Salt bridge residues between I-Ak dimer of dimers α-chains modulate antigen presentation

التفاصيل البيبلوغرافية
العنوان: Salt bridge residues between I-Ak dimer of dimers α-chains modulate antigen presentation
المؤلفون: William F. Wade, Doug Demian, Jerome L. Gabriel, B. George Barisas, Thomas Nydam, Shyam Yadati, Terri K. Wade
المصدر: Immunology Letters. 67:47-55
بيانات النشر: Elsevier BV, 1999.
سنة النشر: 1999
مصطلحات موضوعية: Molecular model, Stereochemistry, Dimer, Immunology, Mutant, Antigen presentation, medicine.disease_cause, Epitope, Mice, chemistry.chemical_compound, Image Processing, Computer-Assisted, medicine, Animals, Humans, Immunology and Allergy, chemistry.chemical_classification, Antigen Presentation, Mutation, Chemistry, Adenine, HLA-DR1 Antigen, Histocompatibility Antigens Class II, Inosine, Amino acid, Biochemistry, Pyrimidine Dimers, Salt bridge
الوصف: Class II dimers of dimers are predicted to have functional significance in antigen presentation. The putative contact amino acids of the I-Ak class II dimer of dimers have been identified by molecular modeling based on the DR1 crystal structure (Nydam et al., Int. Immunol. 10, 1237,1998). We have previously reported the role in antigen presentation of dimer of dimers contact amino acids located in the C-terminal domains of the alpha- and beta-chains of class II. Our calculations show that residues Ealpha89 and Ralpha145 in the alpha2-domain form an inter alpha-chain salt bridge between pairs of alphabeta-heterodimers. Other residues, Qalpha92 and Nalpha115, may be involved in close association in that part of the alpha-chain. We investigated the role of these amino acids on class II expression and antigen presentation. Class II composed of an Ealpha89K substituted alpha-chain paired with a wt beta-chain exhibited inhibited antigen presentation and expression of alpha-chain serologic epitopes. In contrast, mutation of Ralpha145E had less affect on antigen presentation and did not affect I-Ak serologic epitopes. Interchanging charges of the salt bridge residues by expressing both Ralpha145E and Ealpha89K on the same chain obviated the large negative effect of the Ealpha89K mutation on antigen presentation but not on the serologic epitopes. Our results are similar for those reported for mutation of DR3's inter-chain salt bridge with the exception that double mutants did not moderate the DR3 defect. Interestingly, the amino acids differences between I-A and DR change the location of the inter-chain salt bridges. In DR1 these residues are located at positions Ealpha88 and Kalpha111; in I-Ak these residues are located at position Ealpha89 and Ralpha145. Inter alpha-chain salt bridges are thus maintained in various class II molecules by amino acids located in different parts of the alpha2-domain. This conservation of structure suggests that considerable functional importance may attach to the ionic interactions.
تدمد: 0165-2478
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::17acbf3aa406ab2c603b8bddfef2715b
https://doi.org/10.1016/s0165-2478(98)00146-1
حقوق: OPEN
رقم الأكسشن: edsair.doi.dedup.....17acbf3aa406ab2c603b8bddfef2715b
قاعدة البيانات: OpenAIRE