EFFECTS OF GROWTH WITH ETHANOL ON FERMENTATION AND MEMBRANE FLUIDITY OF SACCHAROMYCES-CEREVISIAE

被引:71
作者
LLOYD, D
MORRELL, S
CARLSEN, HN
DEGN, H
JAMES, PE
ROWLANDS, CC
机构
[1] ODENSE UNIV,INST BIOCHEM,DK-5230 ODENSE,DENMARK
[2] UNIV WALES COLL MED,DEPT MED MICROBIOL,CARDIFF CF4 4XN,S GLAM,WALES
[3] UNIV WALES COLL CARDIFF,COLL CARDIFF,SCH PURE & APPL CHEM,CARDIFF CF1 3TB,WALES
关键词
RESPIRATION; FERMENTATION; GLYCOLYSIS; CARBON DIOXIDE; MITOCHONDRIA; OXYGEN; ETHANOL TOLERANCE; YEAST; MEMBRANE FLUIDITY; MASS SPECTROMETRY; MICROSOMES; SACCHAROMYCES-CEREVISIAE;
D O I
10.1002/yea.320090803
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Saccharomyces cerevisiae HSc was grown with ethanol at concentrations up to 10% (v/v). The immediate effects of additions of externally added ethanol on CO2 production and O2 consumption of washed organisms were studied by stopped-flow membrane inlet quadrupole mass spectrometry. Fermentative activities of organisms grown with ethanol (0-5% v/v) showed similar sensitivities to inhibition by ethanol, whereas those grown with 10% (v/v) ethanol had become protected and were markedly less sensitive. The fluidity of subcellular membrane fractions was measured by determination of the temperature dependence of the rotational order parameter of the spin label 5-doxyl stearic acid (free radical) by electron spin resonance. Mitochondria prepared from yeasts grown with 0, 7 and 9% (v/v) ethanol showed similar overall fluidity, although differences in temperature-dependent behaviour indicate altered lipid composition or lateral phase separations. On the other hand the microsomal fraction from organisms grown with 9% ethanol showed a remarkable increase in fluidity. These data suggest that the protective effects of growth with ethanol near the limit of tolerance on fermentative activities may arise from altered plasma membrane fluidity properties.
引用
收藏
页码:825 / 833
页数:9
相关论文
共 33 条
[1]  
BEAVEN MJ, 1982, J GEN MICROBIOL, V128, P1447
[2]   THE EFFECT OF TEMPERATURE ON THE ETHANOL TOLERANCE OF THE YEAST, SACCHAROMYCES-UVARUM [J].
BROWN, SW ;
OLIVER, SG .
BIOTECHNOLOGY LETTERS, 1982, 4 (04) :269-274
[3]   EFFECTS OF ALCOHOLS ON THE RESPIRATION AND FERMENTATION OF AERATED SUSPENSIONS OF BAKERS-YEAST [J].
CARLSEN, HN ;
DEGN, H ;
LLOYD, D .
JOURNAL OF GENERAL MICROBIOLOGY, 1991, 137 :2879-2883
[4]  
CARLSEN HN, 1992, THESIS U ODENSE
[5]   ETHANOL TOLERANCE IN YEASTS [J].
CASEY, GP ;
INGLEDEW, WMM .
CRC CRITICAL REVIEWS IN MICROBIOLOGY, 1986, 13 (03) :219-280
[6]  
CHIGNELL CF, 1974, ALDRICHIM ACTA, V7, P1
[7]  
CURTAIN CC, 1984, 18TH P CONV I BREW S, P236
[8]   STOPPED FLOW MASS-SPECTROMETRY - APPLICATIONS TO THE CARBONIC-ANHYDRASE REACTION [J].
DEGN, H ;
KRISTENSEN, B .
JOURNAL OF BIOCHEMICAL AND BIOPHYSICAL METHODS, 1986, 12 (5-6) :305-310
[9]   EFFECTS OF ETHANOL ON THE ESCHERICHIA-COLI PLASMA-MEMBRANE [J].
DOMBEK, KM ;
INGRAM, LO .
JOURNAL OF BACTERIOLOGY, 1984, 157 (01) :233-239
[10]   THE INFLUENCE OF OXYGEN AND ORGANIC HYDROGEN ACCEPTORS ON GLYCOLYTIC CARBON-DIOXIDE PRODUCTION IN BRETTANOMYCES-ANOMALUS [J].
GAUNT, DM ;
DEGN, H ;
LLOYD, D .
YEAST, 1988, 4 (04) :249-255