Le Lann-Terrisse A D, Fournié G J, Benoist H
Department of Cell Physiology and Hematology, UFR de Pharmacie, Université de Reims Champagne-Ardenne, France.
Cancer Immunol Immunother. 1997 Jan;43(6):337-44. doi: 10.1007/s002620050342.
Our previous data suggested that chromatin fragments released from dead cells into the extracellular medium could be involved in the impairment of natural-killer (NK)-mediated cytotoxicity reported in cancer patients. In the present study, an inhibition of the NK-mediated lysis was obtained in vitro by nucleosome addition to different tumor target cells, independently of their sensitivity to NK-mediated lysis. We observed a rapid endocytosis and degradation of nucleosomes by K562 tumor target cells and (although to a much lesser extent) a binding to a subpopulation of lymphocytes. Nucleosomes impaired neither the conjugation step nor the expression of adhesion molecules at the effector (CD11a, CD18, CD2) or target (CD54, CD58) cell surface. On the contrary, flow-cytometry analysis of the conjugation suggested that nucleosomes might stabilize the conjugates. Investigations of the killing process showed that nucleosomes decreased the NK cytotoxic potential without modifying Ca2+-dependent lethal-hit-delivery kinetics. The cytotoxic potential was not restored by increasing the available magnesium and calcium concentrations in the extracellular medium. Taken together, the results suggest that the inhibition of NK-mediated lysis by nucleosomes may result from alterations of the NK mechanism at the postconjugation level and after lethal-hit delivery. Hence, the inhibition could involve a delay in the recycling of effector cells, or a resistance of tumor target cells to NK cells.
我们之前的数据表明,从死亡细胞释放到细胞外介质中的染色质片段可能与癌症患者中报道的自然杀伤(NK)细胞介导的细胞毒性受损有关。在本研究中,通过向不同肿瘤靶细胞添加核小体,在体外获得了对NK介导的裂解的抑制,这与它们对NK介导的裂解的敏感性无关。我们观察到K562肿瘤靶细胞对核小体有快速的内吞作用和降解作用,并且(尽管程度要小得多)与一部分淋巴细胞有结合。核小体既不影响效应细胞(CD11a、CD18、CD2)或靶细胞(CD54、CD58)表面结合步骤,也不影响粘附分子的表达。相反,结合的流式细胞术分析表明核小体可能会稳定结合物。对杀伤过程的研究表明,核小体降低了NK细胞的细胞毒性潜力,而没有改变Ca2+依赖性致命打击传递动力学。通过增加细胞外介质中可用的镁和钙浓度,细胞毒性潜力并未恢复。综上所述,结果表明核小体对NK介导的裂解的抑制可能是由于在结合后水平和致命打击传递后NK机制的改变所致。因此,这种抑制可能涉及效应细胞循环的延迟,或者肿瘤靶细胞对NK细胞的抗性。