Functional role of fatty acyl-coenzyme A synthetase in the transmembrane movement and activation of exogenous long-chain fatty acids -: Amino acid residues within the ATP/AMP signature motif of Escherichia coli FadD are required for enzyme activity and fatty acid transport

被引:113
作者
Weimar, JD [1 ]
DiRusso, CC [1 ]
Delio, R [1 ]
Black, PN [1 ]
机构
[1] Albany Med Coll, Ctr Cardiovasc Sci, Albany, NY 12208 USA
关键词
D O I
10.1074/jbc.M107022200
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
Fatty acyl-CoA synthetase (FACS, fatty acid:CoA ligase, AMP forming; EC 6.2.1.3) plays a central role in intermediary metabolism by catalyzing the formation of fatty acyl-CoA. In Escherichia coli this enzyme, encoded by the fadD gene, is required for the coupled import and activation of exogenous long-chain fatty acids. The E. coli FACS (FadD) contains two sequence elements, which comprise the ATP/AMP signature motif ((213)YTGGTTGVAKGA(224) and (356)GYGLTE(361)) placing it in the superfamily of adenylate-forming enzymes. A series of site-directed mutations were generated in the fadD gene within the ATP/AMP signature motif site to evaluate the role of this conserved region to enzyme function and to fatty acid transport. This approach revealed two major classes of fadD mutants with depressed enzyme activity: 1) those with 25-45% wild type activity (fadD(G216A), fadD(T217A), fadD(G219A), and fadD(K222A)) and 2) those with 10% or less wild-type activity (fadD(Y213A), fadD(T214A), and fadD(E361A)). Using anti-FadD sera, Western blots demonstrated the different mutant forms of FadD that were present and had localization patterns equivalent to the wild type. The defect in the first class was attributed to a reduced catalytic efficiency although several mutant forms also had a reduced affinity for ATP. The mutations resulting in these biochemical phenotypes reduced or essentially eliminated the transport of exogenous long-chain fatty acids. These data support the hypothesis that the FACS FadD functions in the vectorial movement of exogenous fatty acids across the plasma membrane by acting as a metabolic trap, which results in the formation of acyl-CoA esters.
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收藏
页码:29369 / 29376
页数:8
相关论文
共 46 条
[1]   Energetics underlying the process of long-chain fatty acid transport [J].
Azizan, A ;
Sherin, D ;
DiRusso, CC ;
Black, PN .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1999, 365 (02) :299-306
[2]   Affinity labeling fatty acyl-CoA synthetase with 9-p-azidophenoxy nonanoic acid and the identification of the fatty acid-binding site [J].
Black, PN ;
DiRusso, CC ;
Sherin, D ;
MacColl, R ;
Knudsen, J ;
Weimar, JD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (49) :38547-38553
[3]   EVIDENCE THAT HIS(110) OF THE PROTEIN FADL IN THE OUTER-MEMBRANE OF ESCHERICHIA-COLI IS INVOLVED IN THE BINDING AND UPTAKE OF LONG-CHAIN FATTY-ACIDS - POSSIBLE ROLE OF THIS RESIDUE IN CARBOXYLATE BINDING [J].
BLACK, PN ;
ZHANG, Q .
BIOCHEMICAL JOURNAL, 1995, 310 :389-394
[4]   Long-chain acyl-CoA-dependent regulation of gene expression in bacteria, yeast and mammals [J].
Black, PN ;
Færgeman, NJ ;
DiRusso, CC .
JOURNAL OF NUTRITION, 2000, 130 (02) :305S-309S
[5]  
BLACK PN, 1992, J BIOL CHEM, V267, P25513
[6]   Mutational analysis of a fatty acyl-coenzyme A synthetase signature motif identifies seven amino acid residues that modulate fatty acid substrate specificity [J].
Black, PN ;
Zhang, Q ;
Weimar, JD ;
DiRusso, CC .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (08) :4896-4903
[7]   POTENTIATION OF DIACYLGLYCEROL-ACTIVATED PROTEIN KINASE-C BY ACYL-COENZYME A THIOESTERS OF HYPOLIPEMIC DRUGS [J].
BRONFMAN, M ;
ORELLANA, A ;
MORALES, MN ;
BIERI, F ;
WAECHTER, F ;
STAUBLI, W ;
BENTLEY, P .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1989, 159 (03) :1026-1031
[8]   Determination of the chemical pathway for 4-chlorobenzoate: Coenzyme a ligase catalysis [J].
Chang, KH ;
DunawayMariano, D .
BIOCHEMISTRY, 1996, 35 (41) :13478-13484
[9]   Acyl-adenylate motif of the acyl-adenylate/thioester-forming enzyme superfamily:: A site-directed mutagenesis study with the Pseudomonas sp. strain CBS3 4-chlorobenzoate:coenzyme A ligase [J].
Chang, KH ;
Xiang, H ;
Dunaway-Mariano, D .
BIOCHEMISTRY, 1997, 36 (50) :15650-15659