Blanchin-Roland Sylvie, Costa Grégory Da, Gaillardin Claude
Microbiologie et Génétique Moléculaire, Institut National Agronomique Paris-Grignon, Institut National de la Recherche Agronomique UMR1238, Centre National de la Recherche Scientifique UMR2585, 78850 Thiverval-Grignon, France.
Microbiology (Reading). 2005 Nov;151(Pt 11):3627-3637. doi: 10.1099/mic.0.28196-0.
Ambient pH signalling involves a cascade of conserved Rim or Pal products in ascomycetous yeasts or filamentous fungi, respectively. Insertional mutagenesis in the yeast Yarrowia lipolytica identified two components of the endosome-associated ESCRT-I complex involved in multivesicular body (MVB) vesicle formation, YlVps28p and YlVps23p. They were shown to be required at alkaline pH, like Rim factors, for transcriptional activation of alkaline-induced genes and repression of acid-induced genes. The constitutively active YlRIM101-1119 allele, which suppresses the pH-signalling defects of Ylrim mutations, also suppresses Ylvps defects in pH response, but not in endocytosis. The contribution of the ESCRT-III component Snf7p could not be assessed due to the essential nature of this component in Y. lipolytica. Unlike Rim factors, YlVps4p, a component of the MVB pathway acting downstream from ESCRT complexes, seems not to be required for the alkaline response. In Y. lipolytica, all vps mutations including those affecting YlVPS4, affected growth at acidic pH, a feature not exhibited by Ylrim mutations. These results suggest that Rim and Vps pathways cooperate in ambient pH signalling and that this relation is conserved across the full range of hemiascomycetous yeasts.
环境pH信号传导分别涉及子囊菌酵母或丝状真菌中一系列保守的Rim或Pal产物。在解脂耶氏酵母中进行插入诱变,鉴定出参与多泡体(MVB)囊泡形成的内体相关ESCRT-I复合物的两个组分,即YlVps28p和YlVps23p。结果表明,与Rim因子一样,它们在碱性pH条件下是碱性诱导基因转录激活和酸性诱导基因抑制所必需的。组成型活性YlRIM101-1119等位基因可抑制Ylrim突变的pH信号缺陷,也可抑制pH反应中的Ylvps缺陷,但不能抑制内吞作用中的缺陷。由于解脂耶氏酵母中该组分的必需性质,无法评估ESCRT-III组分Snf7p的作用。与Rim因子不同,MVB途径中位于ESCRT复合物下游起作用的组分YlVps4p似乎不是碱性反应所必需的。在解脂耶氏酵母中,所有vps突变,包括那些影响YlVPS4的突变,都会影响酸性pH条件下的生长,而Ylrim突变则不具有这一特征。这些结果表明,Rim和Vps途径在环境pH信号传导中协同作用,并且这种关系在整个半子囊菌酵母范围内都是保守的。