Literature DB >> 7809108

Characteristics of peptide and major histocompatibility complex class I/beta 2-microglobulin binding to the transporters associated with antigen processing (TAP1 and TAP2).

M J Androlewicz1, B Ortmann, P M van Endert, T Spies, P Cresswell.   

Abstract

The transporter proteins associated with antigen processing (TAP proteins) transport antigenic peptides across the endoplasmic reticulum membrane where they can assemble with newly synthesized major histocompatibility complex (MHC) class I/beta 2-microglobulin (beta 2m) dimers. We have shown previously that TAP possesses a peptide-recognition site with broad specificity and that MHC class I/beta 2m dimers physically associate with TAP. Here, we further characterize the nature of the peptide-binding site on TAP, and the site of interaction of TAP with MHC class I/beta 2m dimers. TAP photoaffinity labeling experiments revealed that both TAP1 and TAP2 are photolabeled by two distinct photopeptide analogues, suggesting that elements of both TAP1 and TAP2 compose the peptide-recognition site. TAP photolabeling analysis on transfectant cell lines that express TAP1 and TAP2 both individually and together revealed that efficient formation of the peptide-binding site occurs only when TAP1 and TAP2 are coexpressed, which correlates with the finding that peptide translocation via TAP occurs only in the presence of both TAP1 and TAP2. These data strongly support the notion that TAP functions as a heterodimer. MHC class I/beta 2m dimers were shown to associate with individual TAP1 chains but were not detectable with individual TAP2 chains. This result suggests that the site of interaction for MHC class I/beta 2m dimers with TAP is on TAP1.

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Year:  1994        PMID: 7809108      PMCID: PMC45510          DOI: 10.1073/pnas.91.26.12716

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  30 in total

1.  Proteasome subunits encoded in the MHC are not generally required for the processing of peptides bound by MHC class I molecules.

Authors:  D Arnold; J Driscoll; M Androlewicz; E Hughes; P Cresswell; T Spies
Journal:  Nature       Date:  1992-11-12       Impact factor: 49.962

2.  Presentation of viral antigen by MHC class I molecules is dependent on a putative peptide transporter heterodimer.

Authors:  T Spies; V Cerundolo; M Colonna; P Cresswell; A Townsend; R DeMars
Journal:  Nature       Date:  1992-02-13       Impact factor: 49.962

3.  Transport protein genes in the murine MHC: possible implications for antigen processing.

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Journal:  Science       Date:  1990-12-21       Impact factor: 47.728

4.  HLA-A2 molecules in an antigen-processing mutant cell contain signal sequence-derived peptides.

Authors:  M L Wei; P Cresswell
Journal:  Nature       Date:  1992-04-02       Impact factor: 49.962

5.  Allelic variants of the human putative peptide transporter involved in antigen processing.

Authors:  M Colonna; M Bresnahan; S Bahram; J L Strominger; T Spies
Journal:  Proc Natl Acad Sci U S A       Date:  1992-05-01       Impact factor: 11.205

6.  Identification of the cystic fibrosis gene: genetic analysis.

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7.  A gene in the human major histocompatibility complex class II region controlling the class I antigen presentation pathway.

Authors:  T Spies; M Bresnahan; S Bahram; D Arnold; G Blanck; E Mellins; D Pious; R DeMars
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8.  Characterization of the azidopine and vinblastine binding site of P-glycoprotein.

Authors:  E P Bruggemann; S J Currier; M M Gottesman; I Pastan
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9.  Mutational analysis of the yeast a-factor transporter STE6, a member of the ATP binding cassette (ABC) protein superfamily.

Authors:  C Berkower; S Michaelis
Journal:  EMBO J       Date:  1991-12       Impact factor: 11.598

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Authors:  K Kuchler; R E Sterne; J Thorner
Journal:  EMBO J       Date:  1989-12-20       Impact factor: 11.598

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  34 in total

1.  Immunodeficiency due to defective antigen processing: the molecular basis for type 1 bare lymphocyte syndrome.

Authors:  M Raghavan
Journal:  J Clin Invest       Date:  1999-03       Impact factor: 14.808

2.  Model for the interaction of gammaherpesvirus 68 RING-CH finger protein mK3 with major histocompatibility complex class I and the peptide-loading complex.

Authors:  Xiaoli Wang; Lonnie Lybarger; Rose Connors; Michael R Harris; Ted H Hansen
Journal:  J Virol       Date:  2004-08       Impact factor: 5.103

Review 3.  Functional regulation of immunoproteasomes and transporter associated with antigen processing.

Authors:  L Y Hwang; P T Lieu; P A Peterson; Y Yang
Journal:  Immunol Res       Date:  2001       Impact factor: 2.829

Review 4.  Molecular mechanisms of class I major histocompatibility complex antigen processing and presentation.

Authors:  Y Yang; P Sempé; P A Peterson
Journal:  Immunol Res       Date:  1996       Impact factor: 2.829

5.  The human cytomegalovirus gene product US6 inhibits ATP binding by TAP.

Authors:  E W Hewitt; S S Gupta; P J Lehner
Journal:  EMBO J       Date:  2001-02-01       Impact factor: 11.598

6.  Use of chimeric proteins to investigate the role of transporter associated with antigen processing (TAP) structural domains in peptide binding and translocation.

Authors:  S Arora; P E Lapinski; M Raghavan
Journal:  Proc Natl Acad Sci U S A       Date:  2001-06-19       Impact factor: 11.205

7.  Getting the inside out: the transporter associated with antigen processing (TAP) and the presentation of viral antigen.

Authors:  A Hill; H Ploegh
Journal:  Proc Natl Acad Sci U S A       Date:  1995-01-17       Impact factor: 11.205

8.  Hierarchy among multiple H-2b-restricted cytotoxic T-lymphocyte epitopes within simian virus 40 T antigen.

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9.  Assembly and intracellular trafficking of HLA-B*3501 and HLA-B*3503.

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Review 10.  Antigen processing and immune regulation in the response to tumours.

Authors:  Emma Reeves; Edward James
Journal:  Immunology       Date:  2016-10-12       Impact factor: 7.397

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