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HLA-A2的β折叠底部和α-2螺旋中氨基酸取代对同种异体反应性病毒肽特异性细胞毒性T淋巴细胞识别的差异影响。

Differential effects of amino acid substitutions in the beta-sheet floor and alpha-2 helix of HLA-A2 on recognition by alloreactive viral peptide-specific cytotoxic T lymphocytes.

作者信息

Mattson D H, Shimojo N, Cowan E P, Baskin J J, Turner R V, Shvetsky B D, Coligan J E, Maloy W L, Biddison W E

机构信息

Neuroimmunology Branch, National Institute of Neurological Disorders and Stroke, Bethesda, MD 20892.

出版信息

J Immunol. 1989 Aug 15;143(4):1101-7.

PMID:2473117
Abstract

Crystallographic studies of the HLA-A2 molecule have led to the assignment of a putative peptide binding site that consists of a groove with a beta-pleated sheet floor bordered by two alpha-helices. A CTL-defined variant of HLA-A2, termed HLA-A2.2F, differs from the common A2.1 molecule by three amino acids: a Leu to Trp substitution at position 156 in the alpha-2 helix, a Val to Leu substitution at position 95 in the beta-sheet floor of the groove, and a Gln to Arg substitution at position 43 in a loop outside of the groove. Another HLA-A2 variant, termed CLA, has a single Phe to Tyr substitution at position 9 that is sterically located adjacent to position 95 in the beta-sheet floor of the groove. We have determined which of the amino acid substitutions at positions 9, 43, 95, or 156 could individually affect recognition by panels of A2.1 allospecific and A2.1-restricted influenza viral matrix peptide-specific CTL lines, using a panel of site-directed mutants and CLA. Recognition by allospecific CTL lines was generally unaffected by any one of the amino acid substitutions, but was eliminated by the double substitution at positions 95 and 156. Allorecognition by some CTL lines was eliminated by a single substitution at position 9 or 95. In contrast, recognition by A2.1-restricted matrix peptide specific CTL was totally eliminated by a single substitution at position 9 or 156. The substitution at position 43 in a loop away from the peptide binding groove had no effect on allorecognition or matrix peptide recognition. These results indicate that amino acid residues in the floor or alpha-2 helical wall of the peptide binding groove of the HLA-A2 molecule can differentially affect allorecognition and viral peptide recognition.

摘要

对HLA - A2分子的晶体学研究已确定了一个假定的肽结合位点,该位点由一个带有β折叠片层底部的凹槽组成,凹槽两侧为两个α螺旋。一种由细胞毒性T淋巴细胞(CTL)定义的HLA - A2变体,称为HLA - A2.2F,与常见的A2.1分子在三个氨基酸上存在差异:α - 2螺旋中第156位的亮氨酸被色氨酸取代,凹槽β折叠片层底部第95位的缬氨酸被亮氨酸取代,以及凹槽外一个环中第43位的谷氨酰胺被精氨酸取代。另一种HLA - A2变体,称为CLA,在第9位有一个苯丙氨酸到酪氨酸的单一取代,该位置在空间上与凹槽β折叠片层底部的第95位相邻。我们使用一组定点突变体和CLA,确定了第9、43、95或156位的哪些氨基酸取代会分别影响A2.1同种异体特异性和A2.1限制性流感病毒基质肽特异性CTL系的识别。同种异体特异性CTL系的识别通常不受任何一个氨基酸取代的影响,但第95和156位的双重取代会消除这种识别。一些CTL系的同种异体识别会被第9或第95位的单一取代消除。相比之下,A2.1限制性基质肽特异性CTL的识别会被第9或第156位的单一取代完全消除。远离肽结合凹槽的环中第43位的取代对同种异体识别或基质肽识别没有影响。这些结果表明,HLA - A2分子肽结合凹槽底部或α - 2螺旋壁中的氨基酸残基可不同程度地影响同种异体识别和病毒肽识别。

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