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酵母opi1调控突变的多效性效应:其对生长以及磷脂和肌醇代谢的影响。

Pleiotropic effects of the opi1 regulatory mutation of yeast: its effects on growth and on phospholipid and inositol metabolism.

作者信息

Jiranek Vladimir, Graves J Anthony, Henry Susan A

机构信息

Department of Horticulture, Viticulture and Oenology, University of AdelaideWaite Campus, PMB 1, Glen Osmond, SA 5064AustraIia.

Department of Biological Sciences, Carnegie Mellon University4400 Fifth Avenue, Pittsburgh, PA 15213USA.

出版信息

Microbiology (Reading). 1998 Oct;144 ( Pt 10):2739-2748. doi: 10.1099/00221287-144-10-2739.

Abstract

Key factors which impact on the biosynthesis and subsequent fate of the phospholipid precursor inositol were studied as a function of growth phase in the yeast Saccharomyces cerevisiae. Both wild-type and strains disrupted for the OPI1 gene, the principal negative regulator of the phospholipid biosynthetic genes, were examined. Overexpression of the INO1 gene and overproduction of both inositol and the major inositol-containing phospholipid, phosphatidylinositol, varied as a function of growth phase. In opi1 cells, INO1 expression was constitutive at a high level throughout growth, although the level of transcript was reduced at stationary phase when the cells were grown in defined medium. In the wild-type strain, INO1 expression was limited to a peak in the exponential phase of growth in cells grown in the absence of inositol. Interestingly, the pattern of OPI1 expression in the wild-type strain resembled that of its putative target, INO1. Intracellular inositol contents of the opi1 strain were higher than those of the wild-type strain, with peak levels occurring in the stationary phase. Membrane phosphatidylinositol content paralleled intracellular inositol content, with opi1 strains having a higher phosphatidylinositol content in stationary phase. The proportion of the predominant phospholipid, phosphatidylcholine, exhibited a profile that was the inverse of the phosphatidylinositol content: phosphatidylcholine content was lowest in opi1 cells in stationary phase. The opi1 mutation was also found to have effects beyond phospholipid biosynthesis. opi1 cells were smaller, and opi1 cultures achieved a cell density twice as high as comparable wild-type cultures. opi1 cells were also more salt tolerant than wild-type cells: they were partly resistant to shrinking, more rapidly resumed growth, and attained a higher culture density after upshift to medium supplemented with 8% NaCl.

摘要

研究了影响磷脂前体肌醇生物合成及其后续去向的关键因素,这些因素是酿酒酵母生长阶段的函数。研究对象包括野生型酵母以及磷脂生物合成基因的主要负调控因子OPI1基因被破坏的菌株。INO1基因的过表达以及肌醇和主要含肌醇磷脂磷脂酰肌醇的过量产生均随生长阶段而变化。在opi1细胞中,INO1表达在整个生长过程中都处于高水平的组成型表达,尽管当细胞在限定培养基中生长至稳定期时,转录本水平会降低。在野生型菌株中,INO1表达仅限于在无肌醇条件下生长的细胞指数生长期达到峰值。有趣的是,野生型菌株中OPI1的表达模式与其假定靶点INO1的表达模式相似。opi1菌株的细胞内肌醇含量高于野生型菌株,峰值出现在稳定期。膜磷脂酰肌醇含量与细胞内肌醇含量平行,opi1菌株在稳定期的磷脂酰肌醇含量更高。主要磷脂磷脂酰胆碱的比例呈现出与磷脂酰肌醇含量相反的分布:在稳定期,opi1细胞中的磷脂酰胆碱含量最低。还发现opi1突变对磷脂生物合成之外的过程也有影响。opi1细胞较小,opi1培养物达到的细胞密度是可比野生型培养物的两倍。opi1细胞也比野生型细胞更耐盐:它们部分抵抗收缩,能更快恢复生长,并且在转移到添加8% NaCl的培养基后能达到更高的培养密度。

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