Crystal structures and enzymatic properties of three formyltransferases from archaea: Environmental adaptation and evolutionary relationship

被引:23
作者
Mamat, B
Roth, A
Grimm, C
Ermler, U
Tziatzios, C
Schubert, D
Thauer, RK
Shima, S
机构
[1] Univ Marburg, Fachbereich Biol, Max Planck Inst Terr Mikrobiol, D-35043 Marburg, Germany
[2] Univ Marburg, Fachbereich Biol, Mikrobiol Lab, D-35043 Marburg, Germany
[3] Goethe Univ Frankfurt, Inst Biophys, D-60590 Frankfurt, Germany
[4] Max Planck Inst Biophys, D-60528 Frankfurt, Germany
关键词
formyltransferase; crystal structure; monomer/dimer/tetramer association equilibrium; Methanosarcina barkeri; Methanopyrus kandleri; Archaeoglobus fulgidus; methanogenic archaea; sulfate-reducing archaea;
D O I
10.1110/ps.0211002
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydromethanopterin and methanofuran, a reaction involved in the C1 metabolism of methanogenic and sulfate-reducing archaea. The crystal structure of the homotetrameric enzyme from Methanopyrus kandleri (growth temperature optimum 98degreesC) has recently been solved at 1.65 Angstrom resolution. We report here the crystal structures of the formyltransferase from Methanosarcina barkeri (growth temperature optimum 37degreesC) and from Archaeoglobus fulgidus (growth temperature optimum 83degreesC) at 1.9 Angstrom and 2.0 Angstrom resolution., respectively. Comparison of the structures of the three enzymes revealed very similar folds. The most striking difference found was the negative surface charge, which was -32 for the M. kandleri enzyme, only -8 for the M. barkeri enzyme, and -11 for the A. fulgidus enzyme. The hydrophobic surface fraction was 50% for the M. kandleri enzyme, 56% for the M. barkeri enzyme, and 57% for the A. fulgidus enzyme. These differences most likely reflect the adaptation of the enzyme to different cytoplasmic concentrations of potassium cyclic 2,3-diphosphoglycerate, which are very high in M. kandleri (>1 M) and relatively low in M. barkeri and A. fulgidus. Formyltransferase is in a monomer/dimer/tetramer equilibrium that is dependent on the salt concentration. Only the dimers and tetramers are active, and only the tetramers are thermostable. The enzyme from M. kandleri is a tetramer, which is active and thermostable only at high concentrations of potassium phosphate (>1 M) or potassium cyclic 2,3-diphosphoglycerate. Conversely, the enzyme from M. barkeri and A. fulgidus already showed these properties, activity and stability, at much lower concentrations of these strong salting-out salts.
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收藏
页码:2168 / 2178
页数:11
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