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DESCRIPTION (provided by applicant): The goal of this research project has been and remains to define the mechanism responsible for the resistance of tumor cells with abnormal expression of the Bcl-2 oncogene to cancer chemotherapy agents. Bcl-2 is the prototypic member of a family of proteins, whose main function appears to be the regulation of apoptosis. Bcl-2 is highly expressed in a variety of human cancers and provides a growth advantage to tumors by blocking apoptosis during tumor progression. However, this block also renders such tumor cells resistant to anticancer therapies including most cancer chemotherapy drugs that rely on apoptosis as their primary mode of cell killing. Indeed, Bcl-2 expression produces a multi-drug resistance (MDR) phenotype. The mechanism by which Bcl-2 regulates apoptosis is not understood. We have previously shown that Bcl-2 expressing cells have higher intracellular levels of glutathione (GSH). As we demonstrate in this application, the mitochondria from Bcl-2 expressing cells also have higher GSH levels and have enhanced capacity to actively transport GSH from the cytosol into mitochondria. These are novel findings that are entirely consistent with the ability of Bcl-2 to suppress mitochondrial apoptosis; it is our contention that MDR due to Bcl-2 expression could be reversed by inhibiting or reversing Bcl-2's enhancement of mitochondrial GSH levels. Therefore, in this application, Specific Aims 1 and 2 are directed at characterizing this effect of Bcl-2 on mitochondrial GSH transport and testing the hypothesis that the level of mitochondrial GSH directly regulates mitochondrial apoptosis. In Aim 3, we propose to follow up on a new lead and investigate whether Bcl-2 protein is redistributed to the plasma membrane after cells receive an apoptotic signal. Finally, we propose in Specific Aim 4 to investigate strategies for overcoming Bcl-2 mediated MDR through the use of drugs that enable GSH efflux from cells or mitochondria. The significance of this project relates to the problem of MDR in cancer therapeutics. It is our central hypothesis that understanding the biochemical and molecular basis for Bcl-2's ability to block anticancer-drug induced apoptosis will lead to the development of strategies for reversing this drug resistance and enhancing therapeutic effects.
期刊论文(20)
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科研奖励(0)
会议论文
Paclitaxel restores radiation-induced apoptosis in a bcl-2-expressing, radiation-resistant lymphoma cell line.
紫杉醇可恢复表达 bcl-2 的抗辐射淋巴瘤细胞系中辐射诱导的细胞凋亡。
DOI: 10.1016/s0360-3016(00)01435-8
发表时间: 2001
期刊: International journal of radiation oncology, biology, physics
影响因子: --
作者: [Nguyen,LN, Munshi,A, Hobbs,ML, Story,MD, Meyn,RD]
通讯作者: Meyn,RD
Restoration of bax in prostate cancer suppresses tumor growth and augments therapeutic cell death induction.
前列腺癌中 bax 的恢复可抑制肿瘤生长并增强治疗性细胞死亡诱导。
DOI: --
发表时间: 2001
期刊: Anticancer research.
影响因子: --
作者: [Honda,T, Gjertsen,BT, Spurgers,KB, Briones,F, Lee,SJ, Hobbs,ML, Meyn,RE, Roth,JA, Logothetis,C, McDonnell,TJ]
通讯作者: McDonnell,TJ
Modulating Ca2+ in radiation-induced apoptosis suppresses DNA fragmentation but does not enhance clonogenic survival.
在辐射诱导的细胞凋亡中调节 Ca2 会抑制 DNA 断裂,但不会增强克隆形成的存活。
DOI: 10.1080/095530097144102
发表时间: 1997
期刊: International journal of radiation biology
影响因子: 2.6
作者: [Voehringer,DW, Story,MD, O'Neil,RG, Meyn,RE]
通讯作者: Meyn,RE
ASTRO research fellowship: the role of BCL-2 and glutathione in an antioxidant pathway to prevent radiation-induced apoptosis.
ASTRO 研究奖学金:BCL-2 和谷胱甘肽在抗氧化途径中的作用,以防止辐射诱导的细胞凋亡。
DOI: 10.1016/s0360-3016(98)00203-x
发表时间: 1998
期刊: International journal of radiation oncology, biology, physics
影响因子: --
作者: [Vlachaki,MT, Meyn,RE]
通讯作者: Meyn,RE
6
    Extension of Radiotherapy Research
    Extension of Radiotherapy Research
    GENE THERAPY STRATEGIES TO RADIOSENSITIZE HUMAN TUMOR CELLS
    TUMOR CELL RADIOSENSITIZATION BY ADENOVIRAL-MEDIATED P16
    • 批准号:
      6205352
    • 项目类别:
    • 资助金额:
      $17.49万
    • 财政年份:
      2000
    • 负责人:
      RAYMOND E MEYN
    • 依托单位:
    海外基金