Bryceson Yenan T, Ljunggren Hans-Gustaf, Long Eric O
Laboratory of Immunogenetics, National Institute of Allergy and Infectious Diseases (NIAID), National Institutes of Health (NIH), Rockville, MD 20852, USA.
Blood. 2009 Sep 24;114(13):2657-66. doi: 10.1182/blood-2009-01-201632. Epub 2009 Jul 23.
Natural killer (NK) cells provide innate control of infected and neoplastic cells. Multiple receptors have been implicated in natural cytotoxicity, but their individual contribution remains unclear. Here, we studied the activation of primary, resting human NK cells by Drosophila cells expressing ligands for receptors NKG2D, DNAM-1, 2B4, CD2, and LFA-1. Each receptor was capable of inducing inside-out signals for LFA-1, promoting adhesion, but none induced degranulation. Rather, release of cytolytic granules required synergistic activation through coengagement of receptors, shown here for NKG2D and 2B4. Although engagement of NKG2D and 2B4 was not sufficient for strong target cell lysis, collective engagement of LFA-1, NKG2D, and 2B4 defined a minimal requirement for natural cytotoxicity. Remarkably, inside-out signaling induced by each one of these receptors, including LFA-1, was inhibited by receptor CD94/NKG2A binding to HLA-E. Strong inside-out signals induced by the combination of NKG2D and 2B4 or by CD16 could overcome CD94/NKG2A inhibition. In contrast, degranulation induced by these receptors was still subject to inhibition by CD94/NKG2A. These results reveal multiple layers in the activation pathway for natural cytotoxicity and that steps as distinct as inside-out signaling to LFA-1 and signals for granule release are sensitive to inhibition by CD94/NKG2A.
自然杀伤(NK)细胞对受感染细胞和肿瘤细胞发挥先天性控制作用。多种受体参与了自然细胞毒性作用,但其各自的贡献仍不明确。在此,我们研究了表达NKG2D、DNAM-1、2B4、CD2和LFA-1受体配体的果蝇细胞对原代静息人NK细胞的激活作用。每个受体都能够诱导LFA-1的外向内信号,促进黏附,但均未诱导脱颗粒。相反,溶细胞颗粒的释放需要通过受体的共同参与进行协同激活,此处以NKG2D和2B4为例。虽然NKG2D和2B4的参与不足以实现强烈的靶细胞裂解,但LFA-1、NKG2D和2B4的共同参与确定了自然细胞毒性的最低要求。值得注意的是,包括LFA-1在内的这些受体中的每一个所诱导的外向内信号都受到CD94/NKG2A与HLA-E结合的抑制。由NKG2D和2B4组合或CD16诱导的强烈外向内信号可以克服CD94/NKG2A的抑制作用。相比之下,这些受体诱导的脱颗粒仍受到CD94/NKG2A的抑制。这些结果揭示了自然细胞毒性激活途径中的多个层面,以及诸如LFA-1的外向内信号和颗粒释放信号等不同步骤对CD94/NKG2A抑制敏感。