Spatiotemporal control of actomyosin contractility by MRCKβ signaling drives phagocytosis.

The Journal of Cell Biology Pub Date : 2022-11-07 Epub Date: 2022-09-19 DOI:10.1083/jcb.202012042
Ceniz Zihni, Anastasios Georgiadis, Conor M Ramsden, Elena Sanchez-Heras, Alexis J Haas, Britta Nommiste, Olha Semenyuk, James W B Bainbridge, Peter J Coffey, Alexander J Smith, Robin R Ali, Maria S Balda, Karl Matter
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Abstract

Phagocytosis requires actin dynamics, but whether actomyosin contractility plays a role in this morphodynamic process is unclear. Here, we show that in the retinal pigment epithelium (RPE), particle binding to Mer Tyrosine Kinase (MerTK), a widely expressed phagocytic receptor, stimulates phosphorylation of the Cdc42 GEF Dbl3, triggering activation of MRCKβ/myosin-II and its coeffector N-WASP, membrane deformation, and cup formation. Continued MRCKβ/myosin-II activity then drives recruitment of a mechanosensing bridge, enabling cytoskeletal force transmission, cup closure, and particle internalization. In vivo, MRCKβ is essential for RPE phagocytosis and retinal integrity. MerTK-independent activation of MRCKβ signaling by a phosphomimetic Dbl3 mutant rescues phagocytosis in retinitis pigmentosa RPE cells lacking functional MerTK. MRCKβ is also required for efficient particle translocation from the cortex into the cell body in Fc receptor-mediated phagocytosis. Thus, conserved MRCKβ signaling at the cortex controls spatiotemporal regulation of actomyosin contractility to guide distinct phases of phagocytosis in the RPE and represents the principle phagocytic effector pathway downstream of MerTK.

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MRCKβ信号传导对肌动球蛋白收缩性的时空调控驱动吞噬作用。
吞噬作用需要肌动蛋白动力学,但肌动球蛋白收缩性是否在这一形态动力学过程中起作用尚不清楚。本研究表明,在视网膜色素上皮(RPE)中,与广泛表达的吞噬受体Mer酪氨酸激酶(MerTK)结合的颗粒刺激Cdc42 GEF Dbl3的磷酸化,触发MRCKβ/myosin-II及其效应物N-WASP的激活,膜变形和杯状形成。持续的MRCKβ/肌球蛋白ii活性随后驱动机械传感桥的募集,从而实现细胞骨架力传递、杯状闭合和颗粒内化。在体内,MRCKβ对RPE吞噬和视网膜完整性至关重要。在缺乏MerTK功能的视网膜色素变性RPE细胞中,拟磷Dbl3突变体对MRCKβ信号的MerTK非依赖性激活可拯救吞噬。在Fc受体介导的吞噬作用中,MRCKβ也需要从皮层到细胞体的有效颗粒转运。因此,皮层保守的MRCKβ信号控制着肌动球蛋白收缩的时空调节,以指导RPE中不同阶段的吞噬,并代表了MerTK下游的主要吞噬效应途径。
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