School of Life Sciences and Aging Research Institute, Gwangju Institute of Science and Technology, Gwangju, 61005, Korea.
Research Center for Cellular Homeostasis, Ewha Womans University, Seoul, 03760, Korea.
Cell Death Differ. 2019 Sep;26(9):1646-1655. doi: 10.1038/s41418-018-0238-9. Epub 2018 Nov 19.
An essential step during clearance of apoptotic cells is the recognition of phosphatidylserine (PS) exposed on apoptotic cells by its receptors on phagocytes. Tim-4 directly binding to PS and functioning as a tethering receptor for phagocytosis of apoptotic cells has been extensively studied over the past decade. However, the molecular mechanisms by which Tim-4 collaborates with other engulfment receptors during efferocytosis remain elusive. By comparing efferocytosis induced by Tim-4 with that by Anxa5-GPI, an artificial tethering receptor, we found that Tim-4 possesses auxiliary machinery to induce a higher level of efferocytosis than Anxa5-GPI. To search for that, we performed a yeast two-hybrid screen and identified Fibronectin (Fn1) as a novel Tim-4-associating protein. Tim-4 directly associated with Fn1 and formed a complex with integrins via the association of Fn1. Through Tim-4 mice and cell-based assays, we found that modulation of the Fn1 level affected efferocytosis induced by Tim-4 and disruption of the interaction between Tim-4 and Fn1 abrogated Tim-4-mediated efferocytosis. In addition, Tim-4 depletion attenuated integrin signaling activation and perturbation of integrin signaling suppressed Tim-4-promoted efferocytosis. Taken together, the data suggest that Fn1 locates Tim-4 and integrins in close proximity by acting as a scaffold, resulting in synergistic cooperation of Tim-4 with integrins for efficient efferocytosis.
细胞凋亡清除过程中的一个重要步骤是凋亡细胞表面的磷脂酰丝氨酸(PS)被吞噬细胞上的受体识别。Tim-4 直接与 PS 结合,并作为吞噬凋亡细胞的连接受体,在过去十年中得到了广泛研究。然而,Tim-4 在吞噬作用中与其他吞噬受体协同作用的分子机制仍不清楚。通过比较 Tim-4 诱导的吞噬作用和 Anxa5-GPI(一种人工连接受体)诱导的吞噬作用,我们发现 Tim-4 具有辅助机制,可以诱导比 Anxa5-GPI 更高水平的吞噬作用。为了寻找这种机制,我们进行了酵母双杂交筛选,并鉴定出 Fibronectin (Fn1) 是一种新的 Tim-4 相关蛋白。Tim-4 直接与 Fn1 结合,并通过 Fn1 的结合与整合素形成复合物。通过 Tim-4 敲除小鼠和细胞实验,我们发现 Fn1 水平的调节影响了由 Tim-4 诱导的吞噬作用,破坏了 Tim-4 和 Fn1 之间的相互作用会阻断 Tim-4 介导的吞噬作用。此外,Tim-4 的耗竭减弱了整合素信号的激活,而整合素信号的干扰抑制了 Tim-4 促进的吞噬作用。综上所述,数据表明 Fn1 通过充当支架将 Tim-4 和整合素定位在接近的位置,从而导致 Tim-4 与整合素协同合作,有效地进行吞噬作用。