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氨基酸第70位在p50.1和p58.1受体与HLA - Cw4分子结合亲和力中的作用。

Role of amino acid position 70 in the binding affinity of p50.1 and p58.1 receptors for HLA-Cw4 molecules.

作者信息

Biassoni R, Pessino A, Malaspina A, Cantoni C, Bottino C, Sivori S, Moretta L, Moretta A

机构信息

Istituto Nazionale per la Ricerca sul Cancro and Centro Biotecnologie Avanzate, Genova, Italy.

出版信息

Eur J Immunol. 1997 Dec;27(12):3095-9. doi: 10.1002/eji.1830271203.

Abstract

In an attempt to identify the amino acid position(s) of the HLA-C-specific p58.1/p50.1 natural killer cell receptors that determine the binding affinity for their ligand, we used soluble fusion proteins formed by the ectodomain of either receptor and the Fc portion of human IgG1. We show that the soluble p50.1 (activating) receptor binds weakly to 221-Cw4 transfectants. In contrast, the soluble p58.1 (inhibitory) receptor binds with high affinity. A single amino acid mutation at position 70, obtained by site-directed mutagenesis, was found to affect the binding affinity of both the p50.1 and the p58.1 receptors. Thus, substitution in p50.1 of lysine 70 by threonine (typical of the inhibitory p58.1 molecule) resulted in a dramatic increase in binding affinity, comparable to that of the p58.1 molecule. On the other hand, substitution of threonine 70 by lysine in p58.1 almost abolished binding to 221-Cw4 cells. Our present data indicate that a single amino acid difference greatly influences the p58.1/p50.1 affinity for their HLA-C ligand and suggests a possible role of position 70 as a contact site in the natural killer cell receptor/major histocompatibility complex class I interaction.

摘要

为了确定HLA - C特异性p58.1/p50.1自然杀伤细胞受体中决定其与配体结合亲和力的氨基酸位置,我们使用了由任一受体的胞外结构域与人IgG1的Fc部分形成的可溶性融合蛋白。我们发现可溶性p50.1(激活型)受体与221 - Cw4转染细胞的结合较弱。相比之下,可溶性p58.1(抑制型)受体具有高亲和力结合。通过定点诱变在第70位获得的单个氨基酸突变被发现会影响p50.1和p58.1受体的结合亲和力。因此,在p50.1中将第70位的赖氨酸替换为苏氨酸(抑制型p58.1分子的典型特征)导致结合亲和力显著增加,与p58.1分子相当。另一方面,在p58.1中将第70位的苏氨酸替换为赖氨酸几乎消除了与221 - Cw4细胞的结合。我们目前的数据表明,单个氨基酸差异极大地影响了p58.1/p50.1对其HLA - C配体的亲和力,并表明第70位可能作为自然杀伤细胞受体/主要组织相容性复合体I类相互作用中的接触位点发挥作用。

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