The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
批准号:
8322867
负责人:
Heide L. Ford
金额:
$3.61万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-04-08 至 2016-03-31
关键词:
AddressAdultAdverse effectsBiological AssayBloodBlood VesselsBody partBrainBreast Cancer ModelBreast CarcinomaCancer EtiologyCancer PatientCessation of lifeCharacteristicsComplexDataDevelopmentDiseaseDistantEmbryonic DevelopmentFoundationsGrowthHumanImmunohistochemistryLaboratoriesLeadLuciferasesLungLymphLymphangiogenesisLymphaticLymphatic Endothelial CellsLymphatic MetastasisLymphatic SpreadLymphatic SystemLymphatic vesselMalignant Epithelial CellMalignant NeoplasmsMalignant neoplasm of prostateMammary NeoplasmsMediatingMediator of activation proteinMetastatic toModelingMusNeoplasm MetastasisOrganPhosphoric Monoester HydrolasesPlayPopulationPrimary NeoplasmProcessPrognostic FactorProliferatingPublishingRelapseReporterRoleSignal TransductionSpecimenStagingStem cellsTestingTherapeutic AgentsTimeTissuesTransgenic OrganismsUp-RegulationVascular Endothelial Growth Factor CVascular Endothelial Growth FactorsWomanWorkXenograft ModelXenograft procedureadverse outcomebonebreast lesionbreast tumorigenesiscancer cellchromatin immunoprecipitationcofactordrug developmentembryonic proteinepithelial to mesenchymal transitionin vivoinsightlymph nodesmalignant breast neoplasmmigrationmouse modelneoplastic cellnew therapeutic targetnoveloutcome forecastoverexpressionpromotertherapeutic targettumor
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Breast cancer is the second leading cause of cancer-related deaths among women, with deaths occurring due to the metastatic spread of tumor cells to distant organs. Spread of cancer cells occurs via blood vessels or, particularly important for breast cancer, via the lymphatic system. Although tumor dissemination via the blood has been extensively studied, the mechanisms that lead to lymphatic dissemination are poorly understood. This proposal focuses on understanding a new mechanism of lymphangiogenesis and breast tumor metastatic spread, via control of VEGF-C levels by the Six1/Eya2 transcriptional complex. The hypothesis to be tested is that Six1 overexpression in breast cancers leads to upregulation of VEGF-C, resulting in increased lymphangiogenesis and enhancing the early stages of metastasis including lymphatic dissemination of tumor cells. The ability of Six1 to activate VEGF-C and stimulate lymphatic metastasis is dependent on its interaction with the Eya2 phosphatase co-factor, and on the enzymatic activity of Eya2. If this hypothesis is correct, it will provide important insights into the mechanism of breast cancer metastasis and provide a rationale for a new strategy to therapeutically target lymphatic metastasis by interfering with Six1/Eya2 function through the "druggable" approaches of inhibiting Six1/Eya interaction and/or Eya2 phosphatase activity. To address this hypothesis, we will: 1) Test the hypothesis that VEGF-C is a direct transcriptional target of Six1/Eya2, and that Six1 and Eya2 correlate with VEGF-C and lymphangiogenesis in human breast cancer; 2) Test the hypothesis that VEGF-C is a critical mediator of Six1-induced lymphangiogenesis and metastasis using in vivo mouse metastasis models; and 3) Test the hypothesis that Eya2 is required for Six1-induced lymphangiogenesis and metastasis in vivo, with a specific emphasis on the interaction between Six1 and Eya2, as well as the role of the Eya2 phosphatase activity. Targeting Six1/Eya2 has the potential to inhibit breast cancer both at early (studied in this proposal) and later stages of the disease. Due to the paucity of expression of the Six1/Eya2 developmental regulators in most normal adult tissues, and their re-expression in cancers, therapeutic agents targeting this complex should inhibit lymphangiogenesis and metastasis with limited side effects. Thus the Six1/Eya2 complex is an ideal breast cancer therapeutic target, and work within this proposal will lay the foundation for eventual targeting of the complex.
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会议论文
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Examining the EYA2/MYC axis in Group 3 Medulloblastoma
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批准号:10172986
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资助金额:$42.51万
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财政年份:2018
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Deciphering Mechanisms by which Tumor Cells Collaborate to Mediate Metastasis
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批准号:10053325
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资助金额:$61.38万
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2017 Mammary Gland Biology Gordon Research Conference & Gordon Research Seminar
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批准号:9324532
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资助金额:$1.0万
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财政年份:2017
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Role of Eya3 in regulating the immune microenvironment to promote breast tumor progression
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批准号:10218071
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资助金额:$62.06万
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财政年份:2017
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Role of Eya3 in regulating the immune microenvironment to promote breast tumor progression
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批准号:9751261
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项目类别:
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资助金额:$60.19万
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Developing cancer therapies through targeting the Six1/Eya transcriptional complex
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批准号:8989081
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资助金额:$20.29万
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财政年份:2014
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依托单位:
The anti-tumorigenic and anti-metastatic potential of Eya phosphatase inhibitors
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财政年份:2013
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The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
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The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
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批准号:8447571
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The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
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资助金额:$4.59万
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Identify inhibitors of the Six1/Eya interaction using high throughput screening
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资助金额:$3.78万
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The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
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The Six1/Eya Transcriptional complex as a mediator of lymphangiogenesis and lymph
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批准号:8255466
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资助金额:$36.78万
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Identify inhibitors of the Six1/Eya interaction using high throughput screening
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批准号:8209700
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项目类别:
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资助金额:$3.72万
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财政年份:2011
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负责人:Heide L. Ford
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依托单位:
海外基金