Wong H C, Lessie T G
Arch Microbiol. 1979 Mar 12;120(3):223-9. doi: 10.1007/BF00423069.
Pseudomonas cepacia grew rapidly using a mixture of all three branched chain amino acids as carbon source, but failed to use individual branched chain amino acids as sole carbon source. Extracts of bacteria grown on branched chain amino acids had between 2- and 3-fold higher levels of alpha-ketoglutarate-dependent branched chain amino acid aminotransferase activity than extracts of glucose-grown bacteria. The increase in enzyme activity was due to the presence of a second aminotransferase not detected in extracts of glucose-grown bacteria. The enzyme, which presumably plays a role in branched chain amino acid degradation, had an apparent molecular weight (mol.wt.) of 75,000. The other aminotransferase was formed constitutively and apparently functions in synthesis of branched chain amino acids. It was more stable than the 75,000 mol.wt. enzyme, and was purified to homogeneity and found to be a 180,000 mol.wt. oligomer containing 6 subunits of approximately 30,000 mol.wt. Antiserum prepared against the purified enzyme inhibited its activity but failed to influence the activity of the 75,000 mol.wt. aminotransferase, suggesting that the two isoenzymes are encoded by different genes.
洋葱伯克霍尔德菌(Pseudomonas cepacia)能够利用所有三种支链氨基酸的混合物作为碳源快速生长,但无法利用单一的支链氨基酸作为唯一碳源。在支链氨基酸上生长的细菌提取物中,α-酮戊二酸依赖性支链氨基酸转氨酶活性比在葡萄糖上生长的细菌提取物高2至3倍。酶活性的增加是由于存在一种在葡萄糖生长细菌提取物中未检测到的第二种转氨酶。该酶可能在支链氨基酸降解中起作用,其表观分子量为75,000。另一种转氨酶是组成型形成的,显然在支链氨基酸的合成中起作用。它比75,000分子量的酶更稳定,被纯化至同质,发现是一种180,000分子量的寡聚体,包含6个约30,000分子量的亚基。针对纯化酶制备的抗血清抑制其活性,但不影响75,000分子量转氨酶的活性,这表明这两种同工酶由不同的基因编码。