Characterization of Cancer Transcriptomes using Next Generation Sequencing
Characterization of Cancer Transcriptomes using Next Generation Sequencing
批准号:
7871903
负责人:
Christopher A Maher
金额:
$10.3万
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-01 至 2012-06-30
关键词:
AdoptedAutomobile DrivingAwardBase SequenceBioinformaticsBiological MarkersCancer BiologyChimera organismCommon CarcinomaComplementDataData CollectionDetectionDevelopmentDevelopment PlansDiagnosticEnvironmentEvaluationEventExonsFundingGene ExpressionGene Expression ProfileGene FusionGene StructureGenesGeneticGenomeGenomicsGoalsHumanImageryLeadMalignant NeoplasmsMalignant neoplasm of pancreasMalignant neoplasm of prostateManuscriptsMedicineMentorsMethodologyMethodsMichiganMutationNational Center for Integrative Biomedical InformaticsNaturePathologyPathway interactionsPatient CarePerformancePhasePrevalenceProstateProstatic NeoplasmsRNARecurrenceReproduction sporesResearchResearch PersonnelResearch ProposalsResearch TrainingSamplingSequence AnalysisSolidSpecificityTechnologyTestingTherapeuticTranslatingTranslational ResearchUnited States National Institutes of HealthUniversitiesWalkingWorkanticancer researchbasecancer therapycareer developmentclinical applicationcohortcomparative genomic hybridizationcomputing resourcesevidence baseexperiencehigh throughput analysishuman dataimprovedindexingknowledge basemelanomanew therapeutic targetnext generationnovelnovel diagnosticsprognosticpublic health relevancesuccesstherapeutic targettooltumor
中文摘要
描述(由申请人提供):高通量基因组学技术对个性化医疗和新型癌症治疗的影响最终将取决于相应解释数据的能力。因此,申请人的长期目标是通过高通量基因组技术的综合分析,将基于基因组的知识转化为癌症中新的诊断、预后和治疗策略的开发。作为朝着这一奋进迈出的第一步,该建议集中在一个中心假设上,即常见的癌症携带着被非特异性畸变所隐藏的驱动复发性基因融合突变。我们相信下一代癌症转录组测序可以阐明这些驱动基因融合,因此制定了以下具体目标来实现这一目标:(1)采用基因组学数据的整合分析来检测ETS阴性前列腺肿瘤中的新基因融合,(2)进一步开发生物信息学方法来优先考虑偶然嵌合体,并将这些方法应用于黑色素瘤和胰腺癌,和(3)实施基于测序的基因和外显子水平表达异常值谱分析,以评估流行率,并在公开可用的数据收集中提名新的基因融合。总的来说,如果本申请的目的得以实现,我们可能会发现癌症中的新的病原体靶点,这些靶点可以转化为靶向治疗的发展。即使是成功发现一个目标,无论是直接从拟议的工作中发现的,还是由另一个实验室利用本提案开发的方法发现的,都将对我们如何治疗癌症产生重大影响。
密歇根转化病理学中心在使用生物信息学和基因组学研究基因表达,特别是基因融合方面拥有丰富的经验,在前列腺癌中产生了许多生物标志物和治疗靶点,因此是支持申请人的理想环境。这可以通过申请人广泛的初步数据来证明,这导致了多个高影响力的第一作者手稿。鉴于Chinnaiyan博士在指导生物统计学家和生物信息学家成为成功的独立研究者方面的出色记录,他将为当前申请人提供类似的职业发展计划。第一个具体目标将在指导阶段完成,重点是检测前列腺癌中的基因融合,因此提供关键的综合分析,癌症生物学和转化研究培训。独立阶段的重点将放在新建立的癌症转录组项目中嵌合体检测的序列分析和基于RNA-Seq的离群值表达分析上,以揭示新的治疗靶点,这些靶点与导师关于前列腺基因融合的研究重叠最少,但相互补充。总体而言,NIH独立之路奖对于申请人成为急需的综合癌症生物学领域的独立研究者,继续将基于基因组的发现转化为广泛采用的临床应用是必不可少的。
公共卫生相关性:癌症中关键遗传畸变的表征是开发早期诊断标志物和有效治疗靶点的关键。因此,该提案寻求资金,以使用人类肿瘤的下一代转录组测序来检测新的复发性基因融合。由于它们的癌症特异性表达,新型基因融合体作为理想的治疗靶点,可能对我们如何分类和治疗癌症产生重大影响,最终改善患者护理。
英文摘要
DESCRIPTION (provided by applicant): The impact of high-throughput genomics technologies on personalized medicine and novel cancer treatments will ultimately be determined by the ability to interpret the data accordingly. Therefore, the applicant's long-term objective is to translate genome-based knowledge, through integrative analysis of high- throughput genomic technologies, into the development of novel diagnostic, prognostic, and therapeutic strategies in cancer. As an initial step towards this endeavor, this proposal focuses on the central hypothesis that common carcinomas harbor driving recurrent gene fusion mutations that are hidden by non-specific aberrations. We believe that Next Generation Sequencing of cancer transcriptomes may elucidate these driving gene fusions and therefore established the following specific aims to accomplish this: (1) employ integrative analysis of genomics data to detect novel gene fusions in ETS negative prostate tumors, (2) further develop the bioinformatic approaches to prioritize casual chimeras and apply these methods in melanoma and pancreatic cancer, and (3) implement a sequencing based gene- and exon-level expression outlier profile analysis to assess the prevalence, and nominate novel, gene fusions in publicly available data collections. Overall, if the aims of this application are achieved we may reveal novel pathogenomic targets in cancer that can be translated into the development of a targeted therapy. Even the successful discovery of a single target, whether discovered directly from the proposed work or uncovered by another lab leveraging the methodologies developed as a result of this proposal, will have significant impact on how we treat cancer.
The Michigan Center for Translational Pathology has in-depth experience using bioinformatics and genomics for studying gene expression, particularly gene fusions, yielding numerous biomarkers and therapeutic targets in prostate cancer and therefore serves as an ideal environment for supporting the applicant. This can be exemplified by the applicant's extensive preliminary data, which has led to multiple high impact first author manuscripts. Given Dr. Chinnaiyan's excellent record of mentoring biostatisticians and bioinformaticians as they transition into successful independent investigators, he will provide a similar career development plan for the current applicant. The first specific aim, to be completed during the Mentored phase, will focus on detecting gene fusions in prostate cancer and therefore offer critical integrative analysis, cancer biology, and translational research training. The focus of the independent phase will be placed on sequence analysis of chimera detection in newly established cancer transcriptome projects and RNA-Seq based outlier expression analysis to reveal novel therapeutic targets, which will have minimal overlap with, but complements, the mentor's research on prostate gene fusions. Overall, an NIH Pathway to Independence Award will be indispensable for the applicant to become an independent investigator in the much needed field of integrative cancer biology to continue translating genome-based discovering into widely adopting clinical applications.
PUBLIC HEALTH RELEVANCE: Characterization of key genetic aberrations in cancers holds the key to the development of early diagnostic markers and effective therapeutic targets. Therefore this proposal seeks funding to detecting novel, recurrent gene fusions using Next Generation transcriptome sequencing of human tumors. Due to their cancer-specific expression, novel gene fusions serve as ideal therapeutic targets that could have a significant impact on how we classify and treat cancer which will ultimately lead to improved patient care.
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