Mechanisms of Breast Tumor Cell Growth, Motility, and Antiestrogen Response
Mechanisms of Breast Tumor Cell Growth, Motility, and Antiestrogen Response
批准号:
8065421
负责人:
AMY H. BOUTON
金额:
$23.92万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-07-01 至 2014-04-30
关键词:
AddressAdjuvantAdvanced Malignant NeoplasmAntiestrogen TherapyApoptosisApoptoticAromatase InhibitorsBehaviorBreastBreast Cancer CellBreast Cancer TreatmentCancer EtiologyCancer cell lineCell Migration PathwayCell SurvivalCell physiologyCellsCessation of lifeClinicalClinical TrialsCytotoxic ChemotherapyDataData SetDiagnostic Neoplasm StagingDiseaseDisease ProgressionDown-RegulationDrug resistanceEndocrineEndocrine System DiseasesEpithelial Cell ProliferationEstrogen AntagonistsEstrogen Receptor ModulatorsEstrogen Receptor StatusEstrogen ReceptorsEstrogen receptor negativeEstrogen receptor positiveEstrogensExhibitsFoundationsGoalsGrowthHealthHormonalHumanKnowledgeLeadMalignant NeoplasmsMammary NeoplasmsMeasuresMediatingMediator of activation proteinMolecularMolecular ProfilingMusNatureNeoplasm MetastasisOutcomePathway interactionsPatientsPharmaceutical PreparationsPhenotypePlayProcessProductionProteinsRegulationRegulatory ElementResistanceRoleSRC geneSamplingSignal PathwaySignal TransductionSignaling MoleculeSurvival RateTamoxifenTestingTherapeuticTreatment FailureTriad Acrylic ResinTumor stageUp-RegulationWomanXenograft Modelbasecell behaviorcell growthcell motilitycombinatorialdesignhormone therapyhuman BCAR1 proteinmalignant breast neoplasmmigrationneoplastic cellnovelnovel strategiesoutcome forecastoverexpressionprotein functionprotein-tyrosine kinase c-srcreceptor functionresponsetherapy designtumortumor growthtumor progression
中文摘要
描述(由申请人提供):雌激素和雌激素受体(er)是乳腺上皮细胞增殖、分化和凋亡的关键调节因子。因此,er阳性乳腺癌通常采用激素疗法来治疗,这些激素疗法旨在抑制受体功能(抗雌激素)或阻断雌激素的产生(芳香酶抑制剂)。虽然这些治疗已被证明在临床环境中非常有效,但对这些药物的新生和获得性耐药都是一个重大问题。最令人担忧的是,治疗失败往往与疾病进展和转移有关。该建议旨在了解信号轴的调节和功能,该信号轴被假设为这些侵袭性乳腺肿瘤表型的中介。它的重点是三组信号分子,包括蛋白质酪氨酸激酶c-Src,适配器分子p130Cas (Cas)和细胞质分子乳腺癌抗雌激素抵抗-3 (BCAR3)。这些都在晚期癌症产生的乳腺癌细胞系中高度表达,在人类癌症中表达被测量的情况下,侵袭性乳腺肿瘤。我们假设这些蛋白通过上调增殖、存活和细胞迁移途径以及下调凋亡途径来促进对内分泌治疗的抵抗和疾病进展。本提案Aims 1和2中概述的研究将定义由Cas、c-Src和BCAR3激活的控制乳腺肿瘤细胞抗雌激素反应和细胞迁移/侵袭的途径的分子组成和调控。然后,我们将在Aim 3中转向小鼠异种移植模型,以研究抑制Cas-Src-BCAR3通路是否可以使耐药的er阳性乳腺肿瘤对抗雌激素治疗重新敏感,并抑制er阴性肿瘤的生长和转移。该项目的长期目标是了解Cas-Src-BCAR3信号网络的调控、功能和分子组成,以便能够1)更好地预测哪些肿瘤将极有可能表现出耐药性;2)开发治疗方法,使耐药肿瘤对这类药物重新敏感;3)设计组合疗法,规避单药激素治疗的耐药性;4)制定限制乳腺肿瘤转移扩散的新策略。公共卫生相关性:本研究的重点是Cas-Src-BCAR3信号轴,该信号轴被假设在调节er阳性细胞的侵袭性肿瘤表型和对雌激素靶向治疗的抗性的全局反应中发挥核心作用。然而,这些影响并不局限于er阳性细胞;该途径高度活跃的乳腺肿瘤细胞也表现出对细胞毒性治疗的抗性,并增加了迁移/侵袭,与ER状态无关。通过更好地了解Cas、Src和BCAR3信号网络的组成、功能和调控,有可能1)更好地定义分子特征,预测哪些肿瘤内分泌治疗失败;2)开发靶向治疗来阻断不受调控的特定通路,3)考虑使用激素靶向治疗与那些针对不受调控通路的治疗联合使用,以提供最大的乳腺癌治疗效果。
英文摘要
DESCRIPTION (provided by applicant): Estrogen and the estrogen receptors (ERs) are critical regulators of breast epithelial cell proliferation, differentiation, and apoptosis. Consequently, ER-positive breast cancers are frequently treated with hormonal therapies designed to inhibit receptor function (antiestrogens) or block production of estrogens (aromatase inhibitors). While these treatments have proven to be extremely effective in the clinical setting, both de novo and acquired resistance to these drugs are a significant problem. Most concerning is the fact that treatment failure often correlates with disease progression and metastasis. This proposal seeks to understand the regulation and function of a signaling axis that is hypothesized to function as a mediator of these aggressive breast tumor phenotypes. It focuses on a triad of signaling molecules that includes the protein tyrosine kinase c-Src, the adapter molecule p130Cas (Cas), and a cytoplasmic molecule called breast cancer antiestrogen resistance-3 (BCAR3). Each of these is highly expressed in breast cancer cell lines arising from advanced cancers and, in those cases where expression in human cancers has been measured, aggressive breast tumors. We hypothesize that these proteins promote resistance to endocrine therapies and disease progression through up-regulation of proliferative, survival, and cell migration pathways and down-regulation of apoptotic pathways. The studies outlined in Aims 1 and 2 of this proposal will define the molecular composition and regulation of pathways activated by Cas, c-Src, and BCAR3 that control antiestrogen responses and cell migration/invasion of breast tumor cells. We will then turn in Aim 3 to mouse xenograft models to investigate whether inhibition of the Cas-Src-BCAR3 pathway can re-sensitize resistant ER-positive breast tumors to antiestrogen therapies and inhibit the growth and metastasis of ER-negative tumors. The long-term goal of this project is to gain an understanding of the regulation, function, and molecular composition of Cas-Src-BCAR3 signaling networks in order to be able to 1) better predict which tumors will have a high likelihood of exhibiting resistance; 2) develop therapeutic approaches for re-sensitizing resistant tumors to these classes of drugs; 3) design combinatorial therapies that circumvent the resistance to single-agent hormona treatment; and 4) develop novel strategies for limiting metastatic spread of breast tumors. PUBLIC HEALTH RELEVANCE: This study focuses on the Cas-Src-BCAR3 signaling axis, which is hypothesized to play a central role in regulating global responses that contribute to aggressive tumor phenotypes and resistance to estrogen- targeted therapies in ER-positive cells. However, these effects are not restricted to ER-positive cells; breast tumor cells in which this pathway is highly active also exhibit resistance to cytotoxic therapies and increased migration/invasion, irrespective of ER status. By better understanding the composition, function, and regulation of Cas, Src, and BCAR3 signaling networks, it may be possible to 1) better define molecular signatures that will predict which tumors will fail endocrine therapies; 2) develop targeted treatments to block the specific pathways that are deregulated, and 3) consider the use of hormonally- targeted therapies in combination with those targeting the deregulated pathway(s) to provide maximum efficacy of treatment for breast cancer.
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Summer Research Experience in Cancer (SuRE-C)
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Mechanistic aspects of integrin-mediated Yersinia uptake
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Mechanisms of Breast Tumor Cell Growth, Motility, and Antiestrogen Response
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批准号:7843569
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资助金额:$25.2万
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负责人:AMY H. BOUTON
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Mechanisms of breast cancer cell growth & tumorigenicity
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资助金额:$25.09万
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Mechanistic aspects of integrin-mediated Yersinia uptake
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资助金额:$29.35万
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资助金额:$29.12万
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Mechanisms of Breast Tumor Cell Growth, Motility, and Antiestrogen Response
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批准号:7742429
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资助金额:$25.45万
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Mechanistic aspects of integrin-mediated Yersinia uptake
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依托单位:
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依托单位:
Cancer Research Training Program: From Molecular Mechanisms to Therapeutic Strategies
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海外基金