Study of Rag1 hypomorphic mice and their rescue by lentiviral gene transfer
Study of Rag1 hypomorphic mice and their rescue by lentiviral gene transfer
批准号:
7694983
负责人:
Gustavo Mostoslavsky
金额:
$21.11万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-09-30 至 2011-08-31
关键词:
AffectAllelesAllogenicAnimal ModelAreaAutoimmune ProcessAutologousAutomobile DrivingB-LymphocytesBiochemicalBiological AssayBone Marrow TransplantationCell LineCell physiologyCharacteristicsClinicalClinical ResearchCombined Modality TherapyComprehensionDNADNA Sequence RearrangementDataDefectDevelopmentDiseaseElementsEnhancersGene ExpressionGene TransferGenesGenetic Enhancer ElementGenetic RecombinationGenomicsGoalsHematopoiesisHematopoieticHematopoietic Stem Cell TransplantationHematopoietic stem cellsHumanImmuneImmune responseImmunologic Deficiency SyndromesImmunologic ReceptorsImpairmentIn VitroInfectionInsertional MutagenesisLeadLentivirus VectorLifeLymphopoiesisMediatingMethodsModelingMolecularMorbidity - disease rateMusMutationOrganPatientsPeripheralPlayProceduresPropertyProteinsPublishingRag1 MouseReagentRegulatory ElementReporter GenesResearchResearch ProposalsResidual stateRiskRoleSevere Combined ImmunodeficiencySpecific qualifier valueSyndromeSyngeneic Bone Marrow TransplantationT-LymphocyteTherapeuticTissuesTransplantationUpper armV(D)J RecombinationViral Vectorbasedesignexperiencegene correctiongene therapyin vivomortalitymutantmutant mouse modelnovelnovel therapeutic interventionpreclinical studyprogramspromoterpublic health relevancereconstitutiontherapy developmenttool
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Hypomorphic mutations in the Rag1 gene are the main cause of Omenn syndrome (OS) in humans, a unique combined immunodeficiency associated with severe autoimmune manifestations. OS patients suffer from overwhelming infections accompanied with severe T-cell infiltrate and organ damage. The disease is rapidly fatal unless treated by allogeneic hematopoietic stem cell transplantation (HSCT), however the results of this procedure are less satisfactory when no matched donors are available. Based on the experience of HSCT from HLA-identical donors, it can be anticipated that a new treatment for Rag1 hypomorphic mutants based on bone marrow transplantation of genetically corrected highly purified HSCs would be highly beneficial. In order to design such therapeutic approach it is first crucial to: a) define discrete genomic elements for appropriate Rag1 gene expression in a context of a viral vector, b) characterize the Rag1 hypomorphic protein in vitro and in vivo and its ability to compete with the wild-type Rag1 molecule, and c) establish a syngeneic bone marrow transplantation model for the rescue of newly generated Rag1 hypomorphic mice, that are characterized by a severe impairment in T- and B-lymphocyte development, associated with peripheral expansion of activated T cells, as observed in humans with hypomorphic Rag defects. This proposal presents preliminary data showing the design of new lentiviral vectors for the expression of Rag1 and their use for transduction of highly purified HSCs, in addition to the initial characterization of a newly developed hypomorphic Rag1 mouse. The proposed research program will focus on three aspects of Rag1 hypomorphism, which will significantly accelerate the advancement of the clinical development of a lentiviral based therapy for Rag related combined immunodeficiency. Lentiviral vectors carrying various genomic elements driving Rag1 expression will be studied in vivo for their ability to induce specific and appropriate gene expression. The ability of wild-type Rag1 protein to induce functional rearrangement when competing with its hypomorphic counterpart will be studied using an in vitro rearrangement assay and in pre-B cells isolated from Rag1 hypomorphic mice. Finally, results from aims 1 and 2 of this proposal will serve as the basis for preclinical studies aimed at rescuing Rag1 hypomorphic mice using lentiviral transduction of HSCs. Overall, this study will be important to facilitate development of novel forms of treatment for combined immunodeficiency due to hypomorphic RAG gene defects, based on gene transfer. PUBLIC HEALTH RELEVANCE: Immunodeficiencies due to Rag1 mutations are responsible for considerable mortality and available treatments are still limited. This proposal establishes the basis for the development of a new therapeutic approach for Rag related immunodeficiencies based on correction of hematopoietic stem cells by gene transfer.
期刊论文(2)
专著(0)
科研奖励(0)
会议论文
Excision of reprogramming transgenes improves the differentiation potential of iPS cells generated with a single excisable vector.
重编程转基因的切除可改善用单个可置矢量产生的IPS细胞的分化潜力。
DOI:
10.1002/stem.255
发表时间:
2010-01
期刊:
Stem cells (Dayton, Ohio)
影响因子:
--
作者:
[Sommer CA, Sommer AG, Longmire TA, Christodoulou C, Thomas DD, Gostissa M, Alt FW, Murphy GJ, Kotton DN, Mostoslavsky G]
通讯作者:
Mostoslavsky G
DOI:
10.1016/j.exphem.2016.01.010
发表时间:
2016-05
期刊:
Experimental hematology
影响因子:
2.6
作者:
[Thomas DD, Sommer AG, Balazs AB, Beerman I, Murphy GJ, Rossi D, Mostoslavsky G]
通讯作者:
Mostoslavsky G
Dissecting the mechanisms of intestinal epithelial injury by Ebola virus using iPSC-derived intestinal organoids
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批准号:10659217
-
项目类别:
-
资助金额:$21.25万
-
财政年份:2022
-
负责人:Gustavo Mostoslavsky
-
依托单位:
Dissecting the mechanisms of intestinal epithelial injury by Ebola virus using iPSC-derived intestinal organoids
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批准号:10538716
-
项目类别:
-
资助金额:$27.38万
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财政年份:2022
-
负责人:Gustavo Mostoslavsky
-
依托单位:
The Role of SIRT6 and Metabolism in APC Mediated Tumorigenesis
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批准号:9208290
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项目类别:
-
资助金额:$5.55万
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财政年份:2016
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负责人:Gustavo Mostoslavsky
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依托单位:
Antiviral responses in iPSC-derived human primary cells to Ebola virus infection
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批准号:9172844
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项目类别:
-
资助金额:$27.0万
-
财政年份:2016
-
负责人:Gustavo Mostoslavsky
-
依托单位:
Study of Rag1 hypomorphic mice and their rescue by lentiviral gene transfer
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批准号:7533036
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项目类别:
-
资助金额:$25.1万
-
财政年份:2008
-
负责人:Gustavo Mostoslavsky
-
依托单位:
海外基金