Nit1-mediated signaling in T cells
Nit1-mediated signaling in T cells
批准号:
7708394
负责人:
JIANKE ZHANG
金额:
$19.31万
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:
2009-06-05 至 2011-05-31
关键词:
AffectAntigen ReceptorsApoptosisApoptoticBiochemicalBiochemical GeneticsCaenorhabditis elegansCarcinogensCaspaseCell DeathCell LineCessation of lifeChemicalsChromosomesDNA DamageDataDefectDevelopmentDominant-Negative MutationDrosophila melanogasterEctopic ExpressionEventGenesGoalsHerbicidesHomeostasisImmune systemIn VitroIncidenceKnockout MiceLeadMalignant NeoplasmsMalignant lymphoid neoplasmMammalsMediatingMediator of activation proteinMolecularMusMutant Strains MiceMutationNitrilasePathway interactionsPeripheralPhysiologicalPlantsPlayPopulationPredispositionPreventiveProteinsRoleSeriesSignal PathwaySignal TransductionStimulusStructureT-Cell ActivationT-Cell ProliferationT-LymphocyteTherapeuticTumor SuppressionTumor Suppressor Proteinscytokineflyfusion genegenetic analysishuman tissuein vivoirradiationkidney cellmutantneoplastic cellnovelpositional cloningpublic health relevancereceptorreconstitutionresponsetumorwound
中文摘要
描述(由申请人提供):哺乳动物Nit 1蛋白与细菌和植物腈水解酶同源。以往的研究表明,Nit 1在创伤和除草剂诱导的细胞凋亡中发挥作用。在苍蝇和蠕虫中,Nit 1融合到Fhit肿瘤抑制因子的5'端。因此,有人认为Nit 1可能与Fhit通路在功能上相互作用。Fhit蛋白是一种肿瘤抑制因子。Fhit的体细胞丢失与多种癌症相关。Fhit的缺失导致小鼠中自发性淋巴恶性肿瘤的易感性。也有证据表明,Nit 1缺乏导致小鼠诱导肿瘤的发生率增加。Fhit和Nit 1的抑瘤作用的分子机制尚不清楚。已有研究表明Fhit或Nit 1的异位表达可诱导肿瘤细胞凋亡,这需要caspase激活,但不依赖于Bcl-2和Bcl-xL。此外,显性失活突变体FADD可抑制Fhit诱导的细胞凋亡.我们和其他人以前已经证明,FADD是介导的死亡受体启动的外源性凋亡信号通路。Fas死亡受体诱导的细胞凋亡在免疫系统的稳态中起重要作用。为了帮助理解Nit 1在T细胞中的生理功能,我们对Nit 1敲除小鼠进行了初步分析。这些突变小鼠含有正常数量的胸腺和外周T细胞亚群。我们的数据表明,Nit 1-/- T细胞在Fas和Cainduced凋亡中有轻度缺陷。虽然Nit 1可能在DNA损伤诱导的肾细胞凋亡中发挥作用,但我们的初步数据表明,Nit 1缺陷型T细胞中由各种刺激诱导的凋亡,包括由于3-辐射或化学处理引起的DNA损伤,不受影响。出乎意料的是,我们发现Nit 1缺陷导致通过抗原受体刺激诱导的T细胞过度增殖反应。在这个应用中,我们提出了一系列的生物化学,遗传学和免疫学分析,以帮助了解Nit 1的负调节T细胞增殖的新功能。具体而言,我们的目标是(1)分析Nit 1在T细胞凋亡中的功能;(2)了解Nit 1在T细胞增殖中的非凋亡功能;(3)通过反向遗传学确定Nit 1的功能结构域。公共卫生相关性:在本申请中,我们描述了一项研究Nit 1蛋白的科学计划,该蛋白在免疫系统功能和癌症中起着至关重要的作用。研究结果将促进有效预防和治疗方法的开发。
英文摘要
DESCRIPTION (provided by applicant): The mammalian Nit1 protein is homologous to bacterial and plant nitrilases. Previous studies have shown that Nit1 plays a role in wound and herbicide induced apoptosis. In flies and worms Nit1 is fused to the 5' end of the Fhit tumor suppressor. Therefore, it has been suggested that Nit1 may interact functionally with the Fhit pathway. The Fhit protein is a tumor suppressor. Somatic loss of Fhit is associated with a wide variety of cancers. Deletion of Fhit results in predisposition to spontaneous lymphoid malignancy in mice. There was also evidence showing that Nit1 deficiency lead to increased incidence of induced tumors in mice. The molecular mechanism involved in the tumor suppressing function of Fhit and Nit1 is not clear. Previous studies have shown that ectopic expression of Fhit or Nit1 can induce apoptosis in tumor cells, which requires caspase activation but is independent of Bcl-2 and Bcl-xL. Furthermore, Fhit- induced apoptosis can be inhibited by dominant negative mutant FADD. We and others have previously demonstrated that FADD is a mediator of the extrinsic apoptotic signaling pathways initiated by death receptors. Apoptosis induced by the Fas death receptor plays an important role in homeostasis in the immune system. To help understand the physiological function of Nit1 in T cells, we have performed preliminary analyses of Nit1 knockout mice. These mutant mice contained normal numbers of thymic and peripheral T cell sub populations. Our data showed that Nit1-/- T cells had a mild defect in Fas and Cainduced apoptosis. Although Nit1 may play a role in DNA-damage induced apoptosis in kidney cells, our preliminary data indicated that that apoptosis induced by a variety of stimuli including DNA damages due to 3- irradiation or chemical treatments was not affected in Nit1-deficient T cells. Unexpectedly, we found that Nit1 deficiency resulted in hyperproliferative responses in T cells induced through the antigen receptor stimulation. In this application, we propose an array of biochemical, genetic and immunological analyses to help understand the novel function of Nit1 in negatively regulating T cell proliferation. Specifically, our aims are (1) to analyze the function of Nit1 in T cell apoptosis; (2) to understand the non-apoptotic function of Nit1 in T cell proliferation; (3) to determine the functional domains of Nit1 by reverse genetics. PUBLIC HEALTH RELEVANCE: In this application, we describe a scientific plan to study the Nit1 protein which plays an essential role in immune system functions, and cancer. The results will facilitate the development of effective preventive and therapeutic approaches.
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