Distinct reactions catalyzed by bacterial and yeast trans-aconitate methyltransferases

被引:25
作者
Cai, H
Strouse, J
Dumlao, D
Jung, ME
Clarke, S
机构
[1] Univ Calif Los Angeles, Dept Chem & Biochem, Los Angeles, CA 90095 USA
[2] Univ Calif Los Angeles, Inst Mol Biol, Los Angeles, CA 90095 USA
关键词
D O I
10.1021/bi0022902
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
The trans-aconitate methyltransferase from the bacterium Escherichia coli catalyzes the monomethyl esterification of trans-aconitate and related compounds. Using two-dimensional H-1/C-13 nuclear magnetic resonance spectroscopy, we show that the methylation is specific to one of the three carboxyl groups and further demonstrate that the product is the 6-methyl ester of trans-aconitate (E-3-carboxy-2-pentenedioate 6-methyl ester). A similar enzymatic activity is present in the yeast Saccharomyces cerevisiae. Although we find that yeast trans-aconitate methyltransferase also catalyzes the monomethyl esterification of trans-aconitate, we identify that the methylation product of yeast is the 5-methyl ester (E-3-carboxyl-2-pentenedioate 5-methyl ester). The difference in the reaction catalyzed by the two enzymes may explain why a close homologue of the E, coli methyltransferase gene is not found in the yeast genome and furthermore suggests that these two enzymes may play distinct roles. However, we demonstrate here that the conversion of trans-aconitate to each of these products can mitigate its inhibitory effect on aconitase, a key enzyme of the citric acid cycle, suggesting that these methyltransferases may achieve the same physiological function with distinct chemistries.
引用
收藏
页码:2210 / 2219
页数:10
相关论文
共 18 条
[1]   THE EFFECT OF PH ON THE STABILITY OF CIS-ACONITIC ACID IN DILUTE SOLUTION [J].
AMBLER, JA ;
ROBERTS, EJ .
JOURNAL OF ORGANIC CHEMISTRY, 1948, 13 (03) :399-402
[2]   A novel methyltransferase catalyzes the methyl esterification of trans-aconitate in Escherichia coli [J].
Cai, H ;
Clarke, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (19) :13470-13479
[3]  
COIC Y., 1961, ANN INST NATL RECH AGRON SER A ANN PHYSIOL VEG, V3, P87
[4]   Nitric oxide sensitivity of the aconitases [J].
Gardner, PR ;
Costantino, G ;
Szabo, C ;
Salzman, AL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (40) :25071-25076
[5]   STRUCTURAL BASIS FOR ACONITASE ACTIVITY INACTIVATION BY BUTANEDIONE AND BINDING OF SUBSTRATES AND INHIBITORS [J].
GAWRON, O ;
JONES, L .
BIOCHIMICA ET BIOPHYSICA ACTA, 1977, 484 (02) :453-464
[6]   Micro-determination of isocitric and cis-acontic acids in biological material [J].
Krebs, HA ;
Eggleston, LV .
BIOCHEMICAL JOURNAL, 1944, 38 :426-437
[7]   CRYSTAL-STRUCTURES OF ACONITASE WITH ISOCITRATE AND NITROISOCITRATE BOUND [J].
LAUBLE, H ;
KENNEDY, MC ;
BEINERT, H ;
STOUT, CD .
BIOCHEMISTRY, 1992, 31 (10) :2735-2748
[8]   CRYSTAL-STRUCTURES OF ACONITASE WITH TRANS-ACONITATE AND NITROCITRATE BOUND [J].
LAUBLE, H ;
KENNEDY, MC ;
BEINERT, H ;
STOUT, CD .
JOURNAL OF MOLECULAR BIOLOGY, 1994, 237 (04) :437-451
[9]   The mechanism of aconitase:: 1.8 Å resolution crystal structure of the S642A:citrate complex [J].
Lloyd, SJ ;
Lauble, H ;
Prasad, GS ;
Stout, CD .
PROTEIN SCIENCE, 1999, 8 (12) :2655-2662
[10]  
LOWRY OH, 1951, J BIOL CHEM, V193, P265