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Proteomic analysis of Clostridium thermocellum core metabolism: relative protein expression profiles and growth phase-dependent changes in protein expression

机译:梭状芽胞杆菌核心代谢的蛋白质组学分析:相对蛋白质表达谱和蛋白质表达的生长阶段依赖性变化

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摘要

BackgroundClostridium thermocellum produces H2 and ethanol, as well as CO2, acetate, formate, and lactate, directly from cellulosic biomass. It is therefore an attractive model for biofuel production via consolidated bioprocessing. Optimization of end-product yields and titres is crucial for making biofuel production economically feasible. Relative protein expression profiles may provide targets for metabolic engineering, while understanding changes in protein expression and metabolism in response to carbon limitation, pH, and growth phase may aid in reactor optimization. We performed shotgun 2D-HPLC-MS/MS on closed-batch cellobiose-grown exponential phase C. thermocellum cell-free extracts to determine relative protein expression profiles of core metabolic proteins involved carbohydrate utilization, energy conservation, and end-product synthesis. iTRAQ (isobaric tag for relative and absolute quantitation) based protein quantitation was used to determine changes in core metabolic proteins in response to growth phase.
机译:背景技术热纤梭菌直接从纤维素生物质中产生H2和乙醇,以及CO2,乙酸盐,甲酸盐和乳酸盐。因此,这是通过合并生物处理生产生物燃料的有吸引力的模型。最终产品产量和滴度的优化对于使生物燃料生产在经济上可行至关重要。相对蛋白表达谱可为代谢工程提供目标,同时了解响应碳限制,pH和生长期的蛋白表达和代谢变化可能有助于优化反应器。我们对封闭批次纤维二糖生长的指数相C进行了gun弹枪2D-HPLC-MS / MS。热纤维素无细胞提取物来确定核心代谢蛋白的相对蛋白表达谱,涉及碳水化合物利用,能量节约和最终产物合成。基于iTRAQ(相对和绝对定量的等压标记)的蛋白质定量用于确定响应于生长期的核心代谢蛋白质的变化。

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