Hulanicka M D, Kradich N M
Mol Gen Genet. 1976 Oct 18;148(2):143-8. doi: 10.1007/BF00268378.
A 1,2,4-triazole resistant mutant of S. typhimurium has been isolated, in which serine transacetylase activity is seven times higher than in wild type. Partially purified serine transacetylase from a strain carrying the trz-312 mutation has kinetic properties which are virtually identical to those of the wild type enzyme and binds to O-acetylserine sulfhydrylase A to form a cysteine synthetase complex which is also indistinguishable from that found in wild type. Thus the increased activity of serine transacetylase associated with trz-312 appears to result from increased quantities of a kinetically normal, enzyme protein. Resistance to 1,2,4-triazole is probably due to the ability of trz-312 strains to synthesize O-acetyl-L-serine at a rapid enough rate to compensate for that utilized by the O-acetylserine triazolylase reaction. Genetic mapping experiments, using P1-mediated transduction, show that trz-312 is 91-99% linked to cysE, the structural gene for serine transacetylase. The results of three point crosses indicate that this mutation is located at one extreme end of the cysE locus, as would be expected for a promotor mutation.
已分离出鼠伤寒沙门氏菌的一株对1,2,4 - 三唑有抗性的突变体,其中丝氨酸转乙酰酶活性比野生型高7倍。从携带trz - 312突变的菌株中部分纯化的丝氨酸转乙酰酶具有与野生型酶几乎相同的动力学性质,并且与O - 乙酰丝氨酸巯基酶A结合形成半胱氨酸合成酶复合物,该复合物也与野生型中发现的复合物没有区别。因此,与trz - 312相关的丝氨酸转乙酰酶活性增加似乎是由于动力学正常的酶蛋白数量增加所致。对1,2,4 - 三唑的抗性可能是由于trz - 312菌株能够以足够快的速度合成O - 乙酰 - L - 丝氨酸,以补偿O - 乙酰丝氨酸三唑酶反应所利用的量。使用P1介导的转导进行的遗传图谱实验表明,trz - 312与丝氨酸转乙酰酶的结构基因cysE有91 - 99%的连锁。三点杂交的结果表明,这种突变位于cysE基因座的一个极端末端,这正如启动子突变所预期的那样。