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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/6018
標題: Peptidomic analysis of type 1 diabetes associated HLA-DQ molecules and the impact of HLA-DM on peptide repertoire editing
作者: Zhou, Zemin
Reyes-Vargas, Eduardo
Escobar, Hernando
Chang, Kuan Y. 
Barker, Adam P.
Rockwood, Alan L.
Delgado, Julio C.
He, Xiao
Jensen, Peter E.
關鍵字: MHC CLASS-II;COMPLEX CLASS-II;KINETIC STABILITY;CUTTING EDGE;HYDROGEN-BONDS;CLIP PEPTIDES;DR MOLECULES;T-CELLS;BINDING;SUSCEPTIBILITY
公開日期: 二月-2017
出版社: WILEY
卷: 47
期: 2
起(迄)頁: 314-326
來源出版物: EUR J IMMUNOL
摘要: 
HLA-DM and class II associated invariant chain (Ii) are key cofactors in the MHC class II (MHCII) antigen processing pathway. We used tandem mass spectrometry sequencing to directly interrogate the global impact of DM and Ii on the repertoire of MHCII-bound peptides in human embryonic kidney 293T cells expressing HLA-DQ molecules in the absence or presence of these cofactors. We found that Ii and DM have a major impact on the repertoire of peptides presented by DQ1 and DQ6, with the caveat that this technology is not quantitative. The peptide repertoires of type 1 diabetes (T1D) associated DQ8, DQ2, and DQ8/2 are altered to a lesser degree by DM expression, and these molecules share overlapping features in their peptide binding motifs that are distinct from control DQ1 and DQ6 molecules. Peptides were categorized into DM-resistant, DM-dependent, or DM-sensitive groups based on the mass spectrometry data, and representative peptides were tested in competitive binding assays and peptide dissociation rate experiments with soluble DQ6. Our data support the conclusion that high intrinsic stability of DQ-peptide complexes is necessary but not sufficient to confer resistance to DM editing, and provide candidate parameters that may be useful in predicting the sensitivity of T-cell epitopes to DM editing.
URI: http://scholars.ntou.edu.tw/handle/123456789/6018
ISSN: 0014-2980
DOI: 10.1002/eji.201646656
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