FHA domain-dependent functions of cell cycle checkpoint kinases
FHA domain-dependent functions of cell cycle checkpoint kinases
批准号:
nhmrc : 247900
负责人:
A/Pr Jorg Heierhorst
金额:
$15.7万
依托单位国家:
澳大利亚
项目类别:
NHMRC Project Grants
财政年份:
2003
资助国家:
澳大利亚
项目状态:
已结题
起止时间:
2003-01-01 至 2005-12-31
中文摘要
人类染色体作为遗传信息的载体,不断遭受DNA损伤。这通常是自发发生的,只是作为细胞能量消耗的副产品或生长细胞中染色体复制过程中的错误的DNA残基氧化的结果,并被化学或物理因素,例如致癌物、紫外线或X射线所加剧。DNA损伤如果没有得到适当的修复,可能会产生严重的后果,导致基因组的不稳定,导致大片DNA丢失或不适当的基因组重排,最终可能导致癌症。为了防止这种可怕的后果,从酵母到人类的所有生物都包含分子检查点,这些检查点可以感知DNA损伤的存在,然后激活细胞反应程序,包括在损伤持续时修复损伤和防止细胞分裂。这些分子检查点在整个进化过程中高度保守,这使我们能够分析酵母等简单生物体中涉及的细节,以得出它们在更复杂的人类细胞中的功能的一般结论。沿着这些思路,我们正在研究两种酵母蛋白的功能,这两种蛋白与人类Chk2蛋白相似,Chk2蛋白是一种肿瘤抑制蛋白,在患有Li-Fraumeni多癌综合征的家庭中发生突变。我们已经确定了这些蛋白质在DNA损伤剂处理后促进细胞存活的新途径,并将在本提案中进一步描述这些途径。
英文摘要
Human chromosomes as carriers of the genetic information are constantly subjected to DNA damage. This usually occurs spontaneously, simply as a result of oxidation of DNA residues as a byproduct of cellular energy consumption or as a result of errors during chromosome duplication in growing cells, and is compounded by chemical or physical agents, for example carcinogens, UV rays or X-rays. DNA damage can have severe consequences if not properly repaired, leading to genomic instability with loss of vast tracts of DNA or inappropriate genome rearrangements, that may ultimately give rise to cancer. To prevent such dire consequences, all organisms from yeast to man contain molecular checkpoints that sense the presence of DNA damage and then activate a cellular response program that includes damage repair and prevention of cell division while damage persists. These molecular checkpoints are highly conserved throughout evolution which allows us to analyse the details involved in simple organisms such as yeast, to draw general conclusions on their function in more complex human cells. Along these lines, we are studying the function of two yeast proteins that are similar to the human Chk2 protein, a tumour suppressor that is mutated in a subset of families suffering from the Li-Fraumeni multi-cancer syndrome. We have identified new pathways by which these proteins contribute to the survival of cells after treatment with DNA damaging agents and will further charaterise these in the present proposal.
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会议论文
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Function of the S100A1 Ca2+-binding protein under physiological and pathological conditions
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Role of FHA domains as protein-protein interaction modules in cell signalling
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依托单位:
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资助金额:$13.11万
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依托单位:
Molecular mechanisms of signalling by S100 CA2+ -binding proteins
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-
财政年份:1998
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负责人:A/Pr Jorg Heierhorst
-
依托单位:
国内基金
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