课题基金 / 基金详情

项目摘要

项目成果

Eric Ross Vimr的其他基金

相似基金

相关文献

中文摘要
翻译
尽管研究了半个多世纪,取得了重大进展
英文摘要
Despite research for more than half a century and major advances in antimicrobial therapy, diseases caused by encapsulated bacteria, including meningococci, pneumococci, Haemophilus, influenzae type B, Escherichia coli, and group B streptococci, remain a major health problem. Interest in the prevention and control of disease caused by these bacteria has been stimulated by the high morbidity and mortality of disease caused by these microorganisms, the emergence of antibiotic resistant strains, and the threat of endemic and epidemic disease. E. coli is the most common cause of neonatal meningitis associated with high mortality and serious neurological sequelae. The Kl polysaccharide is structurally identical to polysialic acid moieties on the neural cell adhesion molecule, NCAM, which may explain the weak immunogenicity of the E. coli capsule and the lack of effective vaccines, despite intensive vaccine development efforts. Indeed, it is not clear whether vaccines against the Kl capsule would be desireable. An alternative approach to disease control would be therapeutics aimed at disrupting bacterial sialic acid metabolism. This approach requires detailed information about polysialic acid synthesis and its underlying genetic regulation. Our current understanding of the kps gene cluster in E. coli Kl is at a level of sophistication wherein molecular descriptions of synthetic and regulatory mechanisms can be investigated in a unified program. Combining powerful microbial genetic approaches with molecular and biochemical methodologies suggests, for the first time, that a complete description of a membrane polysaccharide's synthesis, underlying genetic regulation, and translocation may be possible. This information will be relevant to other capsule biosynthetic systems of medical and industrial importance. Here, we propose experiments to further define the polymerase complex that is responsible for polysialic acid synthesis, to elucidate the genetic mechanisms underlying environmental regulation of capsule expression, and to begin a functional reconstitution of polymer assembly and translocation factors. These new approaches are a direct and logical continuance of our previous research to deduce a functional genetic map of the polysialic acid gene cluster.
期刊论文(20)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1016/0966-842x(94)90003-5
发表时间: 1994-08
期刊: Trends in microbiology
影响因子: 15.9
作者: [E. Vimr]
通讯作者: E. Vimr
Biosynthesis of the polysialic acid capsule in Escherichia coli K1.
大肠杆菌 K1 中聚唾液酸胶囊的生物合成。
DOI: 10.1007/bf01569991
发表时间: 1995
期刊: Journal of industrial microbiology
影响因子: --
作者: [Vimr,E, Steenbergen,S, Cieslewicz,M]
通讯作者: Cieslewicz,M
Homology among Escherichia coli K1 and K92 polysialytransferases.
大肠杆菌 K1 和 K92 聚唾液酸转移酶之间的同源性。
DOI: 10.1128/jb.174.15.5127-5131.1992
发表时间: 1992
期刊: Journal of bacteriology
影响因子: 3.2
作者: [Vimr,ER, Bergstrom,R, Steenbergen,SM, Boulnois,G, Roberts,I]
通讯作者: Roberts,I
Genetic analysis of chromosomal mutations in the polysialic acid gene cluster of Escherichia coli K1.
大肠杆菌K1多聚唾液酸基因簇染色体突变的遗传分析。
DOI: 10.1128/jb.171.2.1106-1117.1989
发表时间: 1989
期刊: Journal of bacteriology
影响因子: 3.2
作者: [Vimr,ER, Aaronson,W, Silver,RP]
通讯作者: Silver,RP
8
    REGULATION OF THE (POLY) SIALIC ACID VIRULENCE FACTOR
    Regulation of the Poly Sialic Virulence Factor
    REGULATION OF THE (POLY) SIALIC ACID VIRULENCE FACTOR
    REGULATION OF THE (POLY) SIALIC ACID VIRULENCE FACTOR
    海外基金