Müller Philip, Katzenberger Jörg D, Loubradou Gabriel, Kahmann Regine
Max Planck Institute for Terrestrial Microbiology, D-35043 Marburg, Germany.
Eukaryot Cell. 2003 Jun;2(3):609-17. doi: 10.1128/EC.2.3.609-617.2003.
The cyclic AMP (cAMP)-signaling pathway regulates cell morphology and plays a crucial role during pathogenic development of the plant-pathogenic fungus Ustilago maydis. Strains lacking components of this signaling pathway, such as the Galpha-subunit Gpa3 or the adenylyl cyclase Uac1, are nonpathogenic and grow filamentously. On the other hand, strains exhibiting an activated cAMP pathway due to a dominant-active allele of gpa3 display a glossy colony phenotype and are unable to proliferate in plant tumors. Here we present the identification of sql2 as a suppressor of the glossy colony phenotype of a gpa3(Q206L) strain. sql2 encodes a protein with similarity to CDC25-like guanine nucleotide exchange factors, which are known to act on Ras proteins. Overexpression of sql2 leads to filamentous growth that cannot be suppressed by exogenous cAMP, suggesting that Sql2 does not act upstream of Uac1. To gain more insight in signaling processes regulated by Sql2, we isolated two genes encoding Ras proteins. Expression of dominant active alleles of ras1 and ras2 showed that Ras2 induces filamentous growth while Ras1 does not affect cell morphology but elevates pheromone gene expression. These results indicate that Ras1 and Ras2 fulfill different functions in U. maydis. Moreover, observed similarities between the filaments induced by sql2 and ras2 suggest that Sql2 is an activator of Ras2. Interestingly, sql2 deletion mutants are affected in pathogenic development but not in mating, indicating a specific function of sql2 during pathogenesis.
环磷酸腺苷(cAMP)信号通路调节细胞形态,在植物病原真菌玉米黑粉菌的致病发育过程中起关键作用。缺乏该信号通路组分的菌株,如α-亚基Gpa3或腺苷酸环化酶Uac1,无致病性且呈丝状生长。另一方面,由于gpa3的显性活性等位基因而表现出激活的cAMP通路的菌株呈现光滑菌落表型,并且无法在植物肿瘤中增殖。在此,我们鉴定出sql2是gpa3(Q206L)菌株光滑菌落表型的抑制因子。sql2编码一种与CDC25样鸟嘌呤核苷酸交换因子相似的蛋白质,已知该因子作用于Ras蛋白。sql2的过表达导致丝状生长,且不能被外源性cAMP抑制,这表明Sql2不在Uac1的上游起作用。为了更深入了解由Sql2调节的信号传导过程,我们分离出两个编码Ras蛋白的基因。ras1和ras2显性活性等位基因的表达表明,Ras2诱导丝状生长,而Ras1不影响细胞形态,但提高信息素基因表达。这些结果表明,Ras1和Ras2在玉米黑粉菌中发挥不同功能。此外,观察到sql2和ras2诱导的菌丝之间的相似性表明,Sql2是Ras2的激活剂。有趣的是,sql2缺失突变体在致病发育中受到影响,但在交配中不受影响,这表明sql2在致病过程中具有特定功能。