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Mer receptor tyrosine kinase mediates both tethering and phagocytosis of apoptotic cells

机译:Mer受体酪氨酸激酶介导凋亡细胞的束缚和吞噬作用

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摘要

Billions of inflammatory leukocytes die and are phagocytically cleared each day. This regular renewal facilitates the normal termination of inflammatory responses, suppressing pro-inflammatory mediators and inducing their anti-inflammatory counterparts. Here we investigate the role of the receptor tyrosine kinase (RTK) Mer and its ligands Protein S and Gas6 in the initial recognition and capture of apoptotic cells (ACs) by macrophages. We demonstrate extremely rapid binding kinetics of both ligands to phosphatidylserine (PtdSer)-displaying ACs, and show that ACs can be co-opsonized with multiple PtdSer opsonins. We further show that macrophage phagocytosis of ACs opsonized with Mer ligands can occur independently of a requirement for α V integrins. Finally, we demonstrate a novel role for Mer in the tethering of ACs to the macrophage surface, and show that Mer-mediated tethering and subsequent AC engulfment can be distinguished by their requirement for Mer kinase activity. Our results identify Mer as a receptor uniquely capable of both tethering ACs to the macrophage surface and driving their subsequent internalization.
机译:每天都有数十亿的炎性白细胞死亡并被吞噬清除。这种有规律的更新促进了炎症反应的正常终止,抑制了促炎介质并诱导了它们的消炎对应物。在这里,我们调查的受体酪氨酸激酶(RTK)Mer及其配体蛋白S和Gas6在通过巨噬细胞初步识别和捕获凋亡细胞(AC)中的作用。我们展示了两个配体对磷脂酰丝氨酸(PtdSer)显示AC的极快速结合动力学,并显示AC可以与多种PtdSer调理素共调理。我们进一步表明,与Mer配体调理的AC的巨噬细胞吞噬作用可以独立于αV整联蛋白的需求而发生。最后,我们证明了Mer在AC与巨噬细胞表面的束缚中的新型作用,并表明Mer介导的束缚和随后的AC吞噬可以通过其对Mer激酶活性的需求来区分。我们的结果将Mer识别为一种独特的受体,能够将AC束缚在巨噬细胞表面并驱动其随后的内在化。

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