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DESCRIPTION (provided by applicant): The c-MYC gene is among the most frequent sites of mutation for any oncogene in human cancer. Approximately 15% of all cancers exhibit amplification of the c-MYC gene and about 25% of breast cancers have similar mutations. Chromosomal translocations at c-MYC occur in 100% of Burkitt's lymphomas, as well as in the related mouse plasmacytomas. In addition to these gross rearrangements, missense mutations can also play a major role in the oncogenic activity of c-MYC, and more than 60% of Burkitt's and AIDS-associated lymphomas have mutations that alter the protein structure of the already translocated c-MYC gene. From a very different perspective, inherited Single Nucleotide Polymorphisms (SNPs) that predispose to various cancers have frequently been mapped within or near the c-MYC gene. Beyond these overt mutations and polymorphisms, it is estimated that up to 70% of all cancers overexpress c-MYC in response to disruptions in various signaling pathways such as Wnt. A major question confronting the cancer field is how these mutations and polymorphisms target c-MYC and its downstream cellular targets to mediate oncogenic transformation, cell cycle progression or apoptosis. Of broader interest is how the c-MYC gene itself is regulated in response to diverse oncogenic signaling pathways. The specific goals of this project are to: Aim 1: Characterize the missense mutations frequently found in the c-MYC protein in Burkitt's and AIDS-associated lymphomas. Our hypothesis is that these mutations cluster at sites that enhance oncogenic activity and dramatically shift the profiles of c-MYC target genes. Aim 2: Characterize the function of a novel direct target of c-MYC, the nol5a gene, that is hyperactivated by Burkitt's lymphoma associated c-MYC mutations. Our hypothesis is that the Nol5a protein potentiates c-MYC function through its role in ribosome biogenesis. Aim 3: Characterize the function of SNPs that map over a large domain on chromosome 8q24, a huge region (>2 Mb) that harbors only a single functional gene, i.e. c-MYC. Our hypothesis is that these SNPs map to very distal regulatory elements that control c-MYC gene expression in specific tissues and predispose (or protect) individuals from colon, prostate and breast cancer, dependent on the particular inherited allele.
期刊论文(8)
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会议论文
DOI: 10.1186/1471-2164-9-442
发表时间: 2008-09-24
期刊: BMC genomics
影响因子: 4.4
作者: [Brown SJ, Cole MD, Erives AJ]
通讯作者: Erives AJ
DOI: 10.1038/ng.2416
发表时间: 2012-11
期刊: Nature genetics
影响因子: 30.8
作者: [Cowper-Sal lari R, Zhang X, Wright JB, Bailey SD, Cole MD, Eeckhoute J, Moore JH, Lupien M]
通讯作者: Lupien M
DOI: 10.1186/1471-2199-8-40
发表时间: 2007-05-22
期刊: BMC molecular biology
影响因子: --
作者: [Goodliffe JM, Cole MD, Wieschaus E]
通讯作者: Wieschaus E
Therapeutic targeting of MYC interactions with an essential cofactor
  • 批准号:
    10512309
  • 项目类别:
  • 资助金额:
    $23.0万
  • 财政年份:
    2022
  • 负责人:
    MICHAEL David COLE
  • 依托单位:
Therapeutic targeting of MYC interactions with an essential cofactor
  • 批准号:
    10655655
  • 项目类别:
  • 资助金额:
    $18.78万
  • 财政年份:
    2022
  • 负责人:
    MICHAEL David COLE
  • 依托单位:
MYC Dependent Pathways in Apoptosis and Lymphomagenesis
  • 批准号:
    7171755
  • 项目类别:
  • 资助金额:
    $34.11万
  • 财政年份:
    1999
  • 负责人:
    MICHAEL David COLE
  • 依托单位:
MYC Dependent Pathways in Apoptosis and Lymphomagenesis
  • 批准号:
    7341057
  • 项目类别:
  • 资助金额:
    $34.11万
  • 财政年份:
    1999
  • 负责人:
    MICHAEL David COLE
  • 依托单位: