Steidl S, Papagiannopoulos P, Litzka O, Andrianopoulos A, Davis M A, Brakhage A A, Hynes M J
Department of Genetics, University of Melbourne, Parkville, Victoria 3052, Australia.
Mol Cell Biol. 1999 Jan;19(1):99-106. doi: 10.1128/MCB.19.1.99.
CCAAT binding factors (CBFs) positively regulating the expression of the amdS gene (encoding acetamidase) and two penicillin biosynthesis genes (ipnA and aatA) have been previously found in Aspergillus nidulans. The factors were called AnCF and PENR1, respectively. Deletion of the hapC gene, encoding a protein with significant similarity to Hap3p of Saccharomyces cerevisiae, eliminated both AnCF and PENR1 binding activities. We now report the isolation of the genes hapB and hapE, which encode proteins with central regions of high similarity to Hap2p and Hap5p of S. cerevisiae and to the CBF-B and CBF-C proteins of mammals. An additional fungus-specific domain present in HapE was revealed by comparisons with the homologs from S. cerevisiae, Neurospora crassa, and Schizosaccharomyces pombe. The HapB, HapC, and HapE proteins have been shown to be necessary and sufficient for the formation of a CCAAT binding complex in vitro. Strains with deletions of each of the hapB, hapC, and hapE genes have identical phenotypes of slow growth, poor conidiation, and reduced expression of amdS. Furthermore, induction of amdS by omega amino acids, which is mediated by the AmdR pathway-specific activator, is abolished in the hap deletion mutants, as is growth on gamma-aminobutyric acid as a sole nitrogen or carbon source. AmdR and AnCF bind to overlapping sites in the promoters of the amdS and gatA genes. It is known that AnCF can bind independently of AmdR. We suggest that AnCF binding is required for AmdR binding in vivo.
先前已在构巢曲霉中发现CCAAT结合因子(CBFs),它们可正向调节amdS基因(编码乙酰胺酶)以及两个青霉素生物合成基因(ipnA和aatA)的表达。这些因子分别被称为AnCF和PENR1。编码与酿酒酵母Hap3p具有显著相似性的蛋白质的hapC基因缺失,消除了AnCF和PENR1的结合活性。我们现在报告hapB和hapE基因的分离情况,这两个基因编码的蛋白质的中央区域与酿酒酵母的Hap2p和Hap5p以及哺乳动物的CBF - B和CBF - C蛋白具有高度相似性。通过与酿酒酵母、粗糙脉孢菌和粟酒裂殖酵母的同源物比较,揭示了HapE中存在一个额外的真菌特异性结构域。已证明HapB、HapC和HapE蛋白对于体外形成CCAAT结合复合物是必需且充分的。缺失hapB、hapC和hapE基因中的每一个的菌株具有相同的表型,即生长缓慢、产孢不良以及amdS表达降低。此外,由AmdR途径特异性激活剂介导的ω氨基酸对amdS的诱导在hap缺失突变体中被消除,在以γ-氨基丁酸作为唯一氮源或碳源的培养基上生长也被消除。AmdR和AnCF结合到amdS和gatA基因启动子中的重叠位点。已知AnCF可以独立于AmdR进行结合。我们认为在体内AnCF结合是AmdR结合所必需的。