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ANALYSIS OF HUMAN RAD51 RELATED PROTEINS

ANALYSIS OF HUMAN RAD51 RELATED PROTEINS
人RAD51相关蛋白的分析
批准号:
6385453
负责人:
DAVID SCHILD
金额:
$36.4万
依托单位国家:
美国
项目类别:
财政年份:
1983
资助国家:
美国
项目状态:
已结题
起止时间:
1983-03-01 至 2003-07-31

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中文摘要
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英文摘要
There is increasing evidence that recombinatorial repair is important in human cells, and likely plays a role in preventing cancer. The yeast and human RAD51 genes encode strand-transfer proteins involved in recombination and DNA repair. In. S. cerevisiae, the Rad51 family of related proteins also includes Rad55 and Rad57, which form a heterodimer that interacts with Rad51. In human cells, six proteins in this family (HsRad51, XRCC2, XRCC3, Rad51B/hRec2, Rad51C and Rad51D) likely participate in recombinatorial repair and in maintaining genomic stability. We identified specific interactions between all of these proteins. These interactions suggest that the human proteins are either part of a recombinosome, or form heterodimers and trimers acting in one or more repair pathways. One hypothesis si that the human Rad51- related proteins, like yeast Rad55 and Rad57, function by physically cooperating with Rad51 in DNA repair. This hypothesis will be tested by determining how these proteins interact, and this information should give us important clues to their functions. Our goals are to more rigorously examine these interactions and to determine their biological significance. Co-immunoprecipitation (co-IP) and cytological localization experiments are proposed to extend our yeast two-hybrid results. HsRad51 focus induced by DNA damage will be characterized to see if they contain other Rad51-related proteins. Gel filtration studies will determine if these is one large complex or distinct hetero- multimers . Modified yeast two-hybrid experiment swill determine which pairs of protein interactions can occur simultaneously, and which occur competitively or cooperatively. A major strength of two-hybrid results is that is they rapidly suggest models that will then be tested by co-IP, gel filtration and immunolocalization experiments. The combined data will tell us whether or not these proteins form a recombinosome and if so, will elucidate its architecture. Two-hybrid deletion analysis will be used to map binding domains on XRCC2, XRCC2 and Rad51C, and interaction- defective mutations will be isolated. These interaction-defective mutations will be tested to see if they can complement knockout mutations and/or if they may act as dominant negative alleles. An interaction between Rad51C and IKK-beta has been observed in the two-hybrid system. IKK-beta is a kinase involved in the activation of NF-kappaB, and is part of a system that responds to x-rays and other stimuli. We will attempt to biochemically confirm the observed Rab51C-IKK-beta interaction, and also determine if Rad51C is phosphorylated. If so, we will test if phosphorylation changes in response to x-ray or MMC treatment, and examine its biological significance by analyzing mutant Rad51C that may not be phosphorylated on key residues.
期刊论文(21)
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会议论文
Characterization of null mutants of the RAD55 gene of Saccharomyces cerevisiae: effects of temperature, osmotic strength and mating type.
酿酒酵母 RAD55 基因无效突变体的表征:温度、渗透强度和交配类型的影响。
DOI: 10.1093/genetics/116.4.547
发表时间: 1987
期刊: Genetics
影响因子: 3.3
作者: [Lovett,ST, Mortimer,RK]
通讯作者: Mortimer,RK
Suppression of a new allele of the yeast RAD52 gene by overexpression of RAD51, mutations in srs2 and ccr4, or mating-type heterozygosity.
通过 RAD51 过表达、srs2 和 ccr4 突变或交配型杂合性抑制酵母 RAD52 基因的新等位基因。
DOI: 10.1093/genetics/140.1.115
发表时间: 1995
期刊: Genetics
影响因子: 3.3
作者: [Schild,D]
通讯作者: Schild,D
Use of a ring chromosome and pulsed-field gels to study interhomolog recombination, double-strand DNA breaks and sister-chromatid exchange in yeast.
使用环状染色体和脉冲场凝胶研究酵母中的同源重组、双链 DNA 断裂和姐妹染色单体交换。
DOI: 10.1093/genetics/123.4.695
发表时间: 1989
期刊: Genetics
影响因子: 3.3
作者: [Game,JC, Sitney,KC, Cook,VE, Mortimer,RK]
通讯作者: Mortimer,RK
DOI: 10.1128/mcb.21.8.2858-2866.2001
发表时间: 2001-04-01
期刊: MOLECULAR AND CELLULAR BIOLOGY
影响因子: 5.3
作者: [Takata, M, Sasaki, MS, Takeda, S]
通讯作者: Takeda, S
15
    Determining the role of RAD51AP1: a new gene in DNA repair and genomic stability
    Determining the role of RAD51AP1: a new gene in DNA repair and genomic stability
    Determining the role of RAD51AP1: a new gene in DNA repair and genomic stability
    Determining the role of RAD51AP1: a new gene in DNA repair and genomic stability
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