Targeting HMGA1 in Pancreatic Tumor Progression
Targeting HMGA1 in Pancreatic Tumor Progression
批准号:
7643594
负责人:
Linda M S Resar
金额:
$8.2万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-03-01 至 2011-02-28
关键词:
AccountingAdenocarcinoma CellAgarAutopsyBindingBinding ProteinsBiological MarkersCancer BiologyCancer cell lineCellsCessation of lifeChromatinDevelopmentDiseaseDisease ProgressionEnsureEventExperimental ModelsFutureGene ExpressionGenesGenetic TranscriptionGoalsGrantHMGA1 geneHMGA1b ProteinHumanIn VitroLaboratoriesLeadLesionMalignant NeoplasmsMalignant neoplasm of pancreasMicroarray AnalysisModelingMolecularNeoplasm MetastasisNude MiceOncogenesOncologistPancreasPancreatic Ductal AdenocarcinomaPathogenesisPathologistPathway interactionsPatientsPhenotypePilot ProjectsPrincipal InvestigatorProtein IsoformsProteinsProtocols documentationReagentResearchResearch PersonnelResectedRoleSamplingSeriesSpecimenStaining methodStainsStaphylococcal Protein ATestingTissue MicroarrayTissuesTumor TissueWorkXenograft ModelXenograft procedureadvanced diseaseanticancer researchbasecancer cellcellular engineeringcopingcyclooxygenase 2designeffective therapyexperienceimmunoreactivityin vivoinhibitor/antagonistkillingsmouse modelmultidisciplinarynew technologyoutcome forecastoverexpressionpancreas xenograftpancreatic neoplasmpancreatic tumorigenesispre-clinicalpromoterprotein functionpublic health relevancesuccesstherapeutic targettumortumor progressiontumorigenesis
中文摘要
描述(由申请人提供):胰腺导管腺癌(PDA)是一种高度致命的恶性肿瘤,每年在世界范围内造成超过16万人死亡。大多数患者患有无法手术的转移性疾病,目前尚无有效的治疗方法。因此,迫切需要研究pda的进展情况,以便设计更合理、更有针对性的治疗方法。我们正在研究导致PDA肿瘤进展的分子途径。我们的重点是HMGA1癌基因,该基因编码HMGA1a和HMGA1b蛋白亚型。这些染色质结合蛋白在调节基因表达中起作用。我们的初步研究表明HMGA1在人PDA中过表达,在侵袭性、转移性肿瘤中表达水平高,但在正常胰腺或早期前体病变中不表达。我们还发现HMGA1a与活化的RAS癌基因合作,并在来源于正常胰腺组织的培养人胰腺细胞中赋予转化表型。具体来说,经过工程改造过表达活化RAS和HMGA1a的细胞在软琼脂和裸鼠肿瘤中形成病灶。抑制HMGA1在转移中的功能,人PDA细胞在体外阻断转化表型,并在体内原位PDA小鼠模型中转移。这些发现表明HMGA1促进PDA的肿瘤进展。我们还发现HMGA1在一些肿瘤中上调环氧化酶-2 (COX-2)基因。COX-2基因在包括pda在内的人类癌症中高度表达,并被认为与肿瘤发生有关。我们的初步结果显示,高表达HMGA1的pda中COX-2蛋白水平较高。在一项临床前先导研究中,我们还发现COX-2抑制剂可以阻断人类PDA异种移植裸鼠的肿瘤发生。基于这些发现,我们假设HMGA1-COX-2通路促进PDA的肿瘤进展。使用我们独特的实验试剂,我们现在提出验证我们的假设,具体目的如下:1)确定HMGA1a和COX-2蛋白水平是否与PDA的晚期疾病相关。2 .确定COX-2是否是PDA中HMGA1的下游靶标;在我们的实验模型中,确定靶向HMGA1-COX-2通路是否有效阻断PDA肿瘤进展。这些研究的结果将增强我们对导致胰腺癌进展的分子途径的理解,并使我们能够开发更好的治疗方法。公共卫生相关性:迫切需要研究胰腺癌的合理治疗方法,因为几乎所有胰腺癌患者都死于疾病进展。仅今年一年,美国就有3万多人死于胰腺癌,而全球有16万人死于胰腺癌。在这项资助中,我们建议研究确定胰腺癌发展中重要的细胞通路,重点是那些可以靶向治疗的细胞通路。
英文摘要
DESCRIPTION (provided by applicant): Pancreatic ductal adenocarcinomas (PDA) are highly lethal malignancies accounting for over 160,000 deaths worldwide each year. Most patients present with inoperable, metastatic disease for which there are no effective therapies. Thus, research is urgently needed to determine how PDAs progress in order to design more rational, targeted therapy. We are studying the molecular pathways that lead to tumor progression in PDA. Our focus is the HMGA1 oncogene, which encodes the HMGA1a and HMGA1b protein isoforms. These chromatin binding proteins function in regulating gene expression. Our preliminary studies show that HMGA1 is overexpressed in human PDA, with high levels in invasive, metastatic tumors, but no expression in normal pancreas or early precursor lesions. We also discovered that HMGA1a cooperates with the activated RAS oncogene and confers a transformed phenotype in cultured human pancreatic cells derived from normal pancreatic tissue. Specifically, cells engineered to overexpress activated RAS and HMGA1a form foci in soft agar and tumors in nude mice. Inhibiting HMGA1 function in metastatic, human PDA cells blocks the transformed phenotype in vitro and metastases in an orthotopic mouse model for PDA in vivo. These findings suggest that HMGA1 promotes tumor progression in PDA. We also showed that HMGA1 up-regulates the cyclo-oxygenase-2 (COX-2) gene in some tumors. The COX-2 gene is highly expressed in human cancers, including PDAs, and is thought to contribute to tumorigenesis. Our preliminary results show high levels of COX-2 protein in PDAs with high expression of HMGA1. In a preclinical pilot study, we also found that COX-2 inhibitors block tumorigenesis in nude mice with human PDA xenografts. Based on these findings, we hypothesize that the HMGA1-COX-2 pathway promotes tumor progression in PDA. Using our unique experimental reagents, we now propose to test our hypothesis with the following Specific Aims: 1.) Determine if HMGA1a and COX-2 protein levels correlate with more advanced disease in PDA, 2.) Determine if COX-2 is a downstream target of HMGA1 in PDA, and, 3.) Determine if targeting the HMGA1-COX-2 pathway is effective in blocking PDA tumor progression in our experimental models. Results from these studies will enhance our understanding of the molecular pathways that lead to pancreatic cancer progression and should enable us to develop better therapies. PUBLIC HEALTH RELEVANCE: There is a dire need for research to identify rational therapies for pancreatic cancer because virtually all patients with this cancer die from disease progression. This year alone, over 30,000 people in the U.S. will succumb to pancreatic cancer with over 160,000 deaths worldwide. In this grant, we propose studies to identify cellular pathways important in the development of pancreatic cancer with emphasis on those that could be targeted in therapy.
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会议论文
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Developing Nanotechnology to Target HMGA1 in Pancreatic Cancer
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Targeting the let-7-HMGA2 Network in Metastatic Progression in Pancreatic Cancer
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HMGA1 in Tumor Progression in Breast Cancer
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The Role of HMG-I/Y in Uterine Cancer
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Mechanisms of Neoplastic Transformation by HMG-I/Y
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HMG-1/Y AND NEOPLASTIC TRANSFORMATION
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海外基金