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首页> 外文期刊>Journal of applied microbiology >The identification of the transcriptional regulator CRP in Aeromonas hydrophila JMP636 and its involvement in amylase production and the 'acidic toxicity' effect
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The identification of the transcriptional regulator CRP in Aeromonas hydrophila JMP636 and its involvement in amylase production and the 'acidic toxicity' effect

机译:嗜水气单胞菌JMP636中转录调节子CRP的鉴定及其在淀粉酶生产中的作用和“酸性毒性”作用

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Aims: The physiological examination of amylase production by Aeromonas hydrophila JMP636 and identification of the mechanism of regulation. Methods and Results: Aeromonas hydrophila JMP636 was grown with single, then dual carbon sources; the growth cycle was followed and amylase activity throughout was monitored. The levels of cAMP, a known secondary messenger for the regulatory gene crp, were also examined. Amylase activity was regulated by catabolite repression. Physiological studies revealed that JMP636 exhibited both diauxic growth, with two carbon sources,a nd the 'acid' toxicity' effect on glucose. The crp gene was cloned, expressed and inactivated from the JMP636 chromosome. Catabolite repression of amylase production and the 'acid toxicity' effect both require crp and were linked to cAMP levels. Conclusions: Regulation of amylase production was predicted to follow the model CRP-medical cAMP-dependent Escherichia coli catabolite regulation system. Significance and Impact of the Study: This work provides an understanding of the physiology of the opportunistic pathogen Aer. hydrophila through identification of the mechanism of catabolite repression of amylase production and the existence of crp within this cell. It also provides a broader knowledge of global gene regulation and suggests regulatory mechanisms of other Aer. hydrophila gene/s.
机译:目的:对嗜水气单胞菌JMP636产生淀粉酶的生理学检查及其调节机制的鉴定。方法和结果:嗜水气单胞菌JMP636是先用单一碳源,然后用双重碳源种植的。跟踪生长周期并监测整个淀粉酶的活性。还检查了cAMP的水平,cAMP是调节基因crp的已知二级信使。淀粉酶活性受分解代谢物阻抑作用调节。生理研究表明,JMP636既表现出双生质生长,又具有两个碳源,并且对葡萄糖具有“酸”毒性。从JMP636染色体克隆,表达和灭活了crp基因。分解酶抑制淀粉酶的产生和“酸中毒”作用都需要crp,并且与cAMP水平有关。结论:预测淀粉酶产生的调节遵循模型CRP-医学cAMP依赖性的大肠杆菌分解代谢物调节系统。研究的意义和影响:这项工作提供了对机会性病原体Aer生理的理解。通过鉴定分解代谢物抑制淀粉酶产生的机制以及该细胞内crp的存在来确定亲水性。它还提供了更广泛的全球基因调控知识,并提出了其他Aer的调控机制。亲水基因

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