Wong Darren Chen Pei, Lee E Hui Clarissa, Er Junzhi, Yow Ivan, Koean Ricky Abdi Gunawan, Ang Owen, Xiao Jingwei, Low Boon Chuan, Ding Jeak Ling
Department of Biological Sciences, National University of Singapore, Singapore, Singapore.
Mechanobiology Institute Singapore, National University of Singapore, Singapore, Singapore.
Front Cell Dev Biol. 2022 May 16;10:871326. doi: 10.3389/fcell.2022.871326. eCollection 2022.
Actomyosin-mediated cellular contractility is highly conserved for mechanotransduction and signalling. While this phenomenon has been observed in adherent cell models, whether/how contractile forces regulate the function of suspension cells like natural killer (NK) cells during cancer surveillance, is unknown. Here, we demonstrated in coculture settings that the evolutionarily conserved NK cell transcription factor, Eomes, undergoes nuclear shuttling during lung cancer cell surveillance. Biophysical and biochemical analyses revealed mechanistic enhancement of NK cell actomyosin-mediated contractility, which is associated with nuclear flattening, thus enabling nuclear entry of Eomes associated with enhanced NK cytotoxicity. We found that NK cells responded to the presumed immunosuppressive TGFβ in the NK-lung cancer coculture medium to sustain its intracellular contractility through myosin light chain phosphorylation, thereby promoting Eomes nuclear localization. Therefore, our results demonstrate that lung cancer cells provoke NK cell contractility as an early phase activation mechanism and that Eomes is a plausible mechano-responsive protein for increased NK cytotoxicity. There is scope for strategic application of actomyosin-mediated contractility modulating drugs to reinvigorate NK cells prior to adoptive cancer immunotherapy (177 words).
肌动球蛋白介导的细胞收缩性在机械转导和信号传导方面具有高度保守性。虽然这种现象已在贴壁细胞模型中观察到,但在癌症监测期间,收缩力是否以及如何调节自然杀伤(NK)细胞等悬浮细胞的功能尚不清楚。在此,我们在共培养环境中证明,进化上保守的NK细胞转录因子Eomes在肺癌细胞监测过程中会进行核穿梭。生物物理和生化分析揭示了NK细胞肌动球蛋白介导的收缩性的机制增强,这与核扁平有关,从而使与增强的NK细胞毒性相关的Eomes能够进入细胞核。我们发现,NK细胞对NK-肺癌共培养基中假定的免疫抑制性TGFβ作出反应,通过肌球蛋白轻链磷酸化维持其细胞内收缩性,从而促进Eomes的核定位。因此,我们的结果表明,肺癌细胞引发NK细胞收缩性作为早期激活机制,并且Eomes是一种可能的机械反应蛋白,可增强NK细胞毒性。在过继性癌症免疫治疗之前,有策略地应用肌动球蛋白介导的收缩性调节药物来恢复NK细胞的活力是可行的。