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Regulation of cell differentiation by RNA Polymerase II-associated Cdk8

Regulation of cell differentiation by RNA Polymerase II-associated Cdk8
RNA 聚合酶 II 相关的 Cdk8 对细胞分化的调节
批准号:
418261-2013
负责人:
Sadowski, Ivan
金额:
$2.94万
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
翻译
细胞的生长和分化受环境信号的高度调控。出芽酵母酿酒酵母(Saccharomyces cerevisiae)为研究细胞分化如何通过环境信号调控转录因子的分子细节提供了重要的模型。在营养物质限制的条件下,酵母从正常的球形分化为细长的丝状假菌丝细胞形态,能够在生长基质中钻洞,便于锻造营养物质。我们的研究表明,与RNA聚合酶II介质相关的细胞周期蛋白依赖性蛋白激酶Cdk8在控制细胞分化的决定中起着关键作用。Cdk8磷酸化并抑制至少两种序列特异性DNA结合蛋白,包括Ste12和Phd1,它们负责细胞分化所需基因的激活。当细胞遇到不利的营养条件时,以氮或碳来源不足为典型,Cdk8活性被抑制,这反过来减轻了Cdk8对这些因子的负面影响,从而允许驱动分化的基因过度激活。这些结果确定了Cdk8是控制细胞分化信号的主要靶点,我们的目标是确定营养信号控制Cdk8功能的分子机制,并表征其控制分化的靶底物蛋白的完整谱。目的1:ras - tpk2依赖性信号对Cdk8的调控。我们的研究结果表明,Cdk8在氮限制下直接被Tpk2(一种蛋白激酶a (PKA)异构体)磷酸化和调节。利用遗传和生化策略,我们将确定氮限制如何特异性调节膜相关gtpase Ras和Gpa2下游的PKA途径分支。目的2:通过tpk2依赖性磷酸化破坏Cdk8的机制。Cdk8在T37位点的磷酸化导致其降解,这是由序列特异性蛋白酶启动的。这一机制将通过Cdk8上的顺式序列和反式作用基因产物的遗传鉴定来检验,这是该过程所必需的。这些因素与Ras-PKA/ Tpk2信号通路之间的关系将被确定。目的3:碳限制调控Cdk8的平行途径。遗传观察表明,Cdk8活性和假菌丝分化也受到响应碳质量限制的平行途径的控制。我们将使用Cdk8响应报告系统来识别这些信号通路,以及随后的生化分析来确定控制Cdk8活性的分子机制。长期目标:全球鉴定Cdk8底物。我们将使用atp类似物敏感的CDK8等位基因结合MS蛋白质组学策略来全局鉴定CDK8靶蛋白。将鉴定丰度受Cdk8直接抑制影响的磷脂肽。此外,全球基因表达分析将用于确定营养限制诱导分化过程中cdk8依赖性靶基因的完整谱。我们的研究为环境信号如何通过调节与一般转录因子机制密切相关的单个蛋白激酶来强迫细胞分化提供了一个新的视角。Cdk8在整个真核生物进化过程中高度保守,考虑到其在后生动物中的功能知之甚少,本研究将为更复杂物种的发育控制机制提供有价值的见解。
英文摘要
Cellular growth and differentiation are highly regulated by signals from the environment. The budding yeast Saccharomyces cerevisiae has provided an important model to study molecular details of how cellular differentiation is controlled through regulation of transcription factors by signals from the environment. Under conditions of nutrient limitation, yeast differentiate from their normal spherical shape into an elongated filamentous pseudohyphal cellular morphology, which are capable of burrowing into the growth substrate to facilitate forging for nutrients. Our research has shown that Cdk8, a cyclin-dependent protein kinase associated with the RNA Polymerase II mediator, plays a critical role in controlling the decision to undergo cellular differentiation. Cdk8 phosphatorylates and inhibits at least two sequence-specific DNA binding proteins, including Ste12 and Phd1, which are responsible for activation of genes necessary for cellular differentiation. When cells encounter unfavorable nutrient conditions, typified by poor sources of nitrogen or carbon, Cdk8 activity is inhibited, which in turn relieves the negative effect of Cdk8 on these factors to allow hyperactivation of genes that drive differentiation. These results identify Cdk8 as a primary target for signals controlling cellular differentiation, and our objectives are to determine the molecular mechanisms by which nutrient signals control Cdk8 function, and to characterize the complete spectrum of its target substrate proteins for controlling differentiation.Aim 1: Regulation of Cdk8 by Ras-Tpk2-dependent signaling. Our results show that Cdk8 is directly phosphorylated and regulated by Tpk2, a protein kinase A (PKA) isoform, in response to nitrogen limitation. Using genetic and biochemical strategies, we will define how nitrogen limitation specifically regulates this branch of the PKA pathway downstream of the membrane-associated GTPases Ras and Gpa2.Aim 2: Mechanism for destruction of Cdk8 by Tpk2-dependent phosphorylation. Phosphorylation of Cdk8 at T37 causes its degradation that is initiated by a sequence-specific protease. This mechanism will be examined by genetic identification of the cis-sequences on Cdk8, and trans-acting gene products, that are necessary for the process. The relationship between these factors and signaling through the Ras-PKA/ Tpk2 pathway will be determined.Aim 3: Parallel pathways for regulation of Cdk8 by carbon limitation. Genetic observations indicate that Cdk8 activity, and pseudohyphal differentiation, are also controlled by parallel pathways responsive to limitations in carbon quality. We will use Cdk8-responsive reporter systems to identify these signaling pathways, along with subsequent biochemical analysis to identify molecular mechanisms for control of Cdk8 activity.Longer term aim: global identification of Cdk8 substrates. We will use an ATP-analog-sensitive CDK8 allele in combination with MS proteomics strategies to globally identify Cdk8 target proteins. Phosphopeptides whose abundance is affected upon direct inhibition of Cdk8 will be identified. Additionally, global gene expression analysis will be used to define the complete spectrum of Cdk8-dependent target genes during nutrient-limitation induced differentiation. Our research provides a novel perspective on how environmental signals can force cellular differentiation through regulation of a single protein kinase that is closely associated with the general transcription factor machinery. Cdk8 is highly conserved throughout eukaryotic evolution, and considering that little is known regarding its function in metazoans, this research will provide valuable insight into mechanisms controlling development of more complicated species.
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Function of Cdk8 in Eukaryotic Cell Growth and Differentiation
  • 批准号:
    RGPIN-2020-05362
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.33万
  • 财政年份:
    2022
  • 负责人:
    Sadowski, Ivan
  • 依托单位:
Function of Cdk8 in Eukaryotic Cell Growth and Differentiation
  • 批准号:
    RGPIN-2020-05362
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.33万
  • 财政年份:
    2021
  • 负责人:
    Sadowski, Ivan
  • 依托单位:
Function of Cdk8 in Eukaryotic Cell Growth and Differentiation
  • 批准号:
    RGPIN-2020-05362
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.33万
  • 财政年份:
    2020
  • 负责人:
    Sadowski, Ivan
  • 依托单位:
Regulation of cell differentiation by RNA Polymerase II-associated Cdk8
  • 批准号:
    418261-2013
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.94万
  • 财政年份:
    2016
  • 负责人:
    Sadowski, Ivan
  • 依托单位:
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