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首页> 外文期刊>Applied Microbiology and Biotechnology >Changes in intracellular metabolite pools during growth of adherent MDCK cells in two different media
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Changes in intracellular metabolite pools during growth of adherent MDCK cells in two different media

机译:在两种不同培养基中粘附的MDCK细胞生长过程中细胞内代谢产物池的变化

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In bioprocess engineering, the growth of continuous cell lines is mainly studied with respect to the changes in cell concentration, the resulting demand for substrates, and the accumulation of extracellular metabolites. The underlying metabolic process rests upon intracellular metabolite pools and their interaction with enzymes in the form of substrates, products, or allosteric effectors. Here, we quantitatively analyze time courses of 29 intracellular metabolites of adherent Madin-Darby canine kidney cells during cultivation in a serum-containing medium and a serum-free medium. The cells, which originated from the same pre-culture, showed similar overall growth behavior and only slight differences in their demand for the substrates glucose (GLC), glutamine (GLN), and glutamate (GLU). Analysis of intracellular metabolites, which mainly cover the glycolytic pathway, the citric acid cycle, and the nucleotide pools, revealed surprisingly similar dynamics for both cultivation conditions. Instead of a strong influence of the medium, we rather observed a growth phase-specific behavior in glycolysis and in the lower citric acid cycle. Furthermore, analysis of the lower part of glycolysis suggests the wellknown regulation of pyruvate kinase by fructose 1,6- bisphosphate. The upper citric acid cycle (citrate, cis - aconitate, and isocitrate) is apparently uncoupled from the lower part (α-ketoglutarate, succinate, fumarate, and malate), which is in line with the characteristics of a truncated cycle. Decreased adenosine triphosphate and guanosine triphosphate pools, as well as a relatively low energy charge soon after inoculation of cells, indicate a high demand for cellular energy and the consumption of nucleotides for biosynthesis. We finally conclude that, with sufficient availability of substrates, the dynamics of GLC and GLN/ GLU metabolism is influenced mainly by the cellular growth regime and regulatory function of key enzymes.
机译:在生物过程工程中,主要针对细胞浓度的变化,对底物的需求以及细胞外代谢物的积累来研究连续细胞系的生长。潜在的代谢过程取决于细胞内代谢物库及其与底物,产物或变构效应子形式的酶的相互作用。在这里,我们定量分析在含血清培养基和无血清培养基中培养过程中粘附的Madin-Darby犬肾细胞的29种细胞内代谢产物的时程。源自相同预培养的细胞显示出相似的总体生长行为,并且其对底物葡萄糖(GLC),谷氨酰胺(GLN)和谷氨酸(GLU)的需求仅略有不同。细胞内代谢产物的分析主要涵盖糖酵解途径,柠檬酸循环和核苷酸库,揭示了两种培养条件下惊人的相似动力学。除了在培养基中没有强烈影响,我们还观察到在糖酵解和较低柠檬酸循环中特定于生长阶段的行为。此外,对糖酵解下部的分析表明,果糖1,6-双磷酸酯对丙酮酸激酶的调节是众所周知的。较高的柠檬酸循环(柠檬酸,顺式-乌头酸和异柠檬酸)显然与下部(α-酮戊二酸,琥珀酸,富马酸和苹果酸)解偶联,这符合截短循环的特征。接种细胞后不久,三磷酸腺苷和三磷酸鸟苷的含量降低,以及相对较低的能量电荷,表明对细胞能量和用于生物合成的核苷酸消耗的需求很高。我们最终得出结论,在有足够的底物时,GLC和GLN / GLU代谢的动力学主要受细胞生长机制和关键酶调节功能的影响。

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