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DESCRIPTION: Protein phosphorylation and dephosphorylation play an essential role in regulating various cellular functions in the ocular lens. While the functions of protein serine/threonine kinases have been well-studied, much less is known about the functions of the corresponding phosphatases in lens system. For this reason, we have studied the protein serine/threonine phosphatases-1 (PP-1) and - 2A (PP-2A) in the past several years. Our results have shown that in human, rat and bovine lenses, both PR-1 and PP-2A are expressed with PP-1 as a major serine/threonine phosphatase. Functionally, we have shown that PP-1 is necessary to maintain survival of human, rabbit and rat lens epithelial cells. Mechanistically, PP-1 appears to suppress apoptosis through dephosphorylation of p53 and Rb, both of which play key roles in lens development. Inactivation of their function leads to microphthalmia or cataractogenesis. In addition, p53 is an important transcription factor. By regulating different target genes, it controls both cell cycle and apoptosis. Inhibition of PP-1 activity by okadaic acid or calyculin A causes hyperphosphorylation of p53 and Rb, followed by activation of the apoptotic program in which p53 plays a critical role as demonstrated from the following results. First, inhibition of PP-1 by okadaic acid and calyculin A induces strong phosphorylation of p53 followed by apoptosis. Second, silence of p53 expression with RNAi greatly attenuates apoptosis induced by okadaic acid or calyculin A. Finally; inhibition of PP-1 causes Rb hyperphosphorylation followed by upregulation of p53 and its target gene, bax before initiation of apoptosis by okadaic acid. Based on these results, we hypothesize that the major functional mechanism for PP-1 to promote survival of lens epithelial cells occurs through modulating Rb phosphorylation status to upregulate 53 and also via altering p53 phosphorylation status to control its transcriptional activity. The present proposal aims at delineating 1) the PP-1 dephosphorylation sites in p53; 2 ) the effect of PP-1 dephosphorylation on p53 function and 3) the mechanism by which Rb hyperphosphorylation induces p53 upregulation. Experimentally, human and rabbit lens epithelial ceils, and p53-/-mouse lens epithelial cells will be used as testing systems. Various molecular and cellular biology techniques will be used to conduct the proposed studies. Considering the critical roles of p53 and Rb in lens development and pathology, our proposed studies will reveal novel information on their functional pathways and also on the functional mechanisms of PP-1, which will contribute to fundamental aspects of lens development and pathology.
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DOI: 10.2174/156652412802480835
发表时间: 2012-08
期刊: Current molecular medicine
影响因子: 2.5
作者: [F-Y Liu;X-C Tang;M. Deng;P. Chen;W. Ji;X. Zhang;L. Gong;Z. Woodward;J. Liu;L. Zhang;S. Sun;J.-P. Liu;K. Wu;M.-X. Wu;X.-L. Liu;M. Yu;Y. Liu;D. W. Li]
通讯作者: F-Y Liu;X-C Tang;M. Deng;P. Chen;W. Ji;X. Zhang;L. Gong;Z. Woodward;J. Liu;L. Zhang;S. Sun;J.-P. Liu;K. Wu;M.-X. Wu;X.-L. Liu;M. Yu;Y. Liu;D. W. Li
The goldfish SG2NA gene encodes two alpha-type regulatory subunits for PP-2A and displays distinct developmental expression pattern.
金鱼 SG2NA 基因编码 PP-2A 的两个 α 型调节亚基,并显示出不同的发育表达模式。
DOI: 10.4137/grsb.s2764
发表时间: 2009
期刊: Gene regulation and systems biology
影响因子: --
作者: [Ma,Hai-Li, Peng,Yun-Lei, Gong,Lili, Liu,Wen-Bin, Sun,Shuming, Liu,Jiao, Zheng,Chun-Bing, Fu,Hu, Yuan,Dan, Zhao,Junqiong, Chen,Pei-Chao, Xie,Si-si, Zeng,Xiao-Ming, Xiao,Ya-Mei, Liu,Yun, Li,DavidWan-Cheng]
通讯作者: Li,DavidWan-Cheng
DOI: 10.1002/jez.b.21332
发表时间: 2009-11
期刊: Journal of experimental zoology. Part B, Molecular and developmental evolution
影响因子: --
作者: [Ya Xiao;Lili Chen;Jiao Liu;Wen-bin Liu;He-ge Chen;Li-Jun Zou;Yun Liu;David Wan-cheng Li]
通讯作者: Ya Xiao;Lili Chen;Jiao Liu;Wen-bin Liu;He-ge Chen;Li-Jun Zou;Yun Liu;David Wan-cheng Li
Exciting discoveries about new p53 target genes, cancer drugs and diagnostic tools, and mechanisms of various human diseases.
关于新的 p53 靶基因、癌症药物和诊断工具以及各种人类疾病机制的令人兴奋的发现。
DOI: 10.2174/156652412802480934
发表时间: 2012
期刊: Current molecular medicine
影响因子: 2.5
作者: [Li,DavidWan-Cheng]
通讯作者: Li,DavidWan-Cheng
17
    Regulation of Apoptotic Signaling Pathways by Alpha-Crystallins in the Ocular Len
    Regulation of Apoptotic Signaling Pathways by Alpha-Crystallins in the Ocular Len
    Antiapoptotic Mechanism of Protein Phosphatase-1 in Lens
    • 批准号:
      6917472
    • 项目类别:
    • 资助金额:
      $30.0万
    • 财政年份:
      2005
    • 负责人:
      David W Li
    • 依托单位:
    Antiapoptotic Mechanism of Protein Phosphatase-1 in Lens
    海外基金