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Global gene expression in recombinant and non-recombinant yeast Saccharomyces cerevisiae in three different metabolic states

机译:在三种不同代谢状态下重组和非重组酵母啤酒酵母中的全局基因表达

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Global gene expression of two strains of Saccharomyces cerevisiae, one recombinant (P+), accumulating large amounts of an intracellular protein Superoxide Dismutase (SOD) and one non-recombinant (P-) which does not contain the recombinant plasmid, were compared in batch culture during diauxic growth when cells were growing exponentially on glucose, when they were growing exponentially on ethanol, and in the early stationary phase when glycerol was being utilized. When comparing the gene expression for P- (and P+) during growth on ethanol to that on glucose (Eth/Gluc), overexpression is related to an increase in consumption of glycerol, activation of the TCA cycle, degradation of glycogen and metabolism of ethanol. Furthermore, 97.6% of genes (80 genes) involved in the central metabolic pathway are overexpressed. This is similar to that observed by DeRisi et al. [DeRisi, J.L., Iyer, V.R. & Brown, P.O. 1997. Exploring the metabolic and genetic control of gene expression on a genomic scale. Science 278:680-686.] but very different from was observed for Metabolic Flux Analysis (MFA), where the specific growth rate is lowered to ca. 40%, the fluxes in the TCA cycle are reduced to ca. 40% (to 30% in P+), glycolysis is reduced to virtually 0 and protein synthesis to ca. 50% (to 40% in P+). Clearly it is not possible to correlate in a simple or direct way, quantitative mRNA expression levels with cell function which is shown by the Metabolic Flux Analysis (MFA). When comparing the two strains in the 3 growth stages, 4 genes were found to be under or overexpressed in all cases. The products of all of these genes are expressed at the plasma membrane or cell wall of the yeast. While comparing the strains (P+/P-) when growing on glucose, ethanol and in the early stationary phase, many of the genes of the central metabolic pathways are underexpressed in P+, which is similar to the behaviour of the metabolic fluxes of both strains (MFA). Comparing the gene expression for P- (and to some extent P+) during the early stationary phase to growth on ethanol (Stat/Eth), underexpression is generalized. This shows that the switch in metabolism between ethanol and early stationary phases has an almost instantaneous effect on gene expression but a much more retarded effect on metabolic fluxes and that the ''early stationary'' phase represents a ''late ethanol'' phase from the metabolic analysis point of view since ethanol is still present and being consumed although at a much slower rate.
机译:在分批培养中比较了两种酿酒酵母菌株的全局基因表达,一种是重组的(P +),积累了大量的细胞内蛋白质超氧化物歧化酶(SOD),另一种是非重组的(P-),其中不含重组质粒。在双生生长期间,当细胞在葡萄糖上成指数生长时,当它们在乙醇上成指数生长时,在静止早期,当使用甘油时。当比较在乙醇和葡萄糖(Eth / Gluc)上生长过程中P-(和P +)的基因表达时,过表达与甘油消耗增加,TCA周期激活,糖原降解和乙醇代谢有关。此外,参与中央代谢途径的基因(80个基因)中有97.6%过表达。这与DeRisi等人观察到的相似。 [DeRisi,J.L.,Iyer,V.R. &Brown,P.O. 1997。在基因组规模上探索基因表达的代谢和遗传控制。 Science 278:680-686。],但与代谢通量分析(MFA)的观察到的情况大不相同,后者的比生长速率降低到了大约1000。 40%时,TCA循环中的通量减少到约。 40%(在P +中为30%),糖酵解作用降低至几乎为0,蛋白质合成降低至约。 50%(在P +中达到40%)。显然,不可能通过代谢通量分析(MFA)以简单或直接的方式将定量的mRNA表达水平与细胞功能相关联。当比较两个菌株在三个生长阶段时,在所有情况下都发现4个基因表达不足或过表达。所有这些基因的产物在酵母的质膜或细胞壁表达。在比较菌株(P + / P-)在葡萄糖,乙醇和静止早期时的生长时,许多中央代谢途径的基因在P +中均表达不足,这与两种菌株的代谢通量的行为相似(MFA)。比较稳态初期P-(在某种程度上为P +)与乙醇生长(Stat / Eth)的基因表达,可以概括表达不足。这表明乙醇和早期固定相之间的代谢转换对基因表达几乎具有瞬时作用,但对代谢通量的抑制作用要弱得多,并且“早期固定”相代表从代谢分析的角度来看,因为乙醇仍然存在并被消耗,尽管速度要慢得多。

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