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嗜热栖热放线菌中N10-甲酰四氢叶酸合成酶的FTHFS单价阳离子结合位点的阳离子结合与热稳定性

Cation binding and thermostability of FTHFS monovalent cation binding sites and thermostability of N10-formyltetrahydrofolate synthetase from Moorella thermoacetica.

作者信息

Radfar R, Leaphart A, Brewer J M, Minor W, Odom J D, Dunlap R B, Lovell C R, Lebioda L

机构信息

Departments of Chemistry and Biochemistry and Biological Sciences, University of South Carolina, Columbia, South Carolina 29208, USA.

出版信息

Biochemistry. 2000 Nov 28;39(47):14481-6. doi: 10.1021/bi001577w.

Abstract

Formyltetrahydrofolate synthetase (FTHFS) from the thermophilic homoacetogen, Moorella thermoacetica, has an optimum temperature for activity of 55-60 degrees C and requires monovalent cations for both optimal activity and stabilization of tetrameric structure at higher temperatures. The crystal structures of complexes of FTHFS with cesium and potassium ions were examined and monovalent cation binding positions identified. Unexpectedly, NH(4)(+) and K(+), both of which are strongly activating ions, bind at a different site than a moderately activating ion, Cs(+), does. Neither binding site is located in the active site. The sites are 7 A apart, but in each of them, the side chain of Glu 98, which is conserved in all known bacterial FTHFS sequences, participates in metal ion binding. Other ligands in the Cs(+) binding site are four oxygen atoms of main chain carbonyls and water molecules. The K(+) and NH(4)(+) binding site includes the carboxylate of Asp132 in addition to Glu98. Mutant FTHFS's (E98Q, E98D, and E98S) were obtained and analyzed using differential scanning calorimetry to examine the effect of these mutations on the thermostability of the enzyme with and without added K(+) ions. The addition of 0.2 M K(+) ions to the wild-type enzyme resulted in a 10 degrees C increase in the thermal denaturation temperature. No significant increase was observed in E98D or E98S. The lack of a significant effect of monovalent cations on the stability of E98D and E98S indicates that this alteration of the binding site eliminates cation binding. The thermal denaturation temperature of E98Q was 3 degrees C higher than that of the wild-type enzyme in the absence of the cation, indicating that the removal of the unbalanced, buried charge of Glu98 stabilizes the enzyme. These results confirm that Glu98 is a crucial residue in the interaction of monovalent cations with FTHFS.

摘要

嗜热同型产乙酸菌摩尔氏嗜热栖热菌的甲酰四氢叶酸合成酶(FTHFS)的最适活性温度为55 - 60摄氏度,并且在较高温度下,其最佳活性以及四聚体结构的稳定都需要单价阳离子。研究了FTHFS与铯离子和钾离子复合物的晶体结构,并确定了单价阳离子的结合位置。出乎意料的是,都是强激活离子的铵离子(NH₄⁺)和钾离子(K⁺),其结合位点与中度激活离子铯离子(Cs⁺)的不同。两个结合位点都不在活性位点。这两个位点相距7埃,但在每个位点中,在所有已知细菌FTHFS序列中都保守的Glu 98的侧链参与金属离子结合。Cs⁺结合位点中的其他配体是主链羰基的四个氧原子和水分子。K⁺和NH₄⁺结合位点除了Glu98外还包括Asp132的羧酸盐。获得了突变型FTHFS(E98Q、E98D和E98S),并使用差示扫描量热法进行分析,以研究这些突变对添加和不添加K⁺离子时酶热稳定性的影响。向野生型酶中添加0.2 M K⁺离子会使热变性温度升高10摄氏度。在E98D或E98S中未观察到显著升高。单价阳离子对E98D和E98S稳定性缺乏显著影响,表明结合位点的这种改变消除了阳离子结合。在没有阳离子的情况下,E98Q的热变性温度比野生型酶高3摄氏度,表明去除Glu98不平衡的埋藏电荷可使酶稳定。这些结果证实Glu98是单价阳离子与FTHFS相互作用中的关键残基。

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