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精氨酸262的远端相互作用以及底物与丝氨酸52结合的破坏会影响绵羊肝脏胞质丝氨酸羟甲基转移酶的催化作用。

Disruption of distal interactions of Arg 262 and of substrate binding to Ser 52 affect catalysis of sheep liver cytosolic serine hydroxymethyltransferase.

作者信息

Jala Venkatakrishna Rao, Ambili M, Prakash V, Rao N Appaji, Savithri H S

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560 012, India.

出版信息

Indian J Biochem Biophys. 2003 Aug;40(4):226-37.

Abstract

The crystal structure of human liver cytosolic recombinant serine hydroxymethyltransferase (hcSHMT) suggested that Ser53 and Arg 263 could participate in the reaction catalyzed by SHMT. The mutation of Arg262 (corresponding to Arg263 in hcSHMT) to "A" in sheep liver cytosolic SHMT (scSHMT) resulted in a 5-fold increase in Km for L-Ser and a 5-fold decrease in kcat compared to scSHMT. Further, in R262A SHMT-glycine complex, the peak at 343 nm (geminal diamine) was more pronounced, compared to wild-type enzyme. Stopped-flow studies showed that the rate constant for the formation of glycine-geminal diamine for R262A SHMT was also decreased. The rate of reaction, concentration of spectral intermediates, fluorescence excitation maximum of glycine geminal diamine and interaction with methoxyamine were altered in R262A SHMT. Although Arg263 in hcSHMT is located outside the PLP binding pocket, it positions Tyr73 for interaction with PLP, by forked H-bonding with the carbonyl groups of main chain residues, Asn71 and Lys72 of the other subunit of the tight dimer. Mutation of Arg262 to Ala and the consequent alteration in orientation of PLP leads to decreased catalytic efficiency. Ser53 (in hcSHMT) is in hydrogen bonding distance to one of the carboxylate oxygens of the amino acid substrate, which also interacts with Tyr83 and Arg402. Replacement of Ser53 with Cys (using 'O' software program) in the structure of hcSHMT resulted in disruption of these interactions, whereas replacement with Ala (S53A) only weakened the substrate interactions. There was a 10-fold increase in Km and 20-fold decrease in catalytic activity efficiency for S52C SHMT, whereas S52A SHMT retained 20% of the activity without change in Km for serine. These results suggest that S52 affects substrate binding and catalysis.

摘要

人肝细胞质重组丝氨酸羟甲基转移酶(hcSHMT)的晶体结构表明,Ser53和Arg 263可能参与SHMT催化的反应。与绵羊肝细胞质SHMT(scSHMT)相比,绵羊肝细胞质SHMT中Arg262(对应于hcSHMT中的Arg263)突变为“A”导致L-Ser的Km增加5倍,kcat降低5倍。此外,在R262A SHMT-甘氨酸复合物中,与野生型酶相比,343nm处(偕二胺)的峰更明显。停流研究表明,R262A SHMT形成甘氨酸-偕二胺的速率常数也降低。R262A SHMT的反应速率、光谱中间体浓度、甘氨酸偕二胺的荧光激发最大值以及与甲氧基胺的相互作用均发生了改变。尽管hcSHMT中的Arg263位于磷酸吡哆醛(PLP)结合口袋之外,但它通过与紧密二聚体另一亚基的主链残基Asn71和Lys72的羰基形成叉状氢键,使Tyr73定位以与PLP相互作用。Arg262突变为Ala以及随之而来的PLP方向改变导致催化效率降低。Ser53(在hcSHMT中)与氨基酸底物的一个羧酸盐氧原子处于氢键距离,该羧酸盐氧原子也与Tyr83和Arg402相互作用。在hcSHMT结构中用Cys取代Ser53(使用“O”软件程序)导致这些相互作用中断,而用Ala取代(S53A)仅削弱了底物相互作用。S52C SHMT的Km增加10倍,催化活性效率降低20倍,而S52A SHMT保留了20%的活性,丝氨酸的Km没有变化。这些结果表明S52影响底物结合和催化。

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