D'Souza C A, Lee B N, Adams T H
Department of Biology, Texas A&M University, College Station, Texas 77843, USA.
Genetics. 2001 Jul;158(3):1027-36. doi: 10.1093/genetics/158.3.1027.
We showed previously that a DeltafluG mutation results in a block in Aspergillus nidulans asexual sporulation and that overexpression of fluG activates sporulation in liquid-submerged culture, a condition that does not normally support sporulation of wild-type strains. Here we demonstrate that the entire N-terminal region of FluG ( approximately 400 amino acids) can be deleted without affecting sporulation, indicating that FluG activity resides in the C-terminal half of the protein, which bears significant similarity with GSI-type glutamine synthetases. While FluG has no apparent role in glutamine biosynthesis, we propose that it has an enzymatic role in sporulation factor production. We also describe the isolation of dominant suppressors of DeltafluG(dsg) that should identify components acting downstream of FluG and thereby define the function of FluG in sporulation. The dsgA1 mutation also suppresses the developmental defects resulting from DeltaflbA and dominant activating fadA mutations, which both cause constitutive induction of the mycelial proliferation pathway. However, dsgA1 does not suppress the negative influence of these mutations on production of the aflatoxin precursor, sterigmatocystin, indicating that dsgA1 is specific for asexual development. Taken together, our studies define dsgA as a novel component of the asexual sporulation pathway.
我们之前表明,DeltafluG突变会导致构巢曲霉无性孢子形成受阻,并且fluG的过表达会在液体深层培养中激活孢子形成,而这种条件通常不支持野生型菌株的孢子形成。在此我们证明,FluG的整个N端区域(约400个氨基酸)可以被删除而不影响孢子形成,这表明FluG的活性存在于该蛋白质的C端一半区域,该区域与GSI型谷氨酰胺合成酶具有显著相似性。虽然FluG在谷氨酰胺生物合成中没有明显作用,但我们推测它在孢子形成因子产生中具有酶促作用。我们还描述了DeltafluG(dsg)显性抑制子的分离,这些抑制子应该能鉴定出在FluG下游起作用的成分,从而确定FluG在孢子形成中的功能。dsgA1突变也抑制了由DeltaflbA和显性激活fadA突变导致的发育缺陷,这两种突变都会导致菌丝体增殖途径的组成型诱导。然而,dsgA1并不抑制这些突变对黄曲霉毒素前体柄曲霉素产生的负面影响,这表明dsgA1对无性发育具有特异性。综上所述,我们的研究将dsgA定义为无性孢子形成途径的一个新成分。