Takusagawa F, Kamitori S, Misaki S, Markham G D
Department of Chemistry, University of Kansas, Lawrence 66045-0046, USA.
J Biol Chem. 1996 Jan 5;271(1):136-47.
The structure of S-adenosylmethionine synthetase (MAT, ATP:L-methionine S-adenosyltransferase, EC 2.5.1.6.) from Escherichia coli has been determined at 3.0 A resolution by multiple isomorphous replacement using a uranium derivative and the selenomethionine form of the enzyme (SeMAT). The SeMAT data (9 selenomethionine residues out of 383 amino acid residues) have been found to have a sufficient phasing power to determine the structure of the 42,000 molecular weight protein by combining them with the other heavy atom derivative data (multiple isomorphous replacement). The enzyme consists of four identical subunits; two subunits form a spherical tight dimer, and pairs of these dimers form a peanut-shaped tetrameric enzyme. Each pair dimer has two active sites which are located between the subunits. Each subunit consists of three domains that are related to each other by pseudo-3-fold symmetry. The essential divalent (Mg2+/Co2+) and monovalent (K+) metal ions and one of the product, Pi ions, were found in the active site from three separate structures.
通过使用铀衍生物和该酶的硒代甲硫氨酸形式(SeMAT)进行多同晶置换,已在3.0埃分辨率下确定了来自大肠杆菌的S-腺苷甲硫氨酸合成酶(MAT,ATP:L-甲硫氨酸S-腺苷转移酶,EC 2.5.1.6.)的结构。已发现SeMAT数据(383个氨基酸残基中有9个硒代甲硫氨酸残基)具有足够的相位确定能力,通过将它们与其他重原子衍生物数据(多同晶置换)相结合来确定42,000分子量蛋白质的结构。该酶由四个相同的亚基组成;两个亚基形成一个球形紧密二聚体,这些二聚体对形成一个花生形四聚体酶。每对二聚体有两个位于亚基之间的活性位点。每个亚基由三个通过假3倍对称性相互关联的结构域组成。在三个独立结构的活性位点中发现了必需的二价(Mg2+/Co2+)和一价(K+)金属离子以及一种产物Pi离子。