Chin N W, Trela J M
J Bacteriol. 1973 May;114(2):674-8. doi: 10.1128/jb.114.2.674-678.1973.
The acetohydroxy-acid synthetases from two extreme bacterial thermophiles, Thermus aquaticus and Bacillus sp., have been studied. The two enzymes have different pH optima, 8 and 6, respectively, and both are feedback inhibited by valine. The inhibition is of interest because it is not expressed below 60 C, but only at higher temperatures which are optimal for catalytic activity. Valine inhibition in T. aquaticus was noncompetitive, whereas in Bacillus sp., it was competitive. Isoleucine (10(-3) M) also inhibited the two enzymes, whereas leucine (10(-3) M) did not. There was no concerted feedback when the amino acids were added in together. The sensitivity of the enzymes to valine could not be removed by HgCl(2). Both enzymes required Mg(2+) and thiamine pyrophosphate for optimal activity, whereas only the enzyme from T. aquaticus required flavine adenine dinucleotide in addition. None of these cofactors was essential for the feedback inhibition caused by valine. The enzymes from both bacteria could be repressed, but only in the presence of all three branched-chain amino acids indicating that, as in Escherichia coli and Salmonella typhimurium, the repression system is multivalent.
对来自两种极端嗜热细菌——嗜热水生栖热菌和芽孢杆菌属的乙酰羟酸合成酶进行了研究。这两种酶具有不同的最适pH值,分别为8和6,并且都受到缬氨酸的反馈抑制。这种抑制作用很有趣,因为它在60℃以下不表现出来,而只在对催化活性最适宜的较高温度下才表现出来。嗜热水生栖热菌中的缬氨酸抑制是非竞争性的,而在芽孢杆菌属中则是竞争性的。异亮氨酸(10⁻³ M)也抑制这两种酶,而亮氨酸(10⁻³ M)则不抑制。当将这些氨基酸一起添加时,不存在协同反馈。HgCl₂不能消除酶对缬氨酸的敏感性。两种酶都需要Mg²⁺和硫胺焦磷酸以达到最佳活性,而只有嗜热水生栖热菌的酶还需要黄素腺嘌呤二核苷酸。这些辅因子对于缬氨酸引起的反馈抑制都不是必需的。两种细菌的酶都可以被阻遏,但只有在所有三种支链氨基酸都存在的情况下才会被阻遏,这表明,与大肠杆菌和鼠伤寒沙门氏菌一样,阻遏系统是多价的。