Borges-Walmsley M I, Turner G, Bailey A M, Brown J, Lehmbeck J, Clausen I G
Department of Molecular Biology and Biotechnology, Krebs Institute for Biomolecular Research, University of Sheffield, UK.
Mol Gen Genet. 1995 May 20;247(4):423-9. doi: 10.1007/BF00293143.
A region of the Aspergillus nidulans genome carrying the sA and sC genes, encoding PAPS reductase and ATP sulphurylase, respectively, was isolated by transformation of an sA mutant with a cosmid library. The genes were subcloned and their functions confirmed by retransformation and complementation of A. nidulans strains carrying sA and sC mutations. The physical distance of 2 kb between the genes corresponds to a genetic distance of 1 cM. While the deduced amino acid sequence of the sA gene product shows homology with the equivalent MET16 gene product of Saccharomyces cerevisiae, the sC gene product resembles the equivalent MET3 yeast gene product at the N-terminal end, but differs markedly from it at the C-terminal end, showing homology to the APS kinases of several microorganisms. It is proposed that this C-terminal region does not encode a functional APS kinase, but is responsible for allosteric regulation by PAPS of the sulphate assimilation pathway in A. nidulans, and that the ATP sulphurylase encoding-gene (sC) of filamentous ascomycetes may have evolved from a bifunctional gene similar to the nodQ gene of Rhizobium meliloti.
通过用黏粒文库转化sA突变体,分离出了构巢曲霉基因组中携带分别编码PAPS还原酶和ATP硫酸化酶的sA和sC基因的区域。这些基因被亚克隆,并通过对携带sA和sC突变的构巢曲霉菌株进行再转化和互补来确认其功能。基因之间2 kb的物理距离对应于1 cM的遗传距离。虽然sA基因产物推导的氨基酸序列与酿酒酵母的等效MET16基因产物显示出同源性,但sC基因产物在N端类似于等效的酵母MET3基因产物,但在C端与它明显不同,与几种微生物的APS激酶显示出同源性。有人提出,这个C端区域不编码功能性的APS激酶,而是负责构巢曲霉中硫酸盐同化途径由PAPS进行的变构调节,并且丝状子囊菌的ATP硫酸化酶编码基因(sC)可能是从类似于苜蓿根瘤菌nodQ基因的双功能基因进化而来的。