ALTERNATIVE DNA DAMAGE CHECKPOINT PATHWAYS IN EUKARYOTES
ALTERNATIVE DNA DAMAGE CHECKPOINT PATHWAYS IN EUKARYOTES
批准号:
2910390
负责人:
Sharon E. Plon
金额:
$17.24万
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-05-01 至 2003-04-30
关键词:
DNA damage DNA repair Saccharomyces cerevisiae ataxia telangiectasia cell cycle complementary DNA eukaryote fungal genetics gene complementation gene expression gene induction /repression gene mutation human genetic material tag human tissue molecular cloning mutant protein sequence tissue /cell culture yeast two hybrid system
中文摘要
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英文摘要
The response to DNA damage of organisms from E. coli to humans is marked
by two major features, arrest of cell cycle progression, and induction
of genes required for DNA repair. In eukaryotes, several gene products
(most notably the ESR1/MEC1, RAD3, MEI41, and ATM kinases) are conserved
and required for cell cycle arrest after DNA damage. Mutations in ATM
or other checkpoint genes including p53 result in increased
predisposition to malignancy and alteration in the response to radiation
therapy.
A novel human cDNA, CHES1 (Checkpoint Suppressor 1) encoding a member
of the fork head/Winged Helix family which can reconstitute a MEC1-
independent checkpoint when expressed in yeast has been recently
isolated. Analysis of the activity of CHES1 is consistent with
activation of a novel alternative checkpoint pathway. This proposal
builds on this observation to define the genes required for this
alternative checkpoint pathway in yeast and determine the activity of
both endogenous and exogenous CHES1 in mammalian cells. The
experimental aims include a systematic genetic screen to identify
mutants of S. cerevisiae which have lost the alternative pathway. In
parallel, direct isolation of both yeast and human genes which interact
with CHES1 will define which gene product in the alternative pathway is
being activated by CHES1. The mammalian homologs of the genes
identified in these aims will be characterized for their ability to
modulate the response to DNA damage of mammalian cells. Given the
ability of CHES1 to suppress the DNA damage sensitivity of yeast deleted
for MEC1 direct determination of whether exogenous expression of CHES1
will suppress the checkpoint defect in cells from patients with ataxia
telangiectasia (AT) will be performed. This will be accomplished by
mass infection of cultures with an adenoviral construct expressing
CHES1. These latter results will demonstrate whether activation of an
alternative checkpoint pathway might be used therapeutically for
patients with AT or to alter the resistance of tumors to radiation and
other DNA-damaging agents.
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ALTERNATIVE DNA DAMAGE CHECKPOINT PATHWAYS IN EUKARYOTES
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批准号:6180501
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