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大肠杆菌生物膜中CP4-57原噬菌体切除的控制与益处

Control and benefits of CP4-57 prophage excision in Escherichia coli biofilms.

作者信息

Wang Xiaoxue, Kim Younghoon, Wood Thomas K

机构信息

Artie McFerrin Department of Chemical Engineering, Texas A&M University, College Station, TX 77843-3122, USA.

出版信息

ISME J. 2009 Oct;3(10):1164-79. doi: 10.1038/ismej.2009.59. Epub 2009 May 21.

Abstract

Earlier, we discovered that the global regulator, Hha, is related to cell death in biofilms and regulates cryptic prophage genes. Here, we show that Hha induces excision of prophages, CP4-57 and DLP12, by inducing excision genes and by reducing SsrA synthesis. SsrA is a tmRNA that is important for rescuing stalled ribosomes, contains an attachment site for CP4-57 and is shown here to be required for CP4-57 excision. These prophages impact biofilm development, as the deletion of 35 genes individually of prophages, CP4-57 and DLP12, increase biofilm formation up to 17-fold, and five genes decrease biofilm formation up to sixfold. In addition, CP4-57 excises during early biofilm development but not in planktonic cells, whereas DLP12 excision was detected at all the developmental stages for both biofilm and planktonic cells. CP4-57 excision leads to a chromosome region devoid of prophage and to the formation of a phage circle (which is lost). These results were corroborated by a whole-transcriptome analysis that showed that complete loss of CP4-57 activated the expression of the flg, flh and fli motility operons and repressed expression of key enzymes in the tricarboxylic acid cycle and of enzymes for lactate utilization. Prophage excision also results in the expression of cell lysis genes that reduce cell viability (for example, alpA, intA and intD). Hence, defective prophages are involved in host physiology through Hha and in biofilm formation by generating a diversified population with specialized functions in terms of motility and nutrient metabolism.

摘要

此前,我们发现全局调控因子Hha与生物膜中的细胞死亡相关,并调控隐蔽原噬菌体基因。在此,我们表明Hha通过诱导切除基因和减少SsrA合成来诱导原噬菌体CP4-57和DLP12的切除。SsrA是一种tmRNA,对拯救停滞的核糖体很重要,含有CP4-57的附着位点,并且在此显示是CP4-57切除所必需的。这些原噬菌体影响生物膜发育,因为分别缺失原噬菌体CP4-57和DLP12的35个基因会使生物膜形成增加多达17倍,而5个基因会使生物膜形成减少多达6倍。此外,CP4-57在生物膜早期发育过程中切除,但在浮游细胞中不切除,而DLP12的切除在生物膜和浮游细胞的所有发育阶段均被检测到。CP4-57切除导致一个不含原噬菌体的染色体区域,并形成一个噬菌体环(随后丢失)。全转录组分析证实了这些结果,该分析表明CP4-57的完全缺失激活了鞭毛、鞭毛形成和鞭毛运动操纵子的表达,并抑制了三羧酸循环中关键酶以及乳酸利用酶的表达。原噬菌体切除还导致细胞裂解基因的表达,从而降低细胞活力(例如alpA、intA和intD)。因此,有缺陷的原噬菌体通过Hha参与宿主生理过程,并通过产生在运动性和营养代谢方面具有特定功能的多样化群体参与生物膜形成。

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