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RETINOBLASTOMA PROTEIN IN LUNG AND OTHER TISSUES

RETINOBLASTOMA PROTEIN IN LUNG AND OTHER TISSUES
肺和其他组织中的视网膜母细胞瘤蛋白
批准号:
2909307
负责人:
DOUGLAS Chase DEAN
金额:
$33.11万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1995
资助国家:
美国
项目状态:
已结题
起止时间:
1995-07-01 至 2004-06-30

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项目成果

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中文摘要
翻译
Rb是一种肿瘤抑制因子,是细胞周期从G1期移动到S期所必需的。现在认为Rb要么突变,要么调节Rb活性的途径在肿瘤中被破坏,导致几乎所有肿瘤细胞中Rb功能的丧失。Rb也在正常的生物过程中发挥作用,这从Rb基因敲除小鼠的胚胎致死表型中可以明显看出。最近的研究表明,Rb在骨骼肌和中枢神经系统的形成以及肺分支的形态发生中起作用。在之前的资助期间,我们已经比较详细地研究了RB的结构/功能。这些研究得出了两个主要发现。第一个与RB的阻遏结构域的结构有关。我们发现Rb的中央所谓的口袋区域(肿瘤中Rb基因大多数失活突变的靶点)是抑制基序。口袋里有两个高度保守的区域,分别命名为A和B。我们发现,这两个区域相互作用,形成了抑制基序。更重要的是,这种A-B相互作用被G1CDKs催化的过度磷酸化破坏,从而阻断了Rb的功能。最近,RB口袋已经结晶,我们将使用这种晶体结构和我们对RB结构/功能的结果来指导对RB口袋结构的有针对性的突变分析。在之前的授权期内的第二个发现是,Rb可以通过两种不同的机制抑制转录。当靶向细胞周期启动子时,它可以结合周围的转录因子并阻止它们的活性。此外,Rb通过将组蛋白脱乙酰酶招募到启动子来抑制转录。基因启动子可以被组蛋白八聚体缠绕到核小体中--这会抑制转录因子的结合。核小体组装受到核心组蛋白乙酰化的抑制,组蛋白去乙酰基酶去除乙酰基,促进核小体组装并抑制转录。我们建议进一步研究Rb在培养细胞和转基因小鼠中的作用机制和作用。
英文摘要
Rb is a tumor suppressor that is required for movement of cells from G1 to S phase of the cell cycle. It is now thought that Rb is either mutated or that the pathway that regulates Rb activity is disrupted in tumors, resulting in the loss of Rb function in virtually all tumor cells. Rb also functions in normal biologic processes, which is evident from the embryonic lethal phenotype, observed in Rb knockout mice. Recent studies have suggested roles for Rb in formation of skeletal muscle and CNS, and for lung branching morphogenesis. In the previous grant period we have examined the structure/function of Rb in some detail. Two major findings arose from these studies. The first has to do with the structure of the repressor domain of Rb. We found that the central so called pocket region of Rb (the target of most inactivating mutations of the Rb gene in tumors) is the repressor motif. There are two highly conserved regions, designated A and B, within the pocket. We found that these two regions interact with one another to form the repressor motif. And more importantly, this A-B interaction is disrupted by the hyper-phosphorylation catalyzed by G1 cdks, which blocks Rb function. Recently, the Rb pocket has been crystallized, and we will use this crystal structure along with our results on Rb structure/function to direct a targeted mutational analysis of structures in the Rb pocket. A second finding during the previous grant period was that Rb can repress transcription through two distinct mechanisms. When targeted to cell cycle promoters, it an bind surrounding transcription factors and block their activity. Additionally, Rb represses transcription by recruiting histone deacetylase to the promoter. Gene promoters can be wound into nucleosomes by histone octamers-this inhibits binding of transcription factors. Nucleosome assembly is inhibited by acetylation of the core histones, and histone deacetylase removes the acetyl groups, promoting nucleosome assembly and repressing transcription. We propose additional studies to further examine the mechanism of action and the role of Rb in cultured cells and transgenic mice.
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