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中文摘要
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描述(由申请人提供):我们的实验揭示了迄今未知的反式作用大分子调节系统的存在,该系统通过激活、抑制和调节特定热点的活性来控制哺乳动物重组热点的位置和相对活性。这个调节系统的遗传变异使其得以发现,现在提供了一种鉴定其组分及其相互作用的方法,这是理解其与人类遗传学问题以及群体生物学和进化问题相关性的重要第一步。热点的位置和它们在人类和小鼠(我们主要的哺乳动物研究模式生物)中的相对活性决定了连锁不平衡的模式和紧密连锁基因共同遗传的可能性,这是确定人类健康和疾病中重要基因的重要问题。我们发现的第一个调控基因Prdm 9通过激活重组来确定热点位置;它没有定量修饰剂,其作用与基因剂量无关。 在这里,我们将研究控制热点活动的定量水平的互补调控系统,在阐明这种新的调控系统的结构及其影响遗传模式的能力的平等关注的问题。我们将研究三个热点的定量调节,其活动由小鼠品系C57 BL/6 J和CAST/EiJ之间不同的基因调节;两个由于CAST等位基因的存在而降低了其活性,一个具有增强的活性。 我们将通过应用一种新的、相当改进的、依赖于高通量DNA测序的精子样品中热点活动的定量测定系统来做到这一点;绘制和克隆所涉及的调控基因;测试它们之间的相互作用;确定它们是否以剂量依赖性方式起作用,指示它们是催化性地还是化学计量地起作用,以及最后,测试它们是否控制重组的起始速率或在导致交换或形成非交换基因转换的备选重组途径之间的决定。 我们希望了解每个热点是否有自己独特的调控系统或有共同的调控元件,是否向上和向下调节的影响相同的基因,是否控制施加在重组的启动或重组的替代途径之间的选择,以及这些基因相互作用的方式。这些数据与这些基因的分子特性一起可能会为它们的作用机制提供重要线索。 这些问题的答案将大大提高我们对最基本的生物学过程之一,基因重组的理解。
英文摘要
DESCRIPTION (provided by applicant): Our experiments have revealed the existence of a hitherto unknown, trans-acting, macromolecular regulatory system controlling the location and relative activity of mammalian recombination hotspots by activating, suppressing and modulating the activity of specific hotspots. Genetic variation of this regulatory system enabled its discovery and now provides a means of identifying its components and their interactions, an essential first step in understanding its relevance to issues of human genetics as well as questions of population biology and evolution. The locations of hotspots and their relative activity in humans and mice (our principal mammalian research model organism) determine patterns of linkage disequilibrium and the possibilities for closely linked genes to be coinherited, important issues in efforts to identify genes important in human health and disease. The first regulatory gene we identified, Prdm9, determines hotspot locations by activating recombination there; it has no quantitative modifiers, and its role is independent of gene dosage. Here we will investigate the complementary regulatory system controlling quantitative levels of hotspot activity, a matter of equal concern in elucidating the structure of this novel regulatory system and its ability to influence inheritance patterns. We will study the quantitative regulation of three hotspots whose activities are regulated by genes that differ between the mouse strains C57BL/6J and CAST/EiJ; two have their activity reduced by the presence of CAST alleles, and one has its activity enhanced. We will do so by applying a new, considerably improved, quantitative assay system for hotspot activities in sperm samples that relies on high throughput DNA sequencing; mapping and cloning the regulatory genes involved; testing their interactions with each other; determining whether they act in a dose dependent manner, indicating whether they act catalytically or stoichimetrically, and finally, testing whether they control the rate of initiation of recombination or the decision between the alternative recombination pathways leading to crossing over or the formation of non-crossover gene conversions. We expect to learn whether each hotspot has its own unique regulatory system or there are shared regulatory elements, whether up and down regulation are effected by the same genes, whether controls are exerted on the initiation of recombination or the choice between alternate pathways of recombination, and the manner in which any of these genes interact with each other. These data together with the molecular identity of these genes will likely provide important clues as to their mechanism of action. The answers to these questions will considerably enhance our understanding of one of the most basic biological processes, genetic recombination.
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The Whole Scientist Program
  • 批准号:
    9060388
  • 项目类别:
  • 资助金额:
    $6.97万
  • 财政年份:
    2015
  • 负责人:
    KENNETH PAIGEN
  • 依托单位:
The Whole Scientist Program
  • 批准号:
    9432548
  • 项目类别:
  • 资助金额:
    $6.22万
  • 财政年份:
    2015
  • 负责人:
    KENNETH PAIGEN
  • 依托单位:
Molecular Regulation of Mammalian Meiosis
  • 批准号:
    8474281
  • 项目类别:
  • 资助金额:
    $163.06万
  • 财政年份:
    2013
  • 负责人:
    KENNETH PAIGEN
  • 依托单位:
Molecular Regulation of Mammalian Meiosis
  • 批准号:
    9120895
  • 项目类别:
  • 资助金额:
    $163.06万
  • 财政年份:
    2013
  • 负责人:
    KENNETH PAIGEN
  • 依托单位:
海外基金