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Existence of both inhibitory (p58) and activatory (p50) receptors for HLA-C molecules in human natural killer cells

机译:人类自然杀伤细胞中HLA-C分子的抑制性(p58)和激活性(p50)受体的存在

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摘要

The natural killer (NK) cell-specific p58 molecules EB6 and GL183 have been shown to represent the putative surface receptors for two distinct groups of human histocompatibility leukocyte antigen (HLA) C alleles. Interaction between p58 receptors and class I molecules expressed on target cells results in inhibition of the NK-mediated cytolytic activity and thus in target cell protection. In the present study, we show that EB6 molecules may also act as receptors mediating NK cell triggering. Activatory EB6 molecules were found to be confined only to certain donors. Moreover, in these donors, only a fraction of EB6+ NK clones expressed the activatory form of EB6 molecules, while the remaining clones expressed the conventional inhibitory form. Biochemical analysis of the activatory EB6 molecules revealed a molecular mass of approximately 50 kD (p50), thus differing from the 58- kD inhibitory form. This difference was not due to differential glycosylation of the same protein, as revealed by deglycosylation experiments of isolated EB6 molecules. Treatment of purified p58 or p50/EB6 molecules with proteolytic enzymes, including V8-protease, chymotrypsin, and papain, showed only minor differences in the resulting peptides. Treatment with pepsin followed by two-dimensional peptide mapping demonstrated that, although the majority of peptides migrated in identical positions, differences between the two forms could be detected for at least one major peptide. Anti-EB6 monoclonal antibody (mAb)-mediated cross-linking of p50 molecules was required to trigger the cytolytic activity and the intracellular calcium ([Ca+2]i) increases in appropriate NK clones. Likewise, mAb-mediated cross linking of the p58 EB6 molecules was needed to inhibit the cytolytic activity; however, in this case, no [Ca+2]i increases could be detected. In NK clones expressing the inhibitory p58 EB6 receptors, soluble anti-EB6 mAb prevented recognition of protective Cw4 molecules and reconstituted target cell lysis. In contrast, in clones expressing the activatory p50/EB6 receptor, EB6 masking frequently resulted in partial inhibition of the cytolytic activity against Cw4+ target cells. Therefore, it appears that NK clones expressing the p50/EB6 receptors are induced to lyse Cw4+ target cells upon specific interaction with Cw4 molecules. This concept was further substantiated by experiments in which target cells were represented by the HLA-negative LCL721.221 cell line transfected with the Cw4 allele. Phenotypic and functional analysis of a large number of NK clones showed that clones expressing the activatory p50/EB6 molecules consistently coexpressed inhibitory receptors for other HLA class I alleles.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:已显示天然杀伤(NK)细胞特异性p58分子EB6和GL183代表人类组织相容性白细胞抗原(HLA)C等位基因的两个不同组的推定表面受体。 p58受体与在靶细胞上表达的I类分子之间的相互作用导致NK介导的溶细胞活性受到抑制,从而保护了靶细胞。在本研究中,我们表明EB6分子还可以充当介导NK细胞触发的受体。发现活性EB6分子仅限于某些供体。此外,在这些供体中,只有一部分EB6 + NK克隆表达了EB6分子的活化形式,而其余的克隆则表达了常规的抑制形式。激活性EB6分子的生化分析显示分子量约为50 kD(p50),因此不同于58 kD抑制形式。如分离的EB6分子的去糖基化实验所揭示的,这种差异不是由于相同蛋白质的差异糖基化引起的。用蛋白水解酶(包括V8蛋白酶,胰凝乳蛋白酶和木瓜蛋白酶)处理纯化的p58或p50 / EB6分子,在所得肽中仅存在微小差异。用胃蛋白酶处理,然后进行二维肽图分析表明,尽管大多数肽在相同位置迁移,但对于至少一种主要肽,可以检测到两种形式之间的差异。需要使用抗EB6单克隆抗体(mAb)介导的p50分子交联来触发细胞溶解活性,并且适当的NK克隆中的细胞内钙([Ca + 2] i)会增加。同样,需要mAb介导的p58 EB6分子的交联来抑制细胞溶解活性。但是,在这种情况下,无法检测到[Ca + 2] i的增加。在表达抑制性p58 EB6受体的NK克隆中,可溶性抗EB6 mAb阻止识别保护性Cw4分子并重建靶细胞裂解。相反,在表达激活性p50 / EB6受体的克隆中,EB6的掩蔽常常导致部分抑制针对Cw4 +靶细胞的溶细胞活性。因此,似乎表达p50 / EB6受体的NK克隆在与Cw4分子特异性相互作用后被诱导裂解Cw4 +靶细胞。通过实验进一步证实了这一概念,在该实验中,靶细胞由转染了Cw4等位基因的HLA阴性LCL721.221细胞系代表。对大量NK克隆的表型和功能分析表明,表达激活性p50 / EB6分子的克隆始终共表达其他HLA I类等位基因的抑制受体(摘要截短了400字)。

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