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I-Aβb的62-76区域内氨基酸取代对与电鳐乙酰胆碱受体α链肽146-162结合及抗原呈递的影响。

Effect of amino acid substitutions within the region 62-76 of I-A beta b on binding with and antigen presentation of Torpedo acetylcholine receptor alpha-chain peptide 146-162.

作者信息

Oshima M, Atassi M Z

机构信息

Department of Biochemistry, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Immunol. 1995 May 15;154(10):5245-54.

PMID:7537303
Abstract

Previous study has shown that reduced T cell response to peptide alpha 146-162 of Torpedo californica acetylcholine receptor (tAChR) in B6.C-H-2bm12 (bm12) mice, a mutant of C57BL/6 (B6) mice, correlated with its nonsusceptiblity to experimental autoimmune myasthenia gravis. There are three amino acid differences between the I-A beta b of the two strains (positions 67, 70, and 71). We synthesized peptides I-A beta b62-76 (peptide b6), I-A beta bm1262-76 (peptide bm), and three additional peptides, b6(67F), b6(70Q), and b6(71K), and determined their ability to bind peptide alpha 146-162 and the dissociation constants (Kd) of the binding. Peptide alpha 146-162 bound with a significantly higher affinity to peptide b6 than to peptides bm or b6(71K), suggesting that the lower affinity of peptide alpha 146-162 to I-Abm12 is a factor in the reduced response to this peptide by bm12 T cells. This was confirmed by measurement of the Kd values of the binding of peptide alpha 146-162 to the I-A molecules of B6 and bm12. Furthermore, APC of bm12 presented the peptide, or tAChR, poorly to peptide-specific or to tAChR-specific B6 T cells. The major effect is caused by the change of Thr-71 in I-A beta b to lysine in I-A beta bm12. However, APC of B6 also presented peptide alpha 146-162 much less efficiently to peptide-specific T cells of bm12. This demonstrated that these three amino acid changes also influence the T cell receptor recognition of peptide-MHC complex and that both B6 and bm12 T cells recognizing peptide alpha 146-162 or tAChR are under a high H-2 restriction.

摘要

先前的研究表明,B6.C-H-2bm12(bm12)小鼠(C57BL/6(B6)小鼠的一种突变体)对加州电鳐乙酰胆碱受体(tAChR)的肽段α146 - 162的T细胞反应降低,与其对实验性自身免疫性重症肌无力的不敏感性相关。这两个品系的I-Aβb之间存在三个氨基酸差异(第67、70和71位)。我们合成了肽段I-Aβb62 - 76(肽段b6)、I-Aβbm1262 - 76(肽段bm)以及另外三个肽段b6(67F)、b6(70Q)和b6(71K),并测定了它们结合肽段α146 - 162的能力以及结合的解离常数(Kd)。肽段α146 - 162与肽段b6的结合亲和力显著高于与肽段bm或b6(71K)的结合亲和力,这表明肽段α146 - 162与I-Abm12的较低亲和力是bm12 T细胞对该肽段反应降低的一个因素。通过测量肽段α146 - 162与B6和bm12的I-A分子结合的Kd值,这一点得到了证实。此外,bm12的抗原呈递细胞(APC)向肽特异性或tAChR特异性的B6 T细胞呈递肽段或tAChR的能力较差。主要影响是由I-Aβb中第71位的苏氨酸在I-Aβbm12中变为赖氨酸引起的。然而,B6的APC向bm12的肽特异性T细胞呈递肽段α146 - 162的效率也低得多。这表明这三个氨基酸变化也影响T细胞受体对肽 - MHC复合物的识别,并且识别肽段α146 - 162或tAChR的B6和bm12 T细胞都受到高度的H-2限制。

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