Iung A R, Coulon J, Kiss F, Ekome J N, Vallner J, Bonaly R
Faculté de Pharmacie-UMR UHP-CNRS 7564-LCPE Biochimie Microbienne, Université Henri Poincaré, Nancy 1, 54001 Nancy Cedex, France.
Appl Environ Microbiol. 1999 Dec;65(12):5398-402. doi: 10.1128/AEM.65.12.5398-5402.1999.
We studied phosphopeptidomannans (PPMs) of two Saccharomyces cerevisiae NCYC 625 strains (S. diastaticus): a wild type strain grown aerobically, anaerobically, and in the presence of antimycin and a [rho(0)] mutant grown aerobically and anaerobically. The aerobic wild-type cultures were highly flocculent, but all others were weakly flocculent. Ligands implicated in flocculation of mutants or antimycin-treated cells were not aggregated as much by concanavalin A as were those of the wild type. The [rho(0)] mutants and antimycin-treated cells differ from the wild type in PPM composition and invertase, acid phosphatase, and glucoamylase activities. PPMs extracted from different cells differ in the protein but not in the glycosidic moiety. The PPMs were less stable in mitochondrion-deficient cells than in wild-type cells grown aerobically, and this difference may be attributable to defective mitochondrial function during cell wall synthesis. The reduced flocculation of cells grown in the presence of antimycin, under anaerobiosis, or carrying a [rho(0)] mutation may be the consequence of alterations of PPM structures which are the ligands of lectins, both involved in this cell-cell recognition phenomenon. These respiratory chain alterations also affect peripheral, biologically active glycoproteins such as extracellular enzymes and peripheral PPMs.
我们研究了两种酿酒酵母NCYC 625菌株(糖化酵母)的磷酸肽甘露聚糖(PPM):一种在需氧、厌氧条件下以及在抗霉素存在下生长的野生型菌株,和一种在需氧和厌氧条件下生长的[rho(0)]突变体。需氧野生型培养物具有高度絮凝性,但其他所有培养物的絮凝性都较弱。与突变体或抗霉素处理细胞的絮凝有关的配体,与野生型的配体相比,被伴刀豆球蛋白A聚集的程度较低。[rho(0)]突变体和抗霉素处理的细胞在PPM组成以及转化酶、酸性磷酸酶和糖化酶活性方面与野生型不同。从不同细胞中提取的PPM在蛋白质方面存在差异,但在糖苷部分没有差异。与需氧生长的野生型细胞相比,PPM在线粒体缺陷细胞中稳定性较差,这种差异可能归因于细胞壁合成过程中线粒体功能的缺陷。在抗霉素存在下、厌氧条件下生长或携带[rho(0)]突变的细胞絮凝性降低,可能是PPM结构改变的结果,PPM是凝集素的配体,两者都参与了这种细胞间识别现象。这些呼吸链改变也会影响外周生物活性糖蛋白,如细胞外酶和外周PPM。