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至少有四个调控基因控制构巢曲霉中硫代谢物的阻遏作用。

At least four regulatory genes control sulphur metabolite repression in Aspergillus nidulans.

作者信息

Natorff R, Balińska M, Paszewski A

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw.

出版信息

Mol Gen Genet. 1993 Apr;238(1-2):185-92. doi: 10.1007/BF00279546.

Abstract

Mutations in four genes: sconA (formerly suA25meth, mapA25), sconB (formerly mapB1), sconC and sconD, the last two identified in this work, relieve a group of sulphur amino acid biosynthetic enzymes from methionine-mediated sulphur metabolite repression. Exogenous methionine has no effect on sulphate assimilation in the mutant strains, whereas in the wild type it causes almost complete elimination of sulphate incorporation. In both mutant and wild-type strains methionine is efficiently taken up and metabolized to S-adenosylmethionine, homocysteine and other compounds, scon mutants also show elevated levels of folate-metabolizing enzymes which results from the large pool of homocysteine found in these strains. The folate enzymes appear to be inducible by homocysteine and repressible by methionine (or S-adenosylmethionine).

摘要

四个基因发生突变

sconA(原suA25meth、mapA25)、sconB(原mapB1)、sconC和sconD(后两个基因是在本研究中鉴定出来的),可使一组硫氨基酸生物合成酶免受蛋氨酸介导的硫代谢物阻遏。外源性蛋氨酸对突变菌株中的硫酸盐同化没有影响,而在野生型菌株中,它几乎能完全消除硫酸盐的掺入。在突变菌株和野生型菌株中,蛋氨酸都能被有效地摄取并代谢为S-腺苷甲硫氨酸、同型半胱氨酸和其他化合物,scon突变体还表现出叶酸代谢酶水平升高,这是由于在这些菌株中发现了大量的同型半胱氨酸。叶酸酶似乎可被同型半胱氨酸诱导,并被蛋氨酸(或S-腺苷甲硫氨酸)抑制。

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