Javascript must be enabled to continue!
Regulation of phosphatidylglycerolphosphate synthase in Saccharomyces cerevisiae by factors affecting mitochondrial development
View through CrossRef
Phosphatidylglycerolphosphate synthase (PGPS; CDP-diacylglycerol glycerol 3-phosphate 3-phosphatidyltransferase; EC 2.7.8.5) catalyzes the first step in the synthesis of cardiolipin, an acidic phospholipid found in the mitochondrial inner membrane. In the yeast Saccharomyces cerevisiae, PGPS expression is coordinately regulated with general phospholipid synthesis and is repressed when cells are grown in the presence of the phospholipid precursor inositol (M. L. Greenberg, S. Hubbell, and C. Lam, Mol. Cell. Biol. 8:4773-4779, 1988). In this study, we examined the regulation of PGPS in growth conditions affecting mitochondrial development (carbon source, growth stage, and oxygen availability) and in strains with genetic lesions affecting mitochondrial function. PGPS derepressed two- to threefold when cells were grown in a nonfermentable carbon source (glycerol-ethanol), and this derepression was independent of the presence of inositol. PGPS derepressed two- to fourfold as cells entered the stationary phase of growth. Stationary-phase derepression occurred in both glucose- and glycerol-ethanol-grown cells and was slightly greater in cells grown in the presence of inositol and choline. PGPS expression in mitochondria was not affected when cells were grown in the absence of oxygen. In mutants lacking mitochondrial DNA [( rho0] mutants), PGPS activity was 30 to 70% less than in isogenic [rho+] strains. PGPS activity in [rho0] strains was subject to inositol-mediated repression. PGPS activity in [rho0] cell extracts was derepressed twofold as the [rho0] cells entered the stationary phase of growth. No growth phase derepression was observed in mitochondrial extracts of the [rho0] cells. Relative cardiolipin content increased in glycerol-ethanol-grown cells but was not affected by growth stage or by growth in the presence of the phospholipid precursors inositol and choline. These results demonstrate that (i) PGPS expression is regulated by factors affecting mitochondrial development; (ii) regulation of PGPS by these factors is independent of cross-pathway control; and (iii) PGPS expression is never fully repressed, even during anaerobic growth.
American Society for Microbiology
Title: Regulation of phosphatidylglycerolphosphate synthase in Saccharomyces cerevisiae by factors affecting mitochondrial development
Description:
Phosphatidylglycerolphosphate synthase (PGPS; CDP-diacylglycerol glycerol 3-phosphate 3-phosphatidyltransferase; EC 2.
7.
8.
5) catalyzes the first step in the synthesis of cardiolipin, an acidic phospholipid found in the mitochondrial inner membrane.
In the yeast Saccharomyces cerevisiae, PGPS expression is coordinately regulated with general phospholipid synthesis and is repressed when cells are grown in the presence of the phospholipid precursor inositol (M.
L.
Greenberg, S.
Hubbell, and C.
Lam, Mol.
Cell.
Biol.
8:4773-4779, 1988).
In this study, we examined the regulation of PGPS in growth conditions affecting mitochondrial development (carbon source, growth stage, and oxygen availability) and in strains with genetic lesions affecting mitochondrial function.
PGPS derepressed two- to threefold when cells were grown in a nonfermentable carbon source (glycerol-ethanol), and this derepression was independent of the presence of inositol.
PGPS derepressed two- to fourfold as cells entered the stationary phase of growth.
Stationary-phase derepression occurred in both glucose- and glycerol-ethanol-grown cells and was slightly greater in cells grown in the presence of inositol and choline.
PGPS expression in mitochondria was not affected when cells were grown in the absence of oxygen.
In mutants lacking mitochondrial DNA [( rho0] mutants), PGPS activity was 30 to 70% less than in isogenic [rho+] strains.
PGPS activity in [rho0] strains was subject to inositol-mediated repression.
PGPS activity in [rho0] cell extracts was derepressed twofold as the [rho0] cells entered the stationary phase of growth.
No growth phase derepression was observed in mitochondrial extracts of the [rho0] cells.
Relative cardiolipin content increased in glycerol-ethanol-grown cells but was not affected by growth stage or by growth in the presence of the phospholipid precursors inositol and choline.
These results demonstrate that (i) PGPS expression is regulated by factors affecting mitochondrial development; (ii) regulation of PGPS by these factors is independent of cross-pathway control; and (iii) PGPS expression is never fully repressed, even during anaerobic growth.
Related Results
Mitochondria Fusion and Fission
Mitochondria Fusion and Fission
Abstract
Mitochondrial structural dynamics is regulated by the fusion or fission of these organelles. Recently published evidence indicates the ...
โครงสร้างและสมบัติเชิงหน้าที่ของบีตากลูแคนที่สกัดจากยีสต์ Saccharomyces ต่างชนิดและสายพันธุ์
โครงสร้างและสมบัติเชิงหน้าที่ของบีตากลูแคนที่สกัดจากยีสต์ Saccharomyces ต่างชนิดและสายพันธุ์
งานวิจัยนี้มีวัตถุประสงค์เพื่อศึกษาโครงสร้างและสมบัติเชิงหน้าที่ของสารสกัดบีตากลูแคนจากยีสต์ Saccharomyces 5 สายพันธุ์ คือ S. bayanus EC1118 S. cerevisiae FT1 S. cerevisiae Fermipa...
Interactions entre levures Saccharomyces cerevisiae et non-Saccharomyces en vinification. : Incidence de facteurs de l’environnement.
Interactions entre levures Saccharomyces cerevisiae et non-Saccharomyces en vinification. : Incidence de facteurs de l’environnement.
Les levures non-Saccharomyces, naturellement présentes dans les moûts, peuvent impacter positivement ou négativement la qualité des vins. Depuis quelques années, l’utilisation de c...
Diversity of Essential oils in Sop Cop Nature Reserve in Sơn La province
Diversity of Essential oils in Sop Cop Nature Reserve in Sơn La province
According the results of the plant species for essential oil in Sop Cop Nature Reserve Area have identified 228 species, 158 genus of 66 families belong Pinophyta and Magnoliophy...
Targeting the ATP Synthase in Staphylococcus aureus Small Colony Variants, Streptococcus pyogenes and Pathogenic Fungi
Targeting the ATP Synthase in Staphylococcus aureus Small Colony Variants, Streptococcus pyogenes and Pathogenic Fungi
The ATP synthase has been validated as a druggable target with the approval of the ATP synthase inhibitor, bedaquiline, for treatment of drug-resistant Mycobacterium tuberculosis, ...
Occurrence and Distribution of Strains of Saccharomyces cerevisiae in China Seas
Occurrence and Distribution of Strains of Saccharomyces cerevisiae in China Seas
The yeast Saccharomyces cerevisiae has been widely applied in fermentation industries, chemical industries and biological research and it is widespread in different environments, e...
Polyhydroxyalkanoate Producing Potential of Saccharomyces cerevisiae
Polyhydroxyalkanoate Producing Potential of Saccharomyces cerevisiae
Polyhydroxyalkanoates (PHAs) are inclusion bodies accumulated by some microorganisms as reserve material under unbalanced growth condition such as limited oxygen, nitrogen, phospho...
PHYSICOCHEMICAL PROPERTIES AND PROXIMATE COMPOSITION OF PANICUM MAXIMUM FERMENTED WITH FUNGI (SACCHAROMYCES CEREVISIAE) AND MOLASSES
PHYSICOCHEMICAL PROPERTIES AND PROXIMATE COMPOSITION OF PANICUM MAXIMUM FERMENTED WITH FUNGI (SACCHAROMYCES CEREVISIAE) AND MOLASSES
Fortification of quality ruminant feed with yeast plays a profound role in improving the physical appearance and proximate compositions of feed thereby promoting feed intake, utili...

