Modeling ETP-ALL in mouse
Modeling ETP-ALL in mouse
批准号:
8642160
负责人:
GUTIAN XIAO
金额:
$19.46万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-05-01 至 2016-04-30
关键词:
Acute Lymphocytic LeukemiaAnimal ModelBenzo(a)pyreneBiological ModelsCellsChildhoodChildhood Acute Lymphocytic LeukemiaChildhood LeukemiaClinicalDNA BindingDataDevelopmentDissectionEctopic ExpressionEnvironmental CarcinogensEventGene ExpressionGeneticHumanImmunophenotypingIn VitroInvestigationKnock-outKnockout MiceKnowledgeLIM DomainLeadLeukemic CellLinkMalignant Childhood NeoplasmModelingMolecularMolecular GeneticsMolecular ProfilingMusMutationMyelogenousOutcomePathogenesisPatientsPhenotypePhosphorylationPilot ProjectsPlayProteinsProto-Oncogene Proteins c-aktRAS genesRepressionResourcesRoleSamplingStudy modelsT-LymphocyteTestingTherapeuticTumorigenicityWild Type Mousebaseclinically relevantimprovedin vivoinnovationleukemialeukemic stem cellleukemogenesismeetingsmouse modelmutantnovelnovel therapeutic interventionnovel therapeuticsoutcome forecastpreventpublic health relevancestemtooltreatment strategytumor
中文摘要
描述(由申请人提供):早期t细胞前体急性淋巴母细胞白血病(ETP-ALL)是一种新发现的白血病亚型,以前被认为是t细胞ALL(T-ALL)。这种儿童白血病与ETP干细胞样细胞有许多共同的特征,ETP干细胞样细胞保留了分化为t细胞和骨髓谱系的能力。与T-ALL相比,这种干细胞白血病的预后要差得多。目前,尚无治疗这种高致命性儿童癌症的方法,ETP-ALL白血病发生的分子机制仍不清楚。人类ETP-ALL的小鼠模型可以加快对ETP-ALL发展过程中涉及的分子和细胞事件的解剖,并允许测试新的治疗方法。为此,我们发现,在给予苯并[a]芘(B[a]P)(一种与儿童ALL发展相关的环境致癌物)后,PDLIM2敲除小鼠而非野生型小鼠发展出与人类ETP-ALL非常相似的ALL。这些数据不仅揭示了这种含PDZ-LIM结构域的蛋白在抑制ETP-ALL中的重要作用,而且为人类ETP-ALL的动物模型提供了第一线。与小鼠遗传学研究一致,我们的人类研究表明,PDLIM2表达的抑制是人类ETP-ALL发病的关键机制。基于这些创新发现,我们将确定PDLIM2 KO小鼠的etp - all是否与人类的etp - all具有共同的遗传和分子基础。我们将把这些研究重点放在Ras基因激活突变的作用上,因为我们已经证明PDLIM2 KO小鼠的ETP- all中存在Ras基因激活突变,这是B[a]P治疗的已知结果,也是人类ETP- all的标志。除了Ras突变外,我们的前期研究还表明,NF-¿B RelA在PDLIM2 KO小鼠或人类患者的etp - all中构成性激活,重要的是,PDLIM2的重新表达抑制了人和小鼠etp - all中RelA的致病性激活。因此,我们也将确定Ras, RelA和PDLIM2在ETP-ALL发病机制中的作用和机制。这些研究将建立和表征一种新的ETP-ALL模型,并为ETP-ALL白血病发生提供基础知识。这些研究也可能为这种高度致命但无法治愈的儿科白血病提供有效的治疗策略。
英文摘要
DESCRIPTION (provided by applicant): Early T-cell precursor acute lymphoblastic leukemia (ETP-ALL) is a newly identified subtype of leukemia that was previously considered and treated as T-cell ALL(T-ALL). This childhood leukemia shares many features in common with ETP stem-like cells, which retain the ability to differentiate into both T-cell and myeloid lineages. Compared to T-ALL, this stem cell leukemia has a much poorer prognosis. Currently, there is no treatment for this highly lethal pediatric cancer, and the molecular mechanisms underlying ETP-ALL leukemogenesis remain unknown. Mouse models of human ETP-ALL may expedite the dissection of the molecular and cellular events involved in the development of ETP-ALL, and allow the testing of novel therapeutic approaches. To this end, we have found that after administration of benzo[a]pyrene (B[a]P), an environmental carcinogen associated with the development of childhood ALL, PDLIM2 knockout but not wild-type mice develop ALL that closely resembles human ETP-ALL. These data not only reveal an essential role of this PDZ-LIM domain-containing protein in ETP-ALL suppression, but also provide the first line of animal models for human ETP-ALL. In line with the mouse genetic studies, our human studies suggest that repression of PDLIM2 expression is a key mechanism of human ETP-ALL pathogenesis. Based on these innovative findings, we will determine whether ETP-ALLs in PDLIM2 KO mice share a common genetic and molecular basis with their human counterparts. We will focus these studies on the role of activating mutations in Ras genes, since we have shown that ETP- ALLs in PDLIM2 KO mice harbor activating mutations in Ras genes, a known outcome of B[a]P treatment and a hallmark of human ETP-ALL. In addition to Ras mutations, our pilot studies also indicate that NF-¿B RelA is constitutively activated in ETP-ALLs in PDLIM2 KO mice or human patients, and importantly re-expression of PDLIM2 inhibits the pathogenic activation of RelA in both human and murine ETP-ALLs. Thus, we will also determine the role and mechanism by which Ras, RelA and PDLIM2 interact in ETP-ALL pathogenesis. These studies will establish and characterize a novel model of ETP-ALL, and provide fundamental knowledge on ETP-ALL leukemogenesis. These studies may also lead to effective therapeutic strategies for this highly lethal but incurable pediatric leukemia.
期刊论文(2)
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科研奖励(0)
会议论文
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海外基金