IN SITU SIV-SPECIFIC CD4 T CELL ANALYSIS DURING ACUTE SIV INFECTION
急性 SIV 感染期间 SIV 特异性 CD4 T 细胞原位分析
基本信息
- 批准号:8358220
- 负责人:
- 金额:$ 6.68万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2011
- 资助国家:美国
- 起止时间:2011-05-01 至 2012-04-30
- 项目状态:已结题
- 来源:
- 关键词:AcuteAffinityAllelesAntibodiesAntigensBacteriaBaculovirusesBiologyCD4 Positive T LymphocytesCellsCollaborationsDNAEngineeringFundingGenomeGrantImmunologyIn SituInfectionKnowledgeLengthLinkLymphoid TissueMHC Class II GenesMacacaMacaca mulattaMethodologyMethodsMinnesotaMissionMusN-terminalNational Center for Research ResourcesNosePeptidesPlasmidsPrimatesPrincipal InvestigatorPublicationsReagentResearchResearch InfrastructureResourcesRestSIVScientistSiteSourceSpleenStaining methodStainsStreptavidinT cell responseTechniquesTemperatureTestingTimeTissue StainsTissuesTranslationsUnited States National Institutes of HealthUniversitiesVirus DiseasesWisconsinWorkWritingcosthuman diseasemeetingsmonomerreagent testingvector
项目摘要
This subproject is one of many research subprojects utilizing the resources
provided by a Center grant funded by NIH/NCRR. Primary support for the subproject
and the subproject's principal investigator may have been provided by other sources,
including other NIH sources. The Total Cost listed for the subproject likely
represents the estimated amount of Center infrastructure utilized by the subproject,
not direct funding provided by the NCRR grant to the subproject or subproject staff.
Objective: To target the Wisconsin National Primate Research Center's (WNPRC) mission to develop treatments for human disease, generate knowledge of primate biology, and to facilitate the progress of research by providing expertise and resources to external scientists, we are developing a methodology that we will use to determine the abundance and in situ localization of CD4 T cells specific to simian immunodeficiency virus (SIV) in tissues during SIV infection.
RESULTS:
We initiated these studies by working to develop methods to stain antigen specific CD4 T cells in mice. In collaboration with Dr. Marc Jenkins and Dr. T. Dileepan at the University of Minnesota we are using mice infected with bacteria that are engineered to express a peptide that triggers a peptide-specific CD4 T cell response for which MHC class II tetramers are available. We are staining nasal associated lymphoid tissues (NALT) and spleen tissues because peptide-specific CD4 T cells accumulate at these sites. We stained tissues with class II tetramers at several different concentrations, for different lengths of incubation time, at different temperatures, and using several amplification techniques. We were successful at identifying conditions that allowed us to detect antigen-specific CD4 T cells cells stained with tetramers in the NALT. These finding will be presented at the Immunology 2011 meeting and are presently being written up for publication.
In addition, Dr. Nancy Wilson at the WNPRC made substantial progress developing class II reagents for use in SIV-infected macaques. She has now successfully produced, purified, and tetramerized rhesus macaque class II molecules. Lara Vojnov at the WNPRC has begun to test these reagents in tissues from SIV infected rhesus macaques. In addition, Dr. Wilson continues to expand the repertoire of class II tetramer reagents to include additional class II alleles. Details of Dr. Wilson's work is presented below.
Gag102-113 (QIVQRHLVVE), along with a linker region was engineered N terminal of DRB*w606, between the leader sequence and start of translation. DRA*010401 was engineered into the other expression site for the bi-cistronic vector pBAC10. These were done using the method of Kozono, et al. This plasmid was co-transformed with linear DNA encoding the rest of the baculovirus genome and baculovirus was generated on SF9 cells, grown to high volume and titered. Hi5 cells were expanded and infected with baculovirus encoding this construct. Supernatant was collected after 6 days of infection and monomer was purified using an affinity column to which 5 mg/ml of L243 antibody had been covalently linked. The monomer was biotinylated and conjugated to Streptavidin APC.
The cells used for testing the tetramer were cryopreserved CD4+ T cell clones generated in our lab (Giraldo-Vela, et al).
Unfortunately the amount of tetramer produced was small, so we have only a limited amount available for testing.
这个子项目是许多利用资源的研究子项目之一
由NIH/NCRR资助的中心拨款提供。子项目的主要支持
子项目的主要研究者可能是由其他来源提供的,
包括其它NIH来源。 列出的子项目总成本可能
代表子项目使用的中心基础设施的估计数量,
NCRR赠款不直接向子项目或子项目工作人员提供资金。
目的:针对威斯康星州国家灵长类动物研究中心(WNPRC)的使命,开发人类疾病的治疗方法,产生灵长类动物生物学知识,并通过向外部科学家提供专业知识和资源来促进研究的进展,我们正在开发一种方法,用于确定猴免疫缺陷病毒(SIV)特异性CD 4 T细胞的丰度和原位定位在SIV感染期间的组织中。
研究结果:
我们通过努力开发对小鼠中抗原特异性CD 4 T细胞进行染色的方法来启动这些研究。与Marc Jenkins博士和T.明尼苏达大学的Dileepan博士说,我们正在使用感染了细菌的小鼠,这些细菌被改造成表达一种肽,这种肽可以触发肽特异性CD 4 T细胞反应,而MHC II类四聚体是可用的。 我们对鼻相关淋巴组织(NALT)和脾组织进行染色,因为肽特异性CD 4 T细胞在这些部位聚集。我们用几种不同浓度的II类四聚体对组织进行染色,孵育时间不同,温度不同,并使用几种扩增技术。 我们成功地鉴定了允许我们在NALT中检测用四聚体染色的抗原特异性CD 4 T细胞的条件。这些发现将在2011年免疫学会议上发表,目前正在编写出版。
此外,WNPRC的Nancy Wilson博士在开发用于SIV感染猕猴的II类试剂方面取得了实质性进展。 她现在已经成功地生产,纯化和四聚体恒河猴II类分子。 WNPRC的Lara Vojnov已经开始在SIV感染恒河猴的组织中测试这些试剂。 此外,Wilson博士继续扩大II类四聚体试剂的库,以包括额外的II类等位基因。 威尔逊博士的工作细节如下。
Gag 102 -113(QIVQRHLVVE),沿着接头区,在前导序列和翻译起始点之间的DRB* w 606的N末端进行工程改造。将cDNA *010401工程化到双顺反子载体pBAC 10的另一个表达位点中。使用Kozono等人的方法完成这些。将该质粒与编码杆状病毒基因组其余部分的线性DNA共转化,并在SF 9细胞上产生杆状病毒,生长至高体积并滴定。 扩增Hi5细胞并用编码该构建体的杆状病毒感染。 感染6天后收集上清液,并使用共价连接有5 mg/ml L243抗体的亲和柱纯化单体。 将单体生物素化并缀合至链霉亲和素APC。
用于测试四聚体的细胞是在我们实验室中产生的冷冻保存的CD 4 + T细胞克隆(Giraldo-Vela等人)。
不幸的是,产生的四聚体的量很小,所以我们只有有限的量可用于测试。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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