T cell receptor bias for MHC: co-evolution or co-receptors?
暂无分享,去创建一个
[1] F. V. Laethem,et al. Lck Availability during Thymic Selection Determines the Recognition Specificity of the T Cell Repertoire , 2013, Cell.
[2] Brian M. Baker,et al. The basis for limited specificity and MHC restriction in a T cell receptor interface , 2013, Nature Communications.
[3] J. McCluskey,et al. Highly Divergent T-cell Receptor Binding Modes Underlie Specific Recognition of a Bulged Viral Peptide bound to a Human Leukocyte Antigen Class I Molecule* , 2013, The Journal of Biological Chemistry.
[4] P. Marrack,et al. T cells and their eons‐old obsession with MHC , 2012, Immunological reviews.
[5] R. Mariuzza,et al. Structural basis for self‐recognition by autoimmune T‐cell receptors , 2012, Immunological reviews.
[6] H. Badgandi,et al. Piecing together the family portrait of TCR‐CD3 complexes , 2012, Immunological reviews.
[7] S. Holland,et al. The T-cell receptor is not hardwired to engage MHC ligands , 2012, Proceedings of the National Academy of Sciences.
[8] K. Garcia,et al. Reconciling views on T cell receptor germline bias for MHC. , 2012, Trends in immunology.
[9] A. Singer,et al. MHC restriction is imposed on a diverse T cell receptor repertoire by CD4 and CD8 co-receptors during thymic selection. , 2012, Trends in immunology.
[10] R. Mariuzza,et al. Structural insights into the editing of germ-line–encoded interactions between T-cell receptor and MHC class II by Vα CDR3 , 2012, Proceedings of the National Academy of Sciences.
[11] R. Mariuzza,et al. Crystal structure of a complete ternary complex of T-cell receptor, peptide–MHC, and CD4 , 2012, Proceedings of the National Academy of Sciences.
[12] A. Singer,et al. αβ T cell receptors that do not undergo major histocompatibility complex-specific thymic selection possess antibody-like recognition specificities. , 2012, Immunity.
[13] I. Wilson,et al. T Cell Receptors are Structures Capable of Initiating Signaling in the Absence of Large Conformational Rearrangements , 2012, The Journal of Biological Chemistry.
[14] K. Garcia,et al. T cell receptor signaling is limited by docking geometry to peptide-major histocompatibility complex. , 2011, Immunity.
[15] P. Marrack,et al. Evolutionarily conserved features contribute to αβ T cell receptor specificity. , 2011, Immunity.
[16] B. Baker,et al. TCRs Used in Cancer Gene Therapy Cross-React with MART-1/Melan-A Tumor Antigens via Distinct Mechanisms , 2011, The Journal of Immunology.
[17] P. A. van der Merwe,et al. Late arrival: recruiting coreceptors to the T cell receptor complex. , 2011, Immunity.
[18] B. Evavold,et al. Two-stage cooperative T cell receptor-peptide major histocompatibility complex-CD8 trimolecular interactions amplify antigen discrimination. , 2011, Immunity.
[19] K. Wucherpfennig,et al. A highly tilted binding mode by a self-reactive T cell receptor results in altered engagement of peptide and MHC , 2011, The Journal of experimental medicine.
[20] Srinivas Devadas,et al. CD4 and CD8 binding to MHC molecules primarily acts to enhance Lck delivery , 2010, Proceedings of the National Academy of Sciences.
[21] P. Marrack,et al. Germline-encoded amino acids in the αβ T cell receptor control thymic selection , 2009, Nature.
[22] L. K. Ely,et al. The molecular basis of TCR germline bias for MHC is surprisingly simple , 2009, Nature Immunology.
[23] Y. Sykulev,et al. How a T Cell Receptor-like Antibody Recognizes Major Histocompatibility Complex-bound Peptide* , 2008, Journal of Biological Chemistry.
[24] Philippa Marrack,et al. Evolutionarily conserved amino acids that control TCR-MHC interaction. , 2008, Annual review of immunology.
[25] Philippa Marrack,et al. Crossreactive T Cells spotlight the germline rules for alphabeta T cell-receptor interactions with MHC molecules. , 2008, Immunity.
[26] F. V. Laethem,et al. Deletion of CD4 and CD8 Coreceptors Permits Generation of αβT Cells that Recognize Antigens Independently of the MHC , 2007 .
[27] Jennifer Maynard,et al. Structural evidence for a germline-encoded T cell receptor–major histocompatibility complex interaction 'codon' , 2007, Nature Immunology.
[28] K. Garcia,et al. How a Single T Cell Receptor Recognizes Both Self and Foreign MHC , 2007, Cell.
[29] B. Malissen,et al. How much can a T‐cell antigen receptor adapt to structurally distinct antigenic peptides? , 2007, The EMBO journal.
[30] Mark M Davis,et al. Disruption of extracellular interactions impairs T cell receptor-CD3 complex stability and signaling. , 2007, Immunity.
[31] Robyn L Stanfield,et al. How TCRs bind MHCs, peptides, and coreceptors. , 2006, Annual review of immunology.
[32] K. Wucherpfennig,et al. Unconventional topology of self peptide–major histocompatibility complex binding by a human autoimmune T cell receptor , 2005, Nature Immunology.
[33] P. Coulie,et al. A Major Histocompatibility Complex·Peptide-restricted Antibody and T Cell Receptor Molecules Recognize Their Target by Distinct Binding Modes , 2005, Journal of Biological Chemistry.
[34] Arup K Chakraborty,et al. CD4 enhances T cell sensitivity to antigen by coordinating Lck accumulation at the immunological synapse , 2004, Nature Immunology.
[35] Ettore Appella,et al. A correlation between TCR Valpha docking on MHC and CD8 dependence: implications for T cell selection. , 2003, Immunity.
[36] Martin Wiedmann,et al. The Organizing Principle in the Formation of the T Cell Receptor-CD3 Complex , 2002, Cell.
[37] A. Fisher,et al. How Many Thymocytes Audition for Selection? , 1997, The Journal of experimental medicine.
[38] J. Zerrahn,et al. The MHC Reactivity of the T Cell Repertoire Prior to Positive and Negative Selection , 1997, Cell.
[39] R. Perlmutter,et al. Interaction of the unique N-terminal region of tyrosine kinase p56 lck with cytoplasmic domains of CD4 and CD8 is mediated by cysteine motifs , 1990, Cell.
[40] S. Tonegawa,et al. Somatic generation of antibody diversity. , 1976, Nature.
[41] Omer Dushek,et al. Mechanisms for T cell receptor triggering , 2011, Nature Reviews Immunology.
[42] M. Flajnik,et al. Origin and evolution of the adaptive immune system: genetic events and selective pressures , 2010, Nature Reviews Genetics.