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MOLECULAR AND CYTOGENETIC STUDIES OF HUMAN CELL AGING

MOLECULAR AND CYTOGENETIC STUDIES OF HUMAN CELL AGING
人类细胞衰老的分子和细胞遗传学研究
批准号:
3115913
负责人:
OLIVIA M. PEREIRA-SMITH
金额:
$19.13万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1985
资助国家:
美国
项目状态:
已结题
起止时间:
1985-05-01 至 1993-04-30

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OLIVIA M. PEREIRA-SMITH的其他基金

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Normal human cells in vitro exhibit a stringent limitation of division capacity in contrast to tumor-derived and virus-, carcinogen- or irradiation-transformed cells that can divide indefinitely (immortal). We do not yet understand the mechanisms that limit the division potential of normal human cells or the changes occurring to yield immortal cells. However, from cell hybrid studies we have found that the immortal phenotype results from recessive changes in normal cell growth control. We have exploited this fact to separate twenty four different immortal cell lines into four implementation groups for indefinite division. This indicates that there are at least four paths to immortality and that at least four genes or sets of genes are involved in normal cell growth control. We have also found that normal senescent human cells express a protein inhibitor of DNA synthesis and contain a high abundance of mRNAs that inhibit DNA synthesis, neither of which is present in young proliferating cells. Our current hypothesis is that expression of this protein is the end- point of a genetic program that results in cellular senescence. Now that we have assigned immortal cell lines to specific groups we can proceed to determine what changes have occurred that are common to cell lines within a complementation group that could be involved in immortalization. Cytogenetic analysis combined with the use of restriction fragment length polymorphisms have allowed for the identification of specific genetic changes associated with, for example, certain types of tumors, cystic fibrosis and Duchenne muscular dystrophy. We plan to take a similar approach to identify chromosomal changes that are common to immortal cell lines within a complementation group. We can then determine whether these chromosomes are involved in immortalization by hybrid or microcell fusion studies. We will also analyze cell lines within the different implementation groups to determine whether they have become immortal because of changes in expression of the protein inhihitor of DNA synthesis that is produced in senescent cells. The results from these studies should provide further insight into changes at the genetic and molecular level that are involved in immortalization of human cells and thereby to the genes or sets of genes involved in cellular senescence.
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Role of MRG15 in Chromatin Changes During Cell Senescence and In Vivo Aging
Role of MRG15 in Chromatin Changes During Cell Senescence and In Vivo Aging
Role of MRG15 in Chromatin Changes During Cell Senescence and In Vivo Aging
STUDIES OF THE ROLE OF THE MORF/MRG GENE FAMILY IN CELL SENESCENCE AND IMMORTAL
  • 批准号:
    7182386
  • 项目类别:
  • 资助金额:
    $0.4万
  • 财政年份:
    2005
  • 负责人:
    OLIVIA M. PEREIRA-SMITH
  • 依托单位: