Reuland Steven N, Vlasov Alexander P, Krupenko Sergey A
Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston, South Carolina 29425, USA.
J Biol Chem. 2003 Jun 20;278(25):22894-900. doi: 10.1074/jbc.M302948200. Epub 2003 Apr 8.
10-Formyltetrahydrofolate dehydrogenase (FDH) is composed of three domains and possesses three catalytic activities but has only two catalytic centers. The amino-terminal domain (residue 1-310) bears 10-formyltetrahydrofolate hydrolase activity, the carboxyl-terminal domain (residue 420-902) bears an aldehyde dehydrogenase activity, and the full-length FDH produces 10-formyltetrahydrofolate dehydrogenase activity. The intermediate linker (residues 311-419) connecting the two catalytic domains does not contribute directly to the enzyme catalytic centers but is crucial for 10-formyltetrahydrofolate dehydrogenase activity. We have identified a region within the intermediate domain (residues 384-405) that shows sequence similarity to the central helix of calmodulin. Deletion of either the entire putative helix or the central part of the helix or replacement of the six residues within the central part with alanines resulted in total loss of the 10-formyltetrahydrofolate dehydrogenase activity, whereas the full hydrolase and aldehyde dehydrogenase activities were retained. Alanine-scanning mutagenesis revealed that neither of the six residues alone is required for FDH activity. Analysis of the predicted secondary structures and circular dichroic and fluorescence spectroscopy studies of the intermediate domain expressed as a separate protein showed that this region is likely to consist of two alpha-helices connected by a flexible loop. Our results suggest that flexibility within the putative helix is important for FDH function and could be a point for regulation of the enzyme.
10-甲酰四氢叶酸脱氢酶(FDH)由三个结构域组成,具有三种催化活性,但只有两个催化中心。氨基末端结构域(第1至310位氨基酸残基)具有10-甲酰四氢叶酸水解酶活性,羧基末端结构域(第420至902位氨基酸残基)具有醛脱氢酶活性,全长FDH具有10-甲酰四氢叶酸脱氢酶活性。连接两个催化结构域的中间连接区(第311至419位氨基酸残基)不直接参与酶的催化中心,但对10-甲酰四氢叶酸脱氢酶活性至关重要。我们在中间结构域内鉴定出一个区域(第384至405位氨基酸残基),该区域与钙调蛋白的中央螺旋具有序列相似性。删除整个假定的螺旋或螺旋的中央部分,或将中央部分的六个残基替换为丙氨酸,都会导致10-甲酰四氢叶酸脱氢酶活性完全丧失,而水解酶和醛脱氢酶的全部活性得以保留。丙氨酸扫描诱变显示,这六个残基单独一个都不是FDH活性所必需的。对预测的二级结构进行分析,并对作为单独蛋白质表达的中间结构域进行圆二色光谱和荧光光谱研究,结果表明该区域可能由两个通过柔性环连接的α-螺旋组成。我们的结果表明,假定螺旋内的柔性对FDH功能很重要,可能是该酶的一个调控点。