Literature DB >> 11439162

On the role of CD3delta chains in TCRgammadelta/CD3 complexes during assembly and membrane expression.

L Alibaud1, J Arnaud, R Llobera, B Rubin.   

Abstract

The present study was performed in order to analyze whether T-cell receptor (TCR)/CD3 assembly, intracellular transport and surface expression are carried in a similar way in alphabeta-and gammadelta-T cells. By means of optimal immunoprecipitation conditions with 35S-methionine/cysteine- or biotin-labelled TCR/CD3 proteins from alphabeta- or gammadelta-T-lymphoma-cell lines, as well as TCRgammadelta cDNA transfectants, it was found that CD3delta chains associate less strongly with TCRgammadelta heterodimers compared to TCRalphabeta heterodimers. This preferential reactivity of CD3delta chains appears to be structural and not owing to differences in gammadelta- versus alphabeta-T-cell intracellular environments. Our results are in accordance firstly, with data from CD3delta-deficient mice, which have gammadelta-T cells but no alphabeta-T cells, secondly with the suggested role of CD3delta chains in the positive selection of alphabeta-T cells, a process apparently not followed by gammadelta-T cells, and lastly with the differential roles of CD3delta chains versus CD3gamma chains, explaining the maintenance of two CD3delta and CD3gamma genes after the duplication from a CD3delta/gamma gene present in avians. The impaired reactivity of CD3delta chains with TCRgammadelta heterodimers seems to be owing to a less efficient association with TCRgamma chains. In contrast, CD3delta chains interact as strongly with TCRdelta chains as do CD3gamma chains with both TCRgamma and TCRdelta chains. These data may explain, at the molecular levels, why surface TCR/CD3 expression levels are impaired in gammadelta-T cells from CD3gamma-deficient mice but not from CD3delta-deficient mice.

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Year:  2001        PMID: 11439162     DOI: 10.1046/j.1365-3083.2001.00938.x

Source DB:  PubMed          Journal:  Scand J Immunol        ISSN: 0300-9475            Impact factor:   3.487


  5 in total

1.  Stoichiometry of the murine gammadelta T cell receptor.

Authors:  Sandra M Hayes; Paul E Love
Journal:  J Exp Med       Date:  2006-01-17       Impact factor: 14.307

2.  A leaky mutation in CD3D differentially affects αβ and γδ T cells and leads to a Tαβ-Tγδ+B+NK+ human SCID.

Authors:  Juana Gil; Elena M Busto; Beatriz Garcillán; Carmen Chean; Maria Cruz García-Rodríguez; Andrea Díaz-Alderete; Joaquín Navarro; Jesús Reiné; Angeles Mencía; Dolores Gurbindo; Cristina Beléndez; Isabel Gordillo; Marlena Duchniewicz; Kerstin Höhne; Félix García-Sánchez; Eduardo Fernández-Cruz; Eduardo López-Granados; Wolfgang W A Schamel; Miguel A Moreno-Pelayo; María J Recio; José R Regueiro
Journal:  J Clin Invest       Date:  2011-09-19       Impact factor: 14.808

3.  Human CD3γ, but not CD3δ, haploinsufficiency differentially impairs γδ versus αβ surface TCR expression.

Authors:  Miguel Muñoz-Ruiz; Verónica Pérez-Flores; Beatriz Garcillán; Alberto C Guardo; Marina S Mazariegos; Hidetoshi Takada; Luis M Allende; Sara S Kilic; Ozden Sanal; Chaim M Roifman; Eduardo López-Granados; María J Recio; Eduardo Martínez-Naves; Edgar Fernández-Malavé; José R Regueiro
Journal:  BMC Immunol       Date:  2013-01-21       Impact factor: 3.615

4.  Different composition of the human and the mouse gammadelta T cell receptor explains different phenotypes of CD3gamma and CD3delta immunodeficiencies.

Authors:  Gabrielle M Siegers; Mahima Swamy; Edgar Fernández-Malavé; Susana Minguet; Sylvia Rathmann; Alberto C Guardo; Verónica Pérez-Flores; Jose R Regueiro; Balbino Alarcón; Paul Fisch; Wolfgang W A Schamel
Journal:  J Exp Med       Date:  2007-10-08       Impact factor: 14.307

5.  Anti-CD3 Fab Fragments Enhance Tumor Killing by Human γδ T Cells Independent of Nck Recruitment to the γδ T Cell Antigen Receptor.

Authors:  Claudia Juraske; Piyamaporn Wipa; Anna Morath; Jose Villacorta Hidalgo; Frederike A Hartl; Katrin Raute; Hans-Heinrich Oberg; Daniela Wesch; Paul Fisch; Susana Minguet; Sutatip Pongcharoen; Wolfgang W Schamel
Journal:  Front Immunol       Date:  2018-07-09       Impact factor: 7.561

  5 in total

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