PIEZO1-mediated mechanosensing governs NK cell killing efficiency in 3D

crossref(2023)

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摘要
AbstractNatural killer (NK) cells play a vital role in eliminating tumorigenic cells. Efficient locating and killing of target cells in complex three-dimensional (3D) environments is critical for their functions under physiological conditions. Recent studies have shown that NK cell activation is regulated by substrate stiffness. However, the role of mechanosensing in regulating NK cell killing efficiency in physiologically relevant scenarios is poorly understood. In this study, we report that the responsiveness of NK cells is regulated by tumor cell stiffness. NK cell killing efficiency in 3D is impaired against softened tumor cells, while it is enhanced against stiffened tumor cells. Notably, the durations required for NK cell killing and detachment are significantly shortened for stiffened tumor cells. Furthermore, we have identified PIEZO1 as the predominantly expressed mechanosensitive ion channel in NK cells. Perturbation of PIEZO1 by GsMTx4 abolishes stiffness-dependent NK cell responsiveness, significantly impairs the killing efficiency of NK cells in 3D, and substantially reduces NK cell infiltration into 3D collagen matrices. Conversely, PIEZO1 activation enhances NK killing efficiency as well as infiltration. In conclusion, our findings demonstrate that PIEZO1-mediated mechanosensing is crucial for NK killing functions, highlighting the role of mechanosensing in NK cell killing efficiency under physiological conditions and the influence of environmental physical cues on NK cell functions.Significance StatementThis study reports that NK cell responsiveness is regulated by tumor cell stiffness, with impaired killing against softened tumor cells and enhanced killing against stiffened ones. PIEZO1 is the predominantly expressed mechanosensitive ion channel in NK cells, and it plays a crucial role in regulating NK infiltration into collagen matrices, which in turn affects their killing efficiency in 3D. These findings highlight the importance of mechanosensing in NK cell functions under physiological conditions.
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