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Citrobacter amalonaticus Y19 for constitutive expression of carbon monoxide-dependent hydrogen-production machinery

机译:柠檬酸杆菌Y19用于一氧化碳依赖性制氢设备的组成型表达

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摘要

Background: Citrobacter amalonaticus Y19 is a good biocatalyst for production of hydrogen (H-2) from oxidation of carbon monoxide (CO) via the so-called water-gas-shift reaction (WGSR). It has a high H-2-production activity (23.83 mmol H-2 g(-1) cell h(-1)) from CO, and can grow well to a high density on various sugars. However, its H-2-production activity is expressed only when CO is present as an inducer and in the absence of glucose. Results: In order to avoid dependency on CO and glucose, in the present study, the native CO-inducible promoters of WGSR operons (CO dehydrogenase, CODH, and CODH-dependent hydrogenase, CO-hyd) in Y19 were carefully analyzed and replaced with strong and constitutive promoters screened from Y19. One engineered strain (Y19-PR1), selected from three positive ones after screening similar to 10,000 colonies, showed a similar CO-dependent H-2-production activity to that of wild-type Y19, without being affected by glucose and/or CO. Compared with wild-type Y19, transcription of the CODH operon in Y19-PR1 increased 1.5-fold, although that of the CO-hyd operon remained at a similar level. To enhance the activity of CO-Hyd in Y19-PR1, further modifications, including an increase in gene copy number and engineering of the 5' untranslated region, were attempted, but without success. Conclusions: Convenient recombinant Y19-PR1 that expresses CO-dependent H-2-production activity without being limited by CO and glucose was obtained.
机译:背景:柠檬酸杆菌Y19是一种优良的生物催化剂,可通过所谓的水煤气变换反应(WGSR)由一氧化碳(CO)氧​​化生成氢气(H-2)。它具有高的H-2-生产活性(23.83 mmol H-2 g(-1)细胞h(-1)),并且可以在各种糖上很好地生长到高密度。然而,仅当CO作为诱导剂存在且不存在葡萄糖时,才表达其H-2-产生活性。结果:为了避免依赖于CO和葡萄糖,在本研究中,仔细分析了Y19中WGSR操纵子的天然CO诱导型启动子(CO脱氢酶,CODH和CODH依赖性氢化酶,CO-hyd),并替换为从Y19筛选出强大的组成型启动子。在筛选了大约10,000个菌落后,从三个阳性菌株中选出的一种工程菌株(Y19-PR1)与野生型Y19具有相似的CO依赖性H-2-产生活性,而不受葡萄糖和/或CO的影响与野生型Y19相比,Y19-PR1中CODH操纵子的转录增加了1.5倍,尽管CO-hyd操纵子的转录保持在相似的水平。为了增强Y19-PR1中CO-Hyd的活性,尝试了进一步的修饰,包括基因拷贝数的增加和5'非翻译区的工程改造,但是没有成功。结论:获得了表达不受CO和葡萄糖限制的表达CO依赖性H-2-产生活性的方便的重组Y19-PR1。

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