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Identification of Downstream Signals for Pitx2a

Identification of Downstream Signals for Pitx2a
Pitx2a 下游信号的识别
批准号:
6818252
负责人:
ROBERT ADELSTEIN
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
我们之前报道过,Pitx2a在HeLa细胞中的过度表达导致p53和p21/cip1/walf1的积累,导致细胞周期停滞在G1/G0。然而,Pitx2a如何诱导HeLa细胞中p53和p21蛋白的积累尚不清楚。在正常细胞和组织中,p53的泛素化和蛋白酶体依赖性降解是由泛素蛋白连接酶mdm2和p300/CBP介导的,使p53蛋白维持在适当的水平。在HPV E6蛋白存在的情况下,E6AP (E6相关蛋白)被用作泛素蛋白连接酶,靶向肿瘤抑制蛋白p53降解,而不是mdm2。然而,RT-PCR和northern blot分析显示,Ptx2a表达24h后,HeLa细胞中E6和E6AP mRNA水平未受显著影响,提示Pitx2a诱导的HeLa细胞中p53积累并非由于抑制HPV E6和细胞E6AP表达所致。此外,在HeLa细胞中,E6AP蛋白的过表达并未显著影响Pitx2a诱导p53积累。这些结果提示Pitx2a可能直接阻断E6和E6AP对p53的泛素化和降解。将Pitx2a转染到含有高水平功能性mdm2的细胞系中,如U2OS,不会导致p53的积累,这表明Pitx2a不会影响mdm2介导的p53降解。共免疫沉淀实验表明,myc标记的p53和gfp标记的Pitx2a在HeLa细胞中可以相互作用。这种相互作用不需要HPV E6癌蛋白的存在,因为当Pitx2a被共转染到HPV阴性的Sao-2细胞中时,它们仍然可以结合p53。在Pitx2a的羧基末端区域,删除同质结构域或40个氨基酸都将消除Pitx2a诱导p53在HeLa细胞中积累的能力。此外,Pitx2a的过表达导致转染的E6AP泛素化和降解。我们的数据表明,Pitx2a通过与p53形成复合物,加速E6AP的泛素化和降解,从而增加p53的稳定性,从而导致p53的积累。
英文摘要
We previously reported that over-expression of Pitx2a in HeLa cells resulted in the accumulation of p53 and p21/cip1/walf1, leading to cell cycle arrest at G1/G0. However, it is not known how Pitx2a induced p53 and p21 protein accumulation in HeLa cells. In normal cells and tissues, the ubiquitination and proteasome-dependent degradation of p53 are mediated by ubiquitin protein ligases mdm2 and p300/CBP, maintaining the p53 protein at an appropriate level. In the presence of HPV E6 protein, E6AP (E6-associated protein), but not mdm2, is used as the ubiquitin protein ligase to target the tumor suppressor protein p53 for degradation. However, RT-PCR and northern blot analysis indicated that E6 and the E6AP mRNA levels in HeLa cells were not significantly affected following Ptx2a expression for 24h, suggesting that p53 accumulation induced by Pitx2a in HeLa cells was not due to the repression of HPV E6 and cellular E6AP expression. Furthermore, over-expression of E6AP protein in HeLa cells did not significantly affect the induction of p53 accumulation by Pitx2a. These results suggested that Pitx2a might directly block the ubiquitination and degradation of p53 by E6 and E6AP. Transfection of Pitx2a into cell lines containing high levels of functional mdm2, such as U2OS, did not result in the accumulation of p53, suggesting that Pitx2a did not affect mdm2-mediated p53 degradation. Co-immunoprecipitation experiments indicated that Myc-tagged p53 and GFP-tagged Pitx2a could interact with each other in HeLa cells. This interaction does not require the presence of the HPV E6 oncoprotein, as Pitx2a can still bind to p53 when they were cotransfected into HPV-negative Sao-2 cells. Deletion of either the homeodomain or 40 amino acids in the carboxyl-terminal region of Pitx2a abrogates the ability of Pitx2a to induce p53 accumulation in HeLa cells. In addition, over-expression of Pitx2a caused the ubiquitination and degradation of transfected E6AP. Our data suggest that Pitx2a increases p53 stability by forming a complex with p53 and accelerating the ubiquitination and degradation of E6AP, leading to the accumulation of p53. Previous reports demonstrated that ubiquitous ablation of NMHC II-B in mice (B-/B-) resulted in defects in both the brain and heart, leading to lethality between E14.5 and E18.5. The presence of both severe cardiac and brain defects in B-/B- mice raised the possibility that at least some of the abnormalities found in these organs could be secondary to the malfunction of the other organ, rather than directly due to the absence of NMHC II-B. We, therefore, utilized loxP/Cre strategy to specifically delete exon II of NMHC II-B in a tissue-specific manner. A mouse line, B:loxP/loxP, in which exon II of NMHC II-B was flanked by loxP sites, was generated. NesCre, a transgenic mouse line harboring the Cre recombinase expression cassette under control of the nestin promoter, was crossed to B:loxP/loxP mice to obtain B:loxP/loxP NesCre, which allowed removal of NMHC II-B in the brain, but not the heart. The B:loxP/loxP NesCre mice are smaller than wild-type littermates, develop severe hydrocephalus, and demonstrate abnormal neuronal cell migration without showing any cardiac defects. B:loxP/loxP mice were also crossed to a transgenic mouse line, alpha-MHC-Cre (MHCCre), in which the Cre expression cassette is driven by the alpha-cardiac myosin heavy chain promoter, to generate B:loxP/loxP MHCCre mice, in which NMHC II-B was specifically ablated in the heart. B:loxP/loxP MHCCre mice are presently being characterized, but have demonstrated cardiac ventricular septal defects and no brain abnormalities to date. Thus, the defects in B-/B- mice appear to be directly caused by the loss of NMHC II-B in each organ and are independent of the defects generated in the other organ.
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会议论文
EXPRESSION OF NONMUSCLE MYOSIN ISOFORMS IN EUKARYOTIC CELLS
NULL MUTATIONS OF VERTEBRATE NONMUSCLE MYOSIN HEAVY CHAINS
INTERACTION OF NONMUSCLE MYOSIN II WITH PLASMA MEMBRANES
EXPRESSION OF NONMUSCLE MYOSIN ISOFORMS IN EUKARYOTIC CELLS
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  • 批准号:
    81801389
  • 项目类别:
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  • 资助金额:
    21.0万元
  • 批准年份:
    2018
  • 负责人:
    田茗源
  • 依托单位:
平扫描数据导引的超低剂量Brain-PCT成像新方法研究
  • 批准号:
    81101046
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    23.0万元
  • 批准年份:
    2011
  • 负责人:
    黄静
  • 依托单位: