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构巢曲霉中乙酸盐非利用(acu)突变体的分析。

Analysis of acetate non-utilizing (acu) mutants in Aspergillus nidulans.

作者信息

Armitt S, McCullough W, Roberts C F

出版信息

J Gen Microbiol. 1976 Feb;92(2):263-82. doi: 10.1099/00221287-92-2-263.

Abstract

Genetic analysis of 119 acetate non-utilizing (acu) mutants in Aspergillus nidulans revealed ten new loci affecting acetate metabolism in addition to the three previously recognized on the basis of resistance to fluoroacetate and acetate non-utilization. The enzyme lesions associated with mutations at seven of the acu loci are described. These are: facA (= acuA), acetyl-CoA synthase; acuD, isocitrate lyase; acuE, malate synthase; acuF, phosphoenolpyruvate carboxykinase; acuG, fructose 1,6-diphosphatase; acuK and acuM, malic enzyme. The acu loci have been mapped and are widely distributed over the genome of A. nidulans. Close linkage has only been found between acuA and acuD (less than 1% recombination). There is no evidence for any pleiotropic mutation in that region affecting the expression of both these genes. Poor induction of the enzymes of the glyoxylate cycle, isocitrate lyase and malate synthase in mutants lacking acetyl-CoA synthase, and also in the other two classes of fluoroacetate-resistant mutants, indicates that the inducer, acetate, may be metabolized to a true metabolic inducer, perhaps acetyl-CoA, to effect formation of the enzymes. There is no evidence of any other class of pleiotropic recessive acu mutations affecting the expression of the acuD and acuE genes, which are therefore thought to be subject to negative rather than positive control.

摘要

对构巢曲霉中119个不利用乙酸盐(acu)的突变体进行遗传分析后发现,除了先前基于对氟乙酸盐的抗性和不利用乙酸盐而识别出的三个位点外,还有十个影响乙酸盐代谢的新位点。描述了与七个acu位点突变相关的酶损伤。它们分别是:facA(= acuA),乙酰辅酶A合成酶;acuD,异柠檬酸裂解酶;acuE,苹果酸合酶;acuF,磷酸烯醇式丙酮酸羧激酶;acuG,果糖1,6 - 二磷酸酶;acuK和acuM,苹果酸酶。已对acu位点进行了定位,它们广泛分布在构巢曲霉的基因组中。仅在acuA和acuD之间发现紧密连锁(重组率小于1%)。没有证据表明该区域存在影响这两个基因表达的任何多效性突变。在缺乏乙酰辅酶A合成酶的突变体以及其他两类抗氟乙酸盐突变体中,乙醛酸循环的酶、异柠檬酸裂解酶和苹果酸合酶的诱导作用较差,这表明诱导剂乙酸盐可能被代谢为真正的代谢诱导剂,也许是乙酰辅酶A,以影响这些酶的形成。没有证据表明存在任何其他影响acuD和acuE基因表达的多效性隐性acu突变,因此认为它们受到负调控而非正调控。

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