CHARACTERIZATION OF AMINO-ACID AMINOTRANSFERASES OF METHANOCOCCUS-AEOLICUS

被引:37
作者
XING, RY [1 ]
WHITMAN, WB [1 ]
机构
[1] UNIV GEORGIA, DEPT MICROBIOL, ATHENS, GA 30602 USA
关键词
D O I
10.1128/jb.174.2.541-548.1992
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Four aminotransferases were identified and characterized from Methanococcus aeolicus. Branched-chain aminotransferase (BcAT, EC 2.6.1.42), aspartate aminotransferase (AspAT, EC 2.6.1.1), and two aromatic aminotransferases (EC 2.6.1.57) were partially purified 175-, 84-, 600-, and 30-fold, respectively. The apparent molecular weight, substrate specificity, and kinetic properties of the BcAT were similar to those of other microbial BcATs. The AspAT had an apparent molecular weight of 162,000, which was unusually high. It had also a broad substrate specificity, which included activity towards alanine, a property which resembled the enzyme from Sulfolobus solfataricus. An additional alanine aminotransferase was not found in M. aeolicus, and this activity of AspAT could be physiologically significant. The apparent molecular weights of the aromatic aminotransferases (ArAT-I and ArAT-II) were 150,000 and 90,000, respectively. The methanococcal ArATs also had different pIs and kinetic constants. ArAT-I may be the major ArAT in methanococci. High concentrations of 2-ketoglutarate strongly inhibited valine, isoleucine, and alanine transaminations but were less inhibitory for leucine and aspartate transaminations. Aromatic amino acid transaminations were not inhibited by 2-ketoglutarate. 2-Ketoglutarate may play an important role in the regulation of amino acid biosynthesis in methanococci.
引用
收藏
页码:541 / 548
页数:8
相关论文
共 46 条
[1]  
AKI K, 1970, METHODS ENZYMOLOGY A, V17, P807
[2]  
BERG C M, 1990, P131
[3]   GLUTAMATE-OXALOACETATE TRANSAMINASE FROM ESCHERICHIA-COLI .1. PURIFICATION AND SPECIFICITY [J].
CHESNE, S ;
PELMONT, J .
BIOCHIMIE, 1973, 55 (03) :237-244
[4]  
COLEMAN MS, 1971, J BIOL CHEM, V246, P1310
[5]   NONIDENTITY OF ASPARTATE AND AROMATIC AMINOTRANSFERASE COMPONENTS OF TRANSAMINASE-A IN ESCHERICHIA-COLI [J].
COLLIER, RH ;
KOHLHAW, G .
JOURNAL OF BACTERIOLOGY, 1972, 112 (01) :365-&
[6]   CLONING AND SEQUENCING OF THE GENE CODING FOR ASPARTATE-AMINOTRANSFERASE FROM THE THERMOACIDOPHILIC ARCHAEBACTERIUM SULFOLOBUS-SOLFATARICUS [J].
CUBELLIS, MV ;
ROZZO, C ;
NITTI, G ;
ARNONE, MI ;
MARINO, G ;
SANNIA, G .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1989, 186 (1-2) :375-381
[7]   AMINO-ACID BIOSYNTHESIS AND SODIUM-DEPENDENT TRANSPORT IN METHANOCOCCUS-VOLTAE, AS REVEALED BY C-13 NMR [J].
EKIEL, I ;
JARRELL, KF ;
SPROTT, GD .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1985, 149 (02) :437-444
[8]  
Fujioka M, 1970, METHODS ENZYMOLOGY A, V17, P585
[9]   ESCHERICHIA-COLI MUTANTS DEFICIENT IN ASPARTATE AND AROMATIC AMINO-ACID AMINOTRANSFERASES [J].
GELFAND, DH ;
STEINBERG, RA .
JOURNAL OF BACTERIOLOGY, 1977, 130 (01) :429-440
[10]   KINETIC STUDIES OF GLUTAMIC OXALOACETIC TRANSAMINASE ISOZYMES [J].
HENSON, CP ;
CLELAND, WW .
BIOCHEMISTRY, 1964, 3 (03) :338-&