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全基因组筛选增强表达影响大肠杆菌糖原积累的基因。

Genome-wide screening of genes whose enhanced expression affects glycogen accumulation in Escherichia coli.

机构信息

Instituto de Agrobiotecnología, Universidad Pública de Navarra/Gobierno de Navarra/Consejo Superior de Investigaciones Científicas, Mutiloako etorbidea zenbaki gabe, Mutiloabeiti, Nafarroa, Spain.

出版信息

DNA Res. 2010 Apr;17(2):61-71. doi: 10.1093/dnares/dsp028. Epub 2010 Jan 29.

Abstract

Using a systematic and comprehensive gene expression library (the ASKA library), we have carried out a genome-wide screening of the genes whose increased plasmid-directed expression affected glycogen metabolism in Escherichia coli. Of the 4123 clones of the collection, 28 displayed a glycogen-excess phenotype, whereas 58 displayed a glycogen-deficient phenotype. The genes whose enhanced expression affected glycogen accumulation were classified into various functional categories including carbon sensing, transport and metabolism, general stress and stringent responses, factors determining intercellular communication, aggregative and social behaviour, nitrogen metabolism and energy status. Noteworthy, one-third of them were genes about which little or nothing is known. We propose an integrated metabolic model wherein E. coli glycogen metabolism is highly interconnected with a wide variety of cellular processes and is tightly adjusted to the nutritional and energetic status of the cell. Furthermore, we provide clues about possible biological roles of genes of still unknown functions.

摘要

利用一个系统和全面的基因表达文库(ASKA 文库),我们进行了一次全基因组筛选,以确定那些增强质粒指导表达会影响大肠杆菌中糖原代谢的基因。在该文库的 4123 个克隆中,有 28 个表现出糖原过量表型,而 58 个表现出糖原缺乏表型。那些增强表达影响糖原积累的基因被分类为各种功能类别,包括碳感应、运输和代谢、一般应激和严格反应、决定细胞间通讯的因素、聚集和社会行为、氮代谢和能量状态。值得注意的是,其中三分之一是关于功能知之甚少或一无所知的基因。我们提出了一个综合代谢模型,其中大肠杆菌糖原代谢与各种细胞过程高度相互关联,并与细胞的营养和能量状态紧密调节。此外,我们为功能未知的基因的可能生物学作用提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72ab/2853380/37b2f2bd868e/dsp02801.jpg

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