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中文摘要
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有无数的假说来解释癌症发病率随年龄增长而增加。其中一个主要的假设表明,高代谢率导致细胞损伤增加,包括最终导致癌症的事件。Gottschling实验室发现,随着酵母细胞的老化,它们会切换到更高的基因组不稳定性。我们建议使用Gottschling实验室开发的新方法,分离旧的酵母母细胞,这类似于后生动物中的干细胞,并使用货车Voorhies实验室开发的方法测量它们的代谢率。我们将结合联合收割机的遗传和生理变化的分析,以确定是否代谢率影响年龄诱导的基因组不稳定性老母酵母细胞。这项研究将解决真核细胞中可能解释年龄依赖性肿瘤发生的基本问题。
英文摘要
There are a myriad of hypothesis to explain the increased incidence of cancer with age. One of the major hypotheses suggests that high metabolic rate leads to increased cellular damage, including events that ultimately lead to cancer. The Gottschling lab discovered that as yeast cells age, they switch to a higher rate of genomic instability. We propose to use new methods developed in the Gottschling lab, to isolate old yeast mother cells, which are analogous to stem cells in metazoans and measure their metabolic rate - using methods developed in the Van Voorhies lab. We will combine this analysis with genetic and physiological alterations to determine whether metabolic rate impacts age-induced genomic instability in old mother yeast cells. This study will address fundamental issues in eukaryotic cells that may explain age-dependent oncogenesis.
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How does metabolic rate affect age-induced genomic instability?
RNAi Mediated Gene Disruption in Caenorhabditis Elegans
RNAi Mediated Gene Disruption in Caenorhabditis Elegans
How does metabolic rate affect age-induced genomic instability?
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