Molecular Interactions Of Lymphoid Cell Receptors
Molecular Interactions Of Lymphoid Cell Receptors
批准号:
8336083
负责人:
David Margulies
金额:
$55.41万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
AddressAffinityAntibodiesAntibody AffinityAntigensBacteriaBindingBiological ModelsCD8B1 geneCDK6-associated protein p18CDR1 geneCarbohydratesCell LineCell Surface ReceptorsCell surfaceCellsCollaborationsComplexDevelopmentDiagnosticDrosophila inturned proteinEngineeringEventGoalsHumanHuman EngineeringImmuneImmune systemImmunoglobulin Constant RegionImmunologic ReceptorsImmunologyLaboratoriesLigandsLocationLymphoid CellMHC InteractionMeasuresMolecularMonoclonal AntibodiesMusMutagenesisPeptidesPhysiologicalPlasticsProtein BindingRecombinantsRegulatory T-LymphocyteReportingResolutionRoentgen RaysScientistSignal TransductionStaphylococcal Enterotoxin BStructureSurface Plasmon ResonanceSystemT-LymphocyteTCR ActivationTherapeuticTherapeutic EffectToxic effectTransforming Growth Factor betaantibody engineeringbasechimeric antibodycomplementarity-determining region 3designleucine-rich repeat proteinmacromoleculemutantpreventreceptorsuccessthree dimensional structuretool
中文摘要
在前一年,我们报道了MHC/ cd8复合物的三维结构,这是科学家们多年来一直没有发现的结构。本研究的初步结论揭示了CD8 β链相对于α的位置拓扑结构,并提出了与CD8依赖性信号传导相关的几个重要功能问题。我们去年的计划是:1)开发人类CD8 α - β的表达系统;2)利用该蛋白进行结合和结构研究;3)扩展我们对小鼠CD8 α - β分子的观察,包括CD8 α - β异二聚体的结构塑性柄区。尽管我们付出了相当大的努力来设计人类CD8 α β在细菌中的高水平表达,但我们无法获得CD8 α β异二聚体,尽管我们成功地制造了人类CD8 α α α二聚体。我们在人类CD8 α β的有效高水平表达方面缺乏成功,因此限制了我们进一步开展这一项目的能力。在过去的一年里,进一步的努力致力于将这些观察结果扩展到人体系统,在人体系统中,cd8α / β以一种适合结构、结合和功能研究的形式表达一直很困难。其他解决CD8茎区精确结构的方法,使用单克隆抗体单独针对茎区来稳定结构,尚未证明是有效的。
英文摘要
In the previous year, we had reported the three-dimensional structure of the MHC/CD8alpha beta complex, a structure that had eluded scientists for many years. The initial conclusion from this study revealed the topology of the location of the CD8beta chain with respect to alpha, and posed several important functional questions related to CD8 dependent signaling. Our plan in the past year was to: 1) develop systems for the expression of the human CD8 alpha beta; 2) to exploit such protein for binding and structural studies; 3) to extend our observations on the mouse CD8 alpha beta molecule to include the structurally plastic stalk region of the CD8 alpha beta heterodimer. Despite considerable effort to engineer human CD8 alpha beta for high level expression in bacteria, we were unable to obtain CD8 alpha beta heterodimers, though we did succeed in making human CD8 alpha alpha homodimers. Our lack of success in the effective high level expression of human CD8 alpha beta has thus limited our ability to pursue this project further. Further efforts in the past year have been devoted to efforts to extend these observations to the human system, where expression of CD8alpha/beta in a form amenable to structural, binding, and functional studies has been difficult. Other approaches to address the precise structure of the CD8 stalk region, using monoclonal antibodies directed against the stalk region alone to stabilize the structure have not yet proved fruitful.
Additional efforts to understand important aspects of the TCR/MHC interaction have been more productive. We have recently completed the 2.0 X-ray crystallographic structure of an MHC-I (H-2Dd/P18 peptide)/B4.2.3 TCR complex, which allows us to examine in detail questions relating to whether or not the TCR has inherent reactivity toward the MHC, independent of the bound peptide. To this end, we have used the high resolution three-dimensional structure of the complex to serve as the basis for targeted mutagenesis of the TCR to further evaluate quantitatively the rules that govern the TCR/MHC interaction in quantitative terms. Specifically, the structure suggests that CDR3 regions of the TCR alpha and beta chains primarily are involved in molecular contacts with the antigenic peptide, and that CDR1 and CDR2 regions of both chains function in a complementary fashion to interact with the MHC-I molecule, in this case, H-2Dd. A set of carefully considered deletion and substitution mutants of the TCR CDR3 regions are now being made to explore the possibility that some of these molecules will retain reactivity with MHC-I despite eliminating or changing reactivity with the bound peptide.
Efforts to understand the structure and function of the Treg expressed molecule, GARP, also known as LRRC 32, are designed to; 1) understand the fundamental structure of GARP, predicted to be a leucine rich repeat protein; 2) evaluate the interact of GARP with the latent form of TGF-beta; 3) develop monoclonal antibodies to both human and mouse forms of GARP for functional and further structural studies. To these ends, we have successfully engineered the expression of both human and mouse GARP proteins in Drosophila S2 cells. Human latent TGF-beta (LAT) has also been expressed in CH0-Lec 3.8.2.1 cells, a cell line deficient in the addition of terminal carbohydrates. Using surface plasmon resonance, we have measured the binding constant for the GARP/Latent TGF beta interaction. In collaboration with the Shevach laboratory, utilizing our recombinant human and mouse GARP, we are developing monoclonal antibodies to both human and mouse GARP. Antibodies to both the mouse and human molecules have been obtained, and are now being characterized. These antibodies should permit the characterization of T cells that express GARP on their cell surface and will be essential in understanding the interactions of GARP with latent TGF-beta.
In addition, we have had the opportunity to explore the relationship of antibody affinity to therapeutic effect in a model system developed by the Goldsby laboratory. Here, a broad array of mouse anti-SEB antibodies have been developed, and their effects in preventing the toxic effects of SEB have been characterized in a mouse system. Our expertise in evaluating molecular interactions by SPR has allowed a direct comparison of the binding affinity of a panel of mouse anti-SEB monoclonal antibodies with chimeric antibodies engineered to have human constant regions. Our results show clearly that the chimeric antibodies have essentially the same affinity for SEB that the original mouse antibodies have.
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批准号:7218897
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项目类别:
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资助金额:$10.0万
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财政年份:2006
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负责人:David Margulies
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依托单位:
Recombinant Engineering of SARS-CoV-2 Spike and N proteins
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批准号:8555951
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资助金额:$51.83万
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负责人:David Margulies
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:8555788
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资助金额:$50.63万
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财政年份:--
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:10272044
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项目类别:
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资助金额:$75.6万
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:7964651
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资助金额:$58.88万
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负责人:David Margulies
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依托单位:
Molecular Genetic Analysis Of Lymphocyte Function
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批准号:10697664
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项目类别:
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资助金额:$71.34万
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财政年份:--
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负责人:David Margulies
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:10927746
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项目类别:
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资助金额:$76.58万
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财政年份:--
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:8157027
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项目类别:
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资助金额:$43.9万
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负责人:David Margulies
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依托单位:
Molecular Genetic Analysis Of Lymphocyte Function
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批准号:9354702
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项目类别:
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资助金额:$69.52万
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:9354827
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项目类别:
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资助金额:$46.34万
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财政年份:--
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负责人:David Margulies
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:8745324
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项目类别:
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资助金额:$55.23万
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财政年份:--
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:10697671
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项目类别:
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资助金额:$35.67万
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负责人:David Margulies
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依托单位:
Molecular Genetic Analysis Of Lymphocyte Function
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批准号:10927729
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项目类别:
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资助金额:$76.58万
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财政年份:--
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:10014137
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项目类别:
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资助金额:$48.17万
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财政年份:--
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负责人:David Margulies
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:7964317
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项目类别:
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资助金额:$129.77万
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财政年份:--
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:10927816
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项目类别:
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资助金额:$38.29万
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财政年份:--
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负责人:David Margulies
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依托单位:
Structure and Function of Viral Immunoevasins
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批准号:9161605
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项目类别:
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资助金额:$55.4万
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财政年份:--
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负责人:David Margulies
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依托单位:
Molecular Interactions Of Lymphoid Cell Receptors
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批准号:10014045
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项目类别:
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资助金额:$57.81万
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财政年份:--
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负责人:David Margulies
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依托单位:
Molecular Genetic Analysis Of Lymphocyte Function
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批准号:8156834
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项目类别:
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资助金额:$63.61万
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财政年份:--
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负责人:David Margulies
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依托单位:
海外基金