H3K79 Methylation in Hematopoietic Stem Cell Development and MLL-Rearranged Leuk
H3K79 Methylation in Hematopoietic Stem Cell Development and MLL-Rearranged Leuk
批准号:
8512771
负责人:
KATHRIN M BERNT
金额:
$13.15万
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:
2010-08-01 至 2015-07-31
关键词:
Acute Lymphocytic LeukemiaAcute Myelocytic LeukemiaAddressAdultAffectBenignBindingBiologyBone MarrowBone Marrow CellsCell CycleCell LineCell MaintenanceCell SurvivalCellsChimeric ProteinsChromatinClinicalCollaborationsDataDevelopmentDevelopment PlansDown-RegulationEpigenetic ProcessExcisionFoundationsFrequenciesGene ExpressionGene Expression RegulationGeneticGenetic ProgrammingGenomicsGrowth and Development functionHematologyHematopoiesisHematopoieticHematopoietic Stem Cell TransplantationHematopoietic stem cellsHistone H3HistonesHomeostasisHumanImmunophenotypingIn VitroInduction of ApoptosisKnock-in MouseKnock-outKnockout MiceLaboratoriesLeadershipLeukemic CellLysineMLL geneMLLT2 geneMLLT3 geneMaintenanceMalignant - descriptorMalignant NeoplasmsMediatingMethylationMethyltransferaseModelingModificationMolecular BiologyMolecular ProfilingMusMyeloid-Lymphoid Leukemia ProteinPathway interactionsPhenotypePlayProteomicsPublishingRNARegulationResearchResourcesRoleSeriesStem Cell DevelopmentStem cell transplantStem cellsTestingTherapeuticTranscriptional RegulationTransferaseTransplantationcareercareer developmentcell transformationchromatin modificationgenome-widehistone modificationin vivoinhibitor/antagonistinsightknock-downleukemialeukemic stem cellleukemogenesisloss of functionmouse modelnovel therapeuticsoncologyoutcome forecastprogenitorrecombinasereconstitutionresearch studyself-renewalsmall moleculestemtherapeutic target
中文摘要
描述(由申请人提供):本人提出5年职业发展计划,旨在了解表观遗传变化在正常造血发育和mll重排白血病中的作用,同时建立造血干细胞移植的学术生涯。我将在分子生物学和临床血液学/肿瘤学的基础上,在Stuart Orkin博士和Scott Armstrong博士的领导下,发展表观遗传调控、造血干细胞和白血病生物学方面的专业知识。Orkin博士是造血发育和全基因组遗传、表观遗传和蛋白质组学研究的先驱和世界领导者。阿姆斯特朗博士在基因组方法和MLL重排白血病的表观遗传变化方面处于世界领先地位。近年来,表观遗传修饰已经开始被认为是一个动态的和精细调节的过程,涉及转录控制和主要的细胞命运决定。组蛋白甲基转移酶Dot1l在赖氨酸79位点甲基化组蛋白3 (H3K79),最近被认为是混合谱系白血病(MLL)基因重排白血病的关键成分。未发表的数据也指出了它在早期造血发育中的基本作用。我们已经为Dot1l生成了一个条件功能丧失小鼠模型,我们将使用这个模型直接解决Dot1l在造血和白血病中的作用。在具体目标1中,我们将描述在造血发育和稳定状态成人造血过程中dot11失活的造血表型。我们将通过一系列遗传和移植实验来评估胚胎造血发育、干细胞和祖细胞频率、自我更新和体外和体内分化。我们还将研究H3K79甲基化的缺失如何在全基因组水平上影响造血干细胞中其他染色质修饰。在特定目标2中,我们将验证通过mll融合蛋白错误募集DOT1L是mll介导的白血病发生的基本步骤,并且是白血病细胞存活所必需的假设。为此,我们将在条件Dot1l敲除小鼠模型中评估Mll-Af4和Mll-Af9共同融合物诱导的白血病的发展和维持。我们将在人mll重排白血病细胞中进行DOT1L sh-RNA敲除实验。此外,我们计划与Stuart Schreiber博士合作,利用我们的模型来验证潜在的DOT1L小分子抑制剂。这些目标的实现将阐明良性和恶性造血中染色质调控的基本机制。
英文摘要
DESCRIPTION (provided by applicant): I present a 5-year career development plan that seeks to understand the role of epigenetic changes in normal hematopoietic development and MLL-rearranged leukemia, while establishing an academic career in Hematopoietic Stem Cell Transplantation. I will build on my strong foundation in molecular biology and clinical hematology/oncology to develop expertise in epigenetic regulation, hematopoietic stem cell, and leukemia biology under the leadership of Dr. Stuart Orkin and Dr. Scott Armstrong. Dr Orkin is a pioneer and world leader in hematopoietic development and genome wide genetic, epigenetic and proteomic studies. Dr Armstrong is a world leader in genomic approaches and epigenetic changes in MLL rearranged leukemias. In the recent years, epigenetic modifications have started to be recognized as a dynamic and finely regulated processe involved in transcriptional control and major cell fate decisions. The histone methyl transferase Dot1l, which methylates histone 3 at lysine 79 (H3K79), has recently been implicated as a crucial component in mixed lineage leukemia (MLL) gene rearranged leukemias. Unpublished data also point to a fundamental role in early hematopoietic development. We have generated a conditional loss of function mouse model for Dot1l, and we will use this model to directly address the role of Dot1l in hematopoiesis and leukemia. In specific aim 1 we will characterize the hematopoietic phenotype of Dot1l inactivation during hematopoietic development and steady state adult hematopoiesis. We will assess embyonic hematopoietic development, stem and progenitor cell frequencies, self-renewal and differentiation in vitro and in vivo through a series of genetic and transplantation experiments. We will also investigate how loss of H3K79 methylation affects other chromatin modifications in hematopoietic stem cells on a genome wide level. In specific aim 2 we will test the hypothesis that mis-recruitment of DOT1L through MLL-fusion proteins is a fundamental step in MLL-mediated leukemogenesis, and required for leukemia cell survival. To this end, we will assess the development and maintenance of leukemia induced by the common fusions Mll-Af4 and Mll-Af9 in our conditional Dot1l knockout mouse model. We will conduct DOT1L sh-RNA knock down experiments in human MLL-rearranged leukemia cell. In addition, we plan to utilize our models to validate potential small molecule inhibitors for DOT1L in collaboration with Dr. Stuart Schreiber. Execution of these aims will elucidate fundamental mechanisms of chromatin regulation in benign and malignant hematopoiesis.
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