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同种反应性细胞毒性T淋巴细胞识别由I类肽结合位点的α螺旋和β折叠共同决定的表位。

Alloreactive cytotoxic T lymphocytes recognize epitopes determined by both the alpha helices and beta sheets of the class I peptide binding site.

作者信息

Hunt H D, Munitz T I, Pease L R

机构信息

Department of Immunology, Mayo Clinic, Rochester, Minnesota 55905.

出版信息

J Exp Med. 1992 Mar 1;175(3):821-9. doi: 10.1084/jem.175.3.821.

Abstract

A chimeric class I glycoprotein was created to investigate the functional contribution of the alpha helices and the beta-pleated sheets in forming the antigen recognition site (ARS) of antigen-presenting molecules. This novel molecule was generated by replacing the DNA sequences encoding the alpha helices of the Ld gene with the corresponding sequences from the Kb gene. Serologic analysis of transfected L cells that expressed the chimeric molecule (Kb alpha Ld beta) revealed that the engineered class I glycoprotein retains two conformational epitopes associated with the alpha helices of Kb, as defined by monoclonal antibodies K10.56 and 28-13-3. These results demonstrate that the alpha helices of Kb can associate with the beta-pleated sheets of Ld to form a stable structure, which is expressed on the cell surface. To address the role of the alpha helices of the ARS in determining T cell crossreactivity, alloreactive cytotoxic T lymphocytes (CTL) were used to analyze L cells expressing Kb alpha Ld beta. CTL raised against Kb or Ld as alloantigens showed little, if any, ability to lyse L cells expressing Kb alpha Ld beta. Thus, alloreactive CTL did not recognize structures determined by the alpha helices alone or by the beta sheets of the ARS alone. However, bulk and cloned alloreactive CTL that were generated against the mutant Kb glycoprotein Kbm8 reacted strongly with Kb alpha Ld beta. In addition to the Kb alpha helices, the Kbm8 ARS shares a single polymorphic amino acid at position 24 with Kb alpha Ld beta. Amino acid 24 is located on the beta 2 strand that forms part of the floor of the ARS and has been identified as a component of pocket B in the HLA class I ARS. The substitution of Glu to Ser at this position was shown previously to be the central determinant of the Kbm8 mutant alloantigenicity. The functional significance of this position in determining crossreactivity between bm8 and Kb alpha Ld beta identifies pocket B as a strong anchor for allogenic self-peptides. These findings demonstrate that determinants recognized by CTL on class I alloantigens are formed by interactions involving both the alpha helices and beta sheets of the ARS. These interactions are best explained by the influence of the alpha helices and beta sheets on the peptide-binding properties of these antigen-presenting molecules.

摘要

构建了一种嵌合I类糖蛋白,以研究α螺旋和β折叠片层在形成抗原呈递分子的抗原识别位点(ARS)中的功能作用。这种新型分子是通过用Kb基因的相应序列替换编码Ld基因α螺旋的DNA序列而产生的。对表达嵌合分子(KbαLdβ)的转染L细胞进行血清学分析发现,工程化的I类糖蛋白保留了与Kb的α螺旋相关的两个构象表位,这是由单克隆抗体K10.56和28 - 13 - 3所定义的。这些结果表明,Kb的α螺旋可以与Ld的β折叠片层结合形成一种稳定的结构,并在细胞表面表达。为了研究ARS的α螺旋在决定T细胞交叉反应性中的作用,使用同种异体反应性细胞毒性T淋巴细胞(CTL)来分析表达KbαLdβ的L细胞。以Kb或Ld作为同种异体抗原产生的CTL几乎没有(如果有的话)裂解表达KbαLdβ的L细胞的能力。因此,同种异体反应性CTL不能识别仅由α螺旋或仅由ARS的β折叠片层所决定的结构。然而,针对突变体Kb糖蛋白Kbm8产生的大量和克隆的同种异体反应性CTL与KbαLdβ强烈反应。除了Kb的α螺旋外,Kbm8的ARS在第24位与KbαLdβ共享一个单一的多态性氨基酸。氨基酸24位于形成ARS底部一部分的β2链上,并且已被确定为HLA I类ARS中口袋B的一个组成部分。先前已表明该位置的谷氨酸被丝氨酸取代是Kbm8突变体同种异体抗原性的核心决定因素。该位置在决定bm8与KbαLdβ之间交叉反应性中的功能意义将口袋B确定为同种异体自身肽的一个强锚定位点。这些发现表明,CTL在I类同种异体抗原上识别的决定簇是由涉及ARS的α螺旋和β折叠片层的相互作用形成的。这些相互作用最好通过α螺旋和β折叠片层对这些抗原呈递分子的肽结合特性的影响来解释。

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