Loubradou G, Brachmann A, Feldbrügge M, Kahmann R
Institut für Genetik und Mikrobiologie der Universität München, Maria-Ward-Str. 1a, D-80638 München, Germany.
Mol Microbiol. 2001 May;40(3):719-30. doi: 10.1046/j.1365-2958.2001.02424.x.
In Ustilago maydis, cAMP signalling is crucial for successful infection of maize plants. Strains are non-pathogenic if mutated in any of the currently identified components of this signalling pathway, such as the alpha-subunit of a heterotrimeric G protein Gpa3, the adenylate cyclase Uac1 and the regulatory and catalytic subunit of protein kinase A Ubc1 and Adr1 respectively. Deletion of gpa3, uac1 or adr1 triggers filamentous growth, and certain point mutations in gpa3 and ubc1 that mimic a high cAMP level display a glossy colony phenotype. Screening an autonomously replicating U. maydis library in such a background (gpa3Q206L), we identified sql1 as a suppressor of the glossy colony phenotype. Interestingly, only alleles carrying C-terminal truncations of Sql1 were able to complement the mutant phenotype, suggesting a gain-of-function by these variants. Sql1 is a functional homologue of the yeast transcriptional repressor Ssn6p and contains 10 tetratricopeptide repeats (TPRs), of which the first six are important for suppressor function. Truncated sql1 alleles that suppress the glossy colony phenotype of gpa3Q206L strains induce filamentous growth when introduced in wild type. Filamentation of these strains is reversed in the presence of cAMP. We present a model in which Sql1 is part of an evolutionary conserved Sql1-Tup1 transcriptional repressor complex that antagonizes cAMP signalling by repressing cAMP-regulated genes.
在玉米黑粉菌中,cAMP信号传导对于成功侵染玉米植株至关重要。如果该信号通路中目前已确定的任何组分发生突变,菌株就会失去致病性,这些组分比如异源三聚体G蛋白Gpa3的α亚基、腺苷酸环化酶Uac1以及蛋白激酶A的调节亚基和催化亚基Ubc1和Adr1。缺失gpa3、uac1或adr1会引发丝状生长,并且gpa3和ubc1中某些模拟高cAMP水平的点突变会表现出光滑菌落表型。在这样的背景(gpa3Q206L)下筛选自主复制的玉米黑粉菌文库,我们鉴定出sql1是光滑菌落表型的一个抑制子。有趣的是,只有携带Sql1 C末端截短的等位基因能够互补突变体表型,这表明这些变体具有功能获得性。Sql1是酵母转录阻遏物Ssn6p的功能同源物,包含10个四肽重复序列(TPR),其中前六个对于抑制子功能很重要。抑制gpa3Q206L菌株光滑菌落表型的截短sql1等位基因在导入野生型时会诱导丝状生长。这些菌株的丝状生长在有cAMP存在时会逆转。我们提出一个模型,其中Sql1是进化保守的Sql1-Tup1转录阻遏物复合物的一部分,该复合物通过抑制cAMP调节的基因来拮抗cAMP信号传导。