Expression of Decontructed HIV-1 Virus-Like Particles in Bioengineered Plants
Expression of Decontructed HIV-1 Virus-Like Particles in Bioengineered Plants
批准号:
7367919
负责人:
Nobuyuki Matoba
金额:
$2.81万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-03-15 至 2008-12-31
关键词:
AIDS preventionAIDS/HIV problemAcquired Immunodeficiency SyndromeAnimal ModelAnti-Retroviral AgentsAntibodiesBiochemicalBiological AssayBiomedical EngineeringCD4 Positive T LymphocytesCellsContainmentCountryCytoplasmic TailCytotoxic T-LymphocytesElectron MicroscopyEpidemiologic StudiesEpithelialEventGaggingGenesGoalsHIV-1HIV-1 vaccineHighly Active Antiretroviral TherapyImmune responseImmunoprecipitationIn VitroIncomeInfectionIntestinesInvestigationLiquid substanceLow incomeMembraneMucous MembraneOnset of illnessOralOther FindingOutcomePharmaceutical PreparationsPlantsPrevention programProductionSimulateStagingStomachSuspension CultureSystemTobaccoTobacco Mosaic VirusTransmembrane DomainVaccinesVaginal delivery procedureViralVirus-like particlebasedesignenv Gene Productsenv Genesexpression vectorfollow-upgag Gene Productslight scatteringmucosal vaccinenew technologynonhuman primatenovelpandemic diseasepreventprophylactictranscytosistransmission process
中文摘要
描述(由申请人提供):在高收入国家,广泛的艾滋病预防项目和高效的抗逆转录病毒疗法成功地限制了艾滋病的传播和发病。然而,人们普遍认为,全球遏制艾滋病毒/艾滋病流行病取决于我们研制预防性疫苗的能力,以尽量减少病毒的传播和感染。该项目的长期目标是开发一种负担得起的、有效的粘膜疫苗,预防HIV-1传播和早期感染。为此,我们的工作重点是由解构的HIV-1 Env蛋白(D-Env)和Gag蛋白(D-Env/Gag VLPs)组成的新型HIV-1病毒样颗粒(VLPs)。为了经济生产和粘膜传递,我们提出了D-Env/Gag VLPs在植物中的表达。D-Env由gp41的外膜近端残基649-683 (MPR649-683)、跨膜结构域和胞质尾部组成。具体的假设是,粘膜靶向的D-Env/Gag VLPs可以在粘膜诱导保护性的体液和细胞免疫反应,从而协同阻断HIV-1的传播和早期感染。我们的假设基于我们和其他人的发现,即(i)靶向MPR649-683的抗体被证明可以阻断HIV-1上皮细胞胞吞并潜在地中和CD4+细胞的感染;(ii) Gag VLPs被证明可以在非人灵长类动物中诱导Gag特异性细胞毒性T细胞。
英文摘要
DESCRIPTION (provided by applicant): Extensive AIDS prevention programs and highly active anti-retroviral therapies have been successful in limiting the spread and the onset of the disease in high-income countries. However, it is generally agreed that global containment of the HIV/AIDS pandemics depends on our ability to develop prophylactic vaccines minimizing the viral transmission and infection. The long-term goal of this project is to develop an affordable, efficacious mucosal vaccine preventing HIV-1 transmission and early stages of infection. To this end, our efforts are focused on a novel HIV-1 virus-like particles (VLPs) consisting of the deconstructed HIV-1 Env protein (D-Env) and the Gag protein (D-Env/Gag VLPs). Towards the aim of economical production and mucosal delivery, we propose the expression of D-Env/Gag VLPs in plants. D-Env is composed of the external membrane proximal region residue 649-683 (MPR649-683), the transmembrane domain and the cytoplasmic tail of gp41. The specific hypothesis is that mucosally targeted D-Env/Gag VLPs can induce protective humoral and cellular immune responses at the mucosa, thereby synergistically blocking HIV-1 transmission and early stages of infection. We base that hypothesis on the findings by us and others that (i) antibodies targeting MPR649-683 were shown to block HIV-1 epithelial transcytosis and potentially neutralize the infection of CD4+ cells and (ii) Gag VLPs were shown to induce Gag-specific cytotoxic T cells in non-human primates.
As an initial step to achieve the long-term goal, the specific aim of this proposal is to produce and in vitro characterize D-Env/Gag VLPs, which are designed based on the most pandemic HIV-1 subtype C, by the coexpression of D-Env and Gag in tobacco cells. In order to obtain high yield, the gag gene will be optimized for plant expression and the designed gene will be de novo synthesized. We will employ two expression systems, a modified tobacco mosaic virus (TMV)-based transient expression system and a stably transformed tobacco cell (NT1) suspension culture. These systems enable rapid investigations of the VLP assembly in plant cells. Upon successfully expressing Gag VLPs, efforts will be centered on creating the complete D-Env/Gag VLPs. This will be done by co-delivery of the plant optimized d-env gene with the gag gene in the TMV system and super-transformation of the Gag-expressing NT1 cells with D-Env expression vector. To characterize the plant-expressed D-Env/Gag VLPs, biochemical analyses by immunoprecipitation and pull-down assay, conformational analyses by light scattering and electron microscopy, and stability analysis using simulated gastric and intestinal fluids will be performed. The successful outcome of this project will not only provide a novel HIV-1 vaccine candidate that will be evaluated in the follow-up project using animal models, but also develop a new technology for its economical production.
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