactions such as cleavage of beta-hydroxy amino acids, transamination, racemization and decarboxylation. In the present study, the residues Asn(341), Tyr(60) and Phe(351), which are likely to influence THF binding, were mutated to alanine, alanine and glycine respectively, to elucidate the role of these residues in THF-dependent and -independent reactions catalysed by SHMT. The N341A and Y60A bsSHMT (Bacillus stearothermophilus SHMT) mutants were inactive for the THF-dependent activity, while the mutations had no effect on THF-independent activity. However, mutation of Phe(351) to glycine did not have any effect on either of the activities. The crystal structures of the glycine binary complexes of the mutants showed that N341A bsSHMT forms an external aldimine as in bsSHMT, whereas Y60A and F351G bsSHMTs exist as a mixture of internal/external aldimine and gem-diamine forms. Crystal structures of all of the three mutants obtained in the presence of L-allo-threonine were similar to the respective glycine binary complexes. The structure of the ternary complex of F351G bsSHMT with glycine and FTHF (5-formyl THF) showed that the monoglutamate side chain of FTHF is ordered in both the subunits of the asymmetric unit, unlike in the wild-type bsSHMT. The present studies demonstrate that the residues Asn(341) and Tyr(60) are pivotal for the binding of THF/FTHF, whereas Phe(351) is responsible for the asymmetric binding of FTHF in the two subunits of the dimer.
机译:SHMT(丝氨酸羟甲基转移酶),一种I型吡ido醛5'-磷酸依赖性酶,催化L-丝氨酸和THF(四氢叶酸)转化为甘氨酸和5,10-亚甲基THF。 SHMT还催化了几种不依赖THF的副反应,例如β-羟基氨基酸的裂解,氨基转移,消旋和脱羧。在本研究中,可能影响THF结合的残基Asn(341),Tyr(60)和Phe(351)分别突变为丙氨酸,丙氨酸和甘氨酸,以阐明这些残基在THF-中的作用。 SHMT催化的非独立和非独立反应。 N341A和Y60A bsSHMT(嗜热脂肪芽孢杆菌SHMT)突变体对THF依赖性活性无效,而该突变对THF依赖性活性没有影响。但是,将Phe(351)突变为甘氨酸对这两种活性均没有任何影响。突变体的甘氨酸二元复合物的晶体结构表明,N341A bsSHMT像bsSHMT一样形成外部醛亚胺,而Y60A和F351G bsSHMT则以内部/外部醛亚胺和吉二胺的混合物形式存在。在L-al-苏氨酸的存在下获得的所有三个突变体的晶体结构都与各自的甘氨酸二元复合物相似。 F351G bsSHMT与甘氨酸和FTHF(5-甲酰基THF)的三元复合物的结构表明,与野生型bsSHMT不同,FTHF的单谷氨酸侧链在不对称单元的两个亚基中都是有序的。本研究表明,残基Asn(341)和Tyr(60)对于THF / FTHF的结合至关重要,而Phe(351)则对FTHF在二聚体的两个亚基中的不对称结合负责。

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