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DESCRIPTION (provided by applicant): Conjugative transposons (CTns) are integrated self-transmissible elements. The first step in their transfer is excision from the bacterial chromosome to form a circular intermediate. A single-stranded copy of this intermediate is then transferred to a recipient cell where it integrates into the chromosome. CTns are proving to be major contributors to antibiotic resistance gene transfer. Yet little is know about their activities, particularly the process by which they excise from the chromosome. The focus of this proposal is on excision of a widely distributed CTn found in human colonic Bacteroides species, CTnDOT. CTnDOT has an unusually complex excision system that consists of an integrase (IntDOT).and 3 other proteins (Orf2c, Orf2d and Exc) that are essential for excision. Nothing is known about the mechanisms of Orf2c, Orf2d and Exc. We will purify these proteins and use a variety of biochemical techniques, ranging from gel shift analysis to footprinting, to determine how they bind DNA during the excision process and how they interact with each other and with IntDOT. Site-directed and random mutagenesis will be used to learn what amino acid residues are important for their functions. Orf2c, Orf2d and Exc also participate in the regulation of transfer genes. We will determine how these proteins contribute to control of transfer gene expression. Finally, we will characterize further three regulatory proteins, RteA, RteB and RteC, which are central regulators of CTnDOT functions including excision and transfer. Of special interest is the question of what RteA, the putative sensor protein, is sensing. The results of the proposed experiments will provide new information about the functions and regulatory machinery of a unique family of transmissible integrated elements. Information about excision might be used in the future to develop compounds that "cure" certain types of bacteria of genes on CTns that confer resistance to antibiotics or encode virulence factors. Also, information about how CTn functions are regulated is already beginning to be applied to the development of strategies that prevent their spread in nature and to guide evaluation of regulatory measures in the food and pharmaceutical industry.
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Genes involved in production of plasmidlike forms by a Bacteroides conjugal chromosomal element share amino acid homology with two-component regulatory systems.
拟杆菌共轭染色体元件产生质粒样形式所涉及的基因与双组分调节系统具有氨基酸同源性。
DOI: 10.1128/jb.174.9.2935-2942.1992
发表时间: 1992
期刊: Journal of bacteriology
影响因子: 3.2
作者: [Stevens,AM, Sanders,JM, Shoemaker,NB, Salyers,AA]
通讯作者: Salyers,AA
NBU1 integrase: evidence for an altered recombination mechanism.
NBU1 整合酶:重组机制改变的证据。
DOI: 10.1111/j.1365-2958.2006.05073.x
发表时间: 2006
期刊: Molecular microbiology.
影响因子: --
作者: [Schmidt,JohnW, Rajeev,Lara, Salyers,AbigailA, Gardner,JeffreyF]
通讯作者: Gardner,JeffreyF
The Xis2d protein of CTnDOT binds to the intergenic region between the mob and tra operons.
CTnDOT 的 Xis2d 蛋白与 mob 和 tra 操纵子之间的基因间区域结合。
DOI: 10.1016/j.plasmid.2015.07.002
发表时间: 2015
期刊: Plasmid
影响因子: 2.6
作者: [Hopp,CrystalM, Gardner,JeffreyF, Salyers,AbigailA]
通讯作者: Salyers,AbigailA
New perspectives in tetracycline resistance.
四环素耐药性的新视角。
DOI: 10.1111/j.1365-2958.1990.tb02025.x
发表时间: 1990
期刊: Molecular microbiology
影响因子: 3.6
作者: [Salyers,AA, Speer,BS, Shoemaker,NB]
通讯作者: Shoemaker,NB
30
    Conjugal Transfer of Bacteroides Antibiotic Resistances
    CONJUGAL TRANSFER OF BACTEROIDES ANTIBIOTIC RESISTANCES
    CONJUGAL TRANSFER OF BACTEROIDES ANTIBIOTIC RESISTANCES
    NETWORK TO MONITOR RESISTANCE IN COMMENSAL BACTERIA
    海外基金