Oncogenesis By Jaagsiekte Sheep Retrovirus
Oncogenesis By Jaagsiekte Sheep Retrovirus
批准号:
7323644
负责人:
HUNG Y. FAN
金额:
$33.43万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-02-15 至 2012-05-31
关键词:
AdenocarcinomaAffinity ChromatographyAlanineAlveolarAnimalsBinding ProteinsBronchiolesCarcinogenicity TestsCellsChimera organismClara cellCoculture TechniquesCytoplasmic TailEpithelial CellsGenesHumanHybridsIn VitroInfectionIntegral Membrane ProteinLeadLungLung AdenocarcinomaMalignant neoplasm of lungMembraneMembrane ProteinsMessenger RNAModelingMusMutagenesisOncogenesOncogenicOvine Pulmonary AdenomatosisOvine pulmonary adenocarcinoma virusPathway interactionsPrevention therapyProteinsProteomicsRattusResearchRetroviral VectorRibonucleotide ReductaseRoleScanningScreening procedureSheepSignal TransductionSignal Transduction PathwaySolutionsStem cellsStructureTestingTransgenic MiceTransgenic OrganismsViralVirusYeastsadeno-associated viral vectoralveolar type II cellcell transformationenv Gene Productsimprovedin vivoinhibitor/antagonistmouse modelmutantprotein expressionprotein functionresearch studytumortumorigenesisyeast two hybrid system
中文摘要
描述(申请人提供):我们将继续研究Jaagsiekte绵羊逆转录病毒(JSRV)的致癌转化过程,JSRV是一种与人类肺腺癌非常相似的传染性肺癌-绵羊肺癌(OPA)的起因。肿瘤发生的靶细胞是II型肺泡细胞和Clara细胞。JSRV的独特之处在于它的包膜基因也是一种癌基因;它可以在培养中转化细胞,并在动物体内诱导肿瘤。与其他病毒癌蛋白一样,Env的多个结构域参与了转化。跨膜蛋白(TM)的细胞质尾巴是必需的,但表面蛋白(SU)也参与其中。此外,JSRV编码一个调节活性rej,这是表达来自非剪接病毒mRNA的蛋白质所必需的。Rej是在env区域内编码的,这增加了它也可能参与转换的可能性。本研究的目的有三个:1)Env蛋白TM和rej的结构-功能分析。TM的细胞质尾部的结构将通过溶液核磁共振确定,TM的跨膜和胞外区的潜在作用将被研究,并将评估rej在转化中的潜在作用。2)鉴定参与转化的细胞蛋白。通过酵母双杂交筛选确定的候选蛋白将被测试与JSRV转化的相关性,并将通过串联亲和纯化(TAP)/蛋白质组学方法寻找更多的细胞结合蛋白。3)JSRV的体内外转化。为了更好地反映肺上皮细胞在体内的致癌作用,还将测试原代大鼠和绵羊II型肺细胞(有或没有协同癌基因)以及小鼠细支气管-肺泡干细胞(BASCs)的体外转化。将建立JSRV诱导肺癌的转基因小鼠模型,并将在腺相关病毒(AAV)载体中测试野生型和突变型JSRV Env的致瘤性。这些实验将大大增加我们对这一独特的人类肺癌模型的理解,而已发现的致癌途径可能会阐明人类肺癌中类似的致癌途径。
这项提案将研究一种绵羊病毒(JSRV),这种病毒会导致一种传染性肺癌(OPA),与人类肺癌的一种形式非常相似。这些发现可能会导致对人类肺癌的更好理解,从而可能导致更好的治疗和预防。
英文摘要
DESCRIPTION (provided by applicant): We will continue studies on oncogenic transformation by jaagsiekte sheep retrovirus (JSRV), the cause of a transmissible lung cancer, ovine pulmonary carcinoma (OPA) that closely resembles human lung adenocarcinoma. The target cells for oncogenesis are type II pneumocytes and Clara cells. JSRV is unique in that its envelope gene also is an oncogene; it can transform cells in culture and induce tumors in animals. Like other viral onco-proteins, multiple domains of Env are involved in transformation. The cytoplasmic tail of the transmembrane protein (TM) is essential, but the surface protein (SU) also participates. In addition, JSRV encodes a regulatory activity rej, necessary for expression of proteins from unspliced viral mRNA. Rej is encoded within the env region, which raises the possibility that it may also be involved in transformation. The proposed research has three aims: 1) Structure-function analysis of the Env protein TM, and of rej. The structure of the cytoplasmic tail of TM will be determined by solution NMR, the potential roles of the membrane-spanning and ectodomains of TM will be investigated, and a potential role for rej in transformation will be evaluated. 2) Identification of cellular proteins involved in transformation. Candidate proteins identified by yeast two-hybrid screening will be tested for relevance to JSRV transformation, and additional cellular binding proteins will be sought by tandem affinity purification (TAP)/proteomic approaches. 3) JSRV transformation in vitro and in vivo. To more closely mirror in vivo oncogenesis of lung epithelial cells, in vitro transformation of primary rat and ovine type II pneumocytes (with or without cooperating oncogenes), and of murine bronchiole-alveolar stem cells (BASCs) will also be tested. A transgenic mouse model for JSRV-induced lung cancer will be developed, and wild-type and mutant JSRV Env's will be tested for tumorigenicity in an adeno-associated virus (AAV) vector. These experiments will substantially increase our understanding of this unique model for human lung cancer, and the oncogenic pathways uncovered may elucidate similar ones in human lung cancer.
Lay summary: This proposal will study a virus of sheep (JSRV) that causes a transmissible lung cancer (OPA), very similar to one form of human lung cancer. The discoveries may lead to a better understanding of human lung cancer, which may result in improved therapies and prevention.
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