Grant S, Roberts C F, Lamb H, Stout M, Hawkins A R
Department of Genetics, University, Leicester, UK.
J Gen Microbiol. 1988 Feb;134(2):347-58. doi: 10.1099/00221287-134-2-347.
A large number of quinic acid non-utilizing qut mutants of Aspergillus nidulans deficient in the induction of all three quinic acid specific enzymes have been analysed. One class the qutD mutants, are all recessive and are non-inducible at pH 6.5 due to inferred deficiency in a quinate ion permease. Two regulatory genes have been identified. The QUTA gene encodes an activator protein since most qutA mutants are recessive and non-inducible although a few fully dominant mutants have been found. The QUTR gene encodes a repressor protein since recessive mutations are constitutive for all three enzyme activities. Rare dominant non-inducible mutants which revert readily to yield a high proportion of constitutive strains are inferred to be qutR mutants defective in binding the inducer. The gene cluster has been mapped in the right arm of chromosome VIII in the order: centromere - greater than 50 map units - ornB - 12 map units - qutC (dehydratase)-0.8 map units-qutD (permease), qutB (dehydrogenase), qutE (dehydroquinase), qutA (activator)-4.4 map units - qutR (repressor)-20 map units - galG. This organization differs from that of the qa gene cluster in Neurospora crassa, particularly in the displacement of qutC and qutR.
对大量构巢曲霉的奎尼酸非利用型qut突变体进行了分析,这些突变体缺乏所有三种奎尼酸特异性酶的诱导。其中一类是qutD突变体,均为隐性,由于推测奎尼酸离子通透酶缺乏,在pH 6.5时不可诱导。已鉴定出两个调控基因。QUTA基因编码一种激活蛋白,因为大多数qutA突变体是隐性且不可诱导的,尽管发现了一些完全显性的突变体。QUTR基因编码一种阻遏蛋白,因为隐性突变对所有三种酶活性都是组成型的。罕见的显性不可诱导突变体很容易回复,产生高比例的组成型菌株,推测是在结合诱导剂方面有缺陷的qutR突变体。该基因簇已定位在第八条染色体右臂上,顺序为:着丝粒-大于50个图距-ornB-12个图距-qutC(脱水酶)-0.8个图距-qutD(通透酶)、qutB(脱氢酶)、qutE(脱氢奎尼酸酶)、qutA(激活剂)-4.4个图距-qutR(阻遏蛋白)-20个图距-galG。这种组织方式与粗糙脉孢菌中的qa基因簇不同,特别是qutC和qutR的位置不同。