Department of Hematology and Hematopoietic Cell Transplantation, City of Hope National Medical Center, Los Angeles, California.
Department of Computational and Quantitative Medicine, City of Hope National Medical Center, Los Angeles, California.
Cancer Immunol Res. 2021 Oct;9(10):1229-1241. doi: 10.1158/2326-6066.CIR-20-1014. Epub 2021 Jul 29.
Trogocytosis is a fast, cell-cell contact-dependent uptake of membrane patches and associated molecules by one cell from another. Here, we report our investigation of trogocytosis of TYRO3, a cell membrane protein, from tumor target cells to natural killer (NK) cells and the associated functional consequences for NK cells. We found that although NK cells did not express endogenous TYRO3 on the cell surface, activated NK cells rapidly acquired TYRO3 from tumor cells via trogocytosis and . NK cells that acquired TYRO3, which we termed TYRO3 NK cells, had significantly enhanced cytotoxicity and IFNγ production as well as higher expression of some activated surface markers compared with TYRO3 NK cells. Furthermore, the activation status of NK cells and TYRO3 expression levels on donor cells, either endogenous or ectopic, positively correlated with trogocytosis levels. When the antigen-presenting cell (APC) K562 leukemia cell line, a feeder cell line to expand NK cells, overexpressed TYRO3, TYRO3 was transferred to NK cells via trogocytosis, which improved NK-cell proliferation . This provides a strategy to manufacture NK cells or their engineered counterparts, such as chimeric antigen receptor NK cells, for the treatment of cancer or infectious diseases.
细胞融合是一种快速的、细胞间接触依赖性的细胞摄取过程,即将一个细胞的膜片和相关分子转移到另一个细胞中。在这里,我们报告了我们对 TYRO3 细胞融合的研究,TYRO3 是一种细胞膜蛋白,它从肿瘤靶细胞转移到自然杀伤 (NK) 细胞,并对 NK 细胞产生相关的功能后果。我们发现,尽管 NK 细胞表面上没有表达内源性 TYRO3,但激活的 NK 细胞可以通过细胞融合从肿瘤细胞中快速获得 TYRO3。我们将获得 TYRO3 的 NK 细胞称为 TYRO3 NK 细胞,与未获得 TYRO3 的 NK 细胞相比,TYRO3 NK 细胞具有显著增强的细胞毒性和 IFNγ 产生能力,以及更高表达一些激活的表面标志物。此外,NK 细胞的激活状态和供体细胞(无论是内源性还是异位表达)上的 TYRO3 表达水平与细胞融合水平呈正相关。当抗原呈递细胞 (APC) K562 白血病细胞系(一种扩增 NK 细胞的饲养细胞系)过表达 TYRO3 时,TYRO3 通过细胞融合转移到 NK 细胞中,从而促进了 NK 细胞的增殖。这为制造 NK 细胞或其工程化类似物(如嵌合抗原受体 NK 细胞)提供了一种策略,用于治疗癌症或传染病。