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HEREGULIN (GP30) IN BREAST CANCER TUMOR PROGRESSION

HEREGULIN (GP30) IN BREAST CANCER TUMOR PROGRESSION
HEREGULIN (GP30) 在乳腺癌肿瘤进展中的作用
批准号:
2149614
负责人:
RUTH LUPU
金额:
$14.83万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-09-30 至 1998-08-31

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中文摘要
翻译
癌细胞的生长,特别是乳腺癌的生长 在许多情况下,依赖于称为生长因子的小蛋白质,这种蛋白质将 结合并激活它们的生长因子受体。这些增长中的一个 因子受体是一种erbB-2受体,它在 乳腺癌的预后,在乳腺癌中表达水平很高。 近30%的人类乳腺癌患者。我们最近发现的 GP30/hereglin/NDF使我们能够确定一些相关的但 不同的生物终点,似乎对信号有反应 通过erbB-2/4受体的转导。这些增长的终点, 侵袭性和差异化对 恶性的出现、维持和/或控制,并代表 人类恶性进展评估中已确定的终点 乳腺癌。体外初步研究表明,gp3O诱导了 对erbB-2过表达细胞的双相生长效应。令人惊讶的是,我们 最近观察到erbB-2信号通路可以被调制 通过雌激素受体(ER)起作用。相反,我们 观察到雌激素对erbB-2的下调可被gp3O阻断。 通过erbB-2受体发挥作用。显然,在机械方面, ErbB-2/4/gp3O相互作用需要从治疗的角度来理解 观点,并可能进一步提供对治疗的更多见解 对某些患者有协同作用,或对较大的 女性人数。了解机制(S)通过这些 相互作用的发生将提供一个合理的框架,我们可以用它来检查 相互作用的治疗相关性,并可能用于暴露其他 治疗靶点。这些机制最初将使用 体外细胞培养和生化系统。最终,我们希望这些 实验将促进erbB-2靶向治疗的出现。我们 我们最近测定了gp3O的蛋白质序列,并获得了它的完整序列 长度的cDNAs序列。此外,我们还克隆了另外两种形式 被认为是选择性剪接的分子。我们目前正在 表达这些不同的形式,以确定它们的生物学 效果。Gp3O全长cDNAs的获得将提供工具 我们需要更好地了解联合国的作用机制 ErbB-2癌基因产物及其在乳腺癌中的意义这个 建议的研究旨在确定gp3O在乳房中的相关性 癌症肿瘤进展。具体来说,我们将:L)研究监管 Gp3O通过激素、抗激素和分化因子,2)决定 如果GP30/hereglin对erbB-2/4的结构性激活可以绕过 雌激素反应性乳腺癌细胞的正常雌激素需求,3) 定义gp3O诱导乳腺癌细胞成为 激素非依赖性和获得激素抵抗的机制 表型,4)确定erbB-2/4激活的中断是否可以 恢复荷尔蒙依赖,以及5)确定分离和克隆 与gp3O诱导更具侵袭性的表型有关。我们 相信这些体外和体内研究的结果可能会提供 对乳腺癌诊断、预后和治疗的新见解。
英文摘要
The growth of cancer cells in general and of breast cancer in particular depends, in many cases, upon small proteins termed growth factors that will bind and then activate their growth factor receptors. One of these growth factor receptors is the erbB-2 receptor which plays an important role in the prognosis of breast cancer and is expressed at very high levels in nearly 30% of human breast cancer patients. Our recent discovery of gp30/heregulin/NDF has allow us to identify a number of related but distinct biological endpoints which appear responsive to signal transduction through the erbB-2/4 receptor. These endpoints of growth, invasiveness, and differentiation have clear implications for the emergence, maintenance and\or control of malignancy, and represent established endpoints in the assessment of malignant progression in human breast cancer. Preliminary studies in vitro have shown that gp3O induces a biphasic growth effect on cells with erbB-2 over-expression. Strikingly, we have recently observed that the erbB-2 signalling pathway can be modulated by estrogen acting through the estrogen receptor (ER). Conversely, we observed that down regulation of erbB-2 by estrogen can be blocked by gp3O acting through the erbB-2 receptor. Clearly, mechanistic aspects of the erbB-2/4/gp3O interaction need to be understood from a therapeutic standpoint, and may furthermore provide additional insights into treatment synergy for certain patients, or enhance treatment regimens for a large number of women. Understanding the mechanism(s) through which these interactions occur will provide a rational framework with which we examine the therapeutic relevance of the interaction, and may serve to expose other therapeutic targets. These mechanisms will be examined initially using in vitro cell culture and biochemical systems. Ultimately, we hope that these experiments will facilitate the emergence of erbB-2-targeted therapy. We have recently determined the protein sequence of gp3O and obtained its full length cDNA sequence. In addition, we have cloned two additional forms that are believed to be alternatively spliced molecules. We are currently expressing these different forms, in order to determine their biological effects. The availability of gp3O full length cDNA will provide the tools we need to acquire a better understanding of the mechanism of action of the erbB-2 oncogene product and the significance of erbBA in breast cancer. The proposed studies are designed to define the relevance of gp3O in breast cancer tumor progression. Specifically, we will: l) Study the regulation of gp3O by hormones, anti-hormones and differentiation factors, 2) determine if constitutive activation of erbB-2/4 by gp30/heregulin can bypass the normal estrogen requirement of estrogen responsive breast cancer cells, 3) define the mechanism by which gp3O induces breast cancer cells to became hormone independent and to the mechanism of acquiring an hormone resistant phenotype, 4) determine if disruption of the erbB-2/4 activation can restore hormone dependence, and 5) identify isolate and clone genes that are associated with gp3O induction of a more aggressive phenotype. We believe that results from these in vitro and in vivo studies may provide new insights into breast cancer diagnosis, prognosis and treatment.
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Cyr61-induced breast cancer: Clinical relevance and therapeutic development
  • 批准号:
    7687444
  • 项目类别:
  • 资助金额:
    $30.05万
  • 财政年份:
    2006
  • 负责人:
    RUTH LUPU
  • 依托单位:
Cyr61-induced breast cancer: Clinical relevance and therapeutic development
Cyr61-induced breast cancer: Clinical relevance and therapeutic development
  • 批准号:
    7907697
  • 项目类别:
  • 资助金额:
    $30.65万
  • 财政年份:
    2006
  • 负责人:
    RUTH LUPU
  • 依托单位:
Cyr61-induced breast cancer: Clinical relevance and therapeutic development
  • 批准号:
    7492140
  • 项目类别:
  • 资助金额:
    $29.17万
  • 财政年份:
    2006
  • 负责人:
    RUTH LUPU
  • 依托单位:
海外基金