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rfaG和rfaP基因在决定大肠杆菌K-12脂多糖核心结构及细胞表面特性中的作用

Role of the rfaG and rfaP genes in determining the lipopolysaccharide core structure and cell surface properties of Escherichia coli K-12.

作者信息

Parker C T, Kloser A W, Schnaitman C A, Stein M A, Gottesman S, Gibson B W

机构信息

Department of Microbiology, Arizona State University, Tempe 85287.

出版信息

J Bacteriol. 1992 Apr;174(8):2525-38. doi: 10.1128/jb.174.8.2525-2538.1992.

Abstract

Deletions which removed rfa genes involved in lipopolysaccharide (LPS) core synthesis were constructed in vitro and inserted into the chromosome by linear transformation. The deletion delta rfa1, which removed rfaGPBI, resulted in a truncated LPS core containing two heptose residues but no hexose and a deep rought phenotype including decreased expression of major outer membrane proteins, hypersensitivity to novobiocin, and resistance to phage U3. In addition, delta rfa1 resulted in the loss of flagella and pili and a mucoid colony morphology. Measurement of the synthesis of beta-galactosidase from a cps-lacZ fusion showed that the mucoid phenotype was due to rcsC-dependent induction of colanic acid capsular polysaccharide synthesis. Complementation of delta rfa1 with rfaG+ DNA fragments resulted in a larger core and restored the synthesis of flagella and pili but did not reverse the deep rough phenotype or the induction of cps-lacZ, while complementation with a fragment carrying only rfaP+ reversed the deep rough phenotype but not the loss of flagella and pili. A longer deletion which removed rfaQGPBIJ was also constructed, and complementation studies with this deletion showed that the product of rfaQ was not required for the functions of rfaG and rfaP. Thus, the function of rfaQ remains unknown. Tandem mass spectrometric analysis of LPS core oligosaccharides from complemented delta rfa1 strains indicated that rfaP+ was necessary for the addition of either phosphoryl (P) or pyrophosphorylethanolamine (PPEA) substituents to the heptose I residue, as well as for the partial branch substitution of heptose II by heptose III. The substitution of heptose II is independent of the type of P substituent present on heptose I, and this results in four different core structures. A model is presented which relates the deep rough phenotype to the loss of heptose-linked P and PPEA.

摘要

通过体外构建缺失参与脂多糖(LPS)核心合成的rfa基因,并通过线性转化将其插入染色体。缺失Δrfa1去除了rfaGPBI,导致截短的LPS核心含有两个庚糖残基但无己糖,呈现出深度粗糙表型,包括主要外膜蛋白表达降低、对新生霉素超敏以及对噬菌体U3抗性。此外,Δrfa1导致鞭毛和菌毛丧失以及黏液样菌落形态。对cps-lacZ融合体β-半乳糖苷酶合成的测定表明,黏液样表型是由于rcsC依赖性诱导结肠酸荚膜多糖合成所致。用rfaG + DNA片段对Δrfa1进行互补,导致形成更大的核心并恢复鞭毛和菌毛的合成,但未逆转深度粗糙表型或cps-lacZ的诱导,而仅用携带rfaP +的片段进行互补则逆转了深度粗糙表型,但未恢复鞭毛和菌毛的丧失。还构建了一个更长的缺失,去除rfaQGPBIJ,对该缺失进行的互补研究表明,rfaQ的产物对于rfaG和rfaP的功能不是必需的。因此,rfaQ的功能仍然未知。对互补的Δrfa1菌株的LPS核心寡糖进行串联质谱分析表明,rfaP +对于在庚糖I残基上添加磷酸基(P)或焦磷酸乙醇胺(PPEA)取代基以及庚糖III对庚糖II的部分分支取代是必需的。庚糖II的取代独立于庚糖I上存在的P取代基类型,这导致四种不同的核心结构。提出了一个模型,将深度粗糙表型与庚糖连接的P和PPEA的丧失联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e879/205891/fd97f3b3c596/jbacter00074-0120-a.jpg

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