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TAPBPR mediates peptide dissociation from MHC class I using a leucine lever.


ABSTRACT: Tapasin and TAPBPR are known to perform peptide editing on major histocompatibility complex class I (MHC I) molecules; however, the precise molecular mechanism(s) involved in this process remain largely enigmatic. Here, using immunopeptidomics in combination with novel cell-based assays that assess TAPBPR-mediated peptide exchange, we reveal a critical role for the K22-D35 loop of TAPBPR in mediating peptide exchange on MHC I. We identify a specific leucine within this loop that enables TAPBPR to facilitate peptide dissociation from MHC I. Moreover, we delineate the molecular features of the MHC I F pocket required for TAPBPR to promote peptide dissociation in a loop-dependent manner. These data reveal that chaperone-mediated peptide editing on MHC I can occur by different mechanisms dependent on the C-terminal residue that the MHC I accommodates in its F pocket and provide novel insights that may inform the therapeutic potential of TAPBPR manipulation to increase tumour immunogenicity.

SUBMITTER: Ilca FT 

PROVIDER: S-EPMC6307860 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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TAPBPR mediates peptide dissociation from MHC class I using a leucine lever.

Ilca F Tudor FT   Neerincx Andreas A   Hermann Clemens C   Marcu Ana A   Stevanović Stefan S   Deane Janet E JE   Boyle Louise H LH  

eLife 20181128


Tapasin and TAPBPR are known to perform peptide editing on major histocompatibility complex class I (MHC I) molecules; however, the precise molecular mechanism(s) involved in this process remain largely enigmatic. Here, using immunopeptidomics in combination with novel cell-based assays that assess TAPBPR-mediated peptide exchange, we reveal a critical role for the K22-D35 loop of TAPBPR in mediating peptide exchange on MHC I. We identify a specific leucine within this loop that enables TAPBPR t  ...[more]

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