School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju, 61005, Korea.
Cell Mechanobiology Laboratory, Gwangju Institute of Science and Technology, Gwangju, 61005, Korea.
Cell Death Dis. 2023 Jun 30;14(6):391. doi: 10.1038/s41419-023-05925-7.
Phagocytosis of apoptotic cells, called efferocytosis, requires calcium inside and outside of phagocytes. Due to its necessity, calcium flux is sophisticatedly modulated, and the level of intracellular calcium in phagocytes is ultimately elevated during efferocytosis. However, the role of elevated intracellular calcium in efferocytosis remains elusive. Here, we report that Mertk-mediated intracellular calcium elevation is necessary for internalization of apoptotic cells during efferocytosis. Drastic depletion of intracellular calcium abrogated the internalization step of efferocytosis by delaying phagocytic cup extension and closure. Especially, the defect of phagocytic cup closure for internalization of apoptotic cells was caused by impaired F-actin disassembly and the attenuated interaction of Calmodulin with myosin light chain kinase (MLCK), leading to diminished myosin light chain (MLC) phosphorylation. Genetic and pharmacological impairment of the Calmodulin-MLCK-MLC axis or Mertk-mediated calcium influx also resulted in inefficient efferocytosis due to a defect in internalization of the targets. Taken together, our observations imply that intracellular calcium elevation through Mertk-mediated calcium influx facilitates efferocytosis by inducing myosin II-mediated contraction and F-actin disassembly required for internalization of apoptotic cells.
细胞吞噬凋亡细胞(称为噬胞作用)需要吞噬细胞内外的钙离子。由于其必要性,钙离子流被精巧地调节,并且在噬胞作用期间吞噬细胞内的钙离子水平最终升高。然而,升高的细胞内钙离子在噬胞作用中的作用仍然难以捉摸。在这里,我们报告说,Mertk 介导的细胞内钙离子升高对于噬胞作用期间凋亡细胞的内化是必要的。细胞内钙离子的大量耗竭通过延迟吞噬杯延伸和闭合来消除噬胞作用的内化步骤。特别是,凋亡细胞内化的吞噬杯闭合缺陷是由肌动蛋白解聚受损和钙调蛋白与肌球蛋白轻链激酶(MLCK)的相互作用减弱引起的,导致肌球蛋白轻链(MLC)磷酸化减少。Calmodulin-MLCK-MLC 轴的遗传和药理学损伤或 Mertk 介导的钙离子内流也会导致靶细胞内化缺陷,从而导致噬胞作用效率降低。总之,我们的观察结果表明,通过 Mertk 介导的钙离子内流升高细胞内钙离子水平通过诱导肌球蛋白 II 介导的收缩和内化凋亡细胞所需的肌动蛋白解聚来促进噬胞作用。