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Kindlin-3 in platelets and myeloid cells differentially regulates deep vein thrombosis in mice

机译:血小板和髓样细胞中的Kindlin-3差异调节小鼠深静脉血栓形成

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摘要

Platelets and myeloid cells cooperate to promote deep vein thrombosis (DVT). Here we evaluated the role of kindlin-3, a key integrin activator in these cells, in regulating stenosis-induced DVT in mice. DVT was significantly suppressed in mice that express a kindlin-3 mutant defective for integrin binding, showing that kindlin-3-mediated integrin signaling in blood cells is required for DVT. While platelet-specific deficiency of kindlin-3 in Kindlin-3fl/flPF4-Cre mice significantly suppressed DVT, deficiency of kindlin-3 specifically in myeloid cells in Kindlin-3fl/flLysM-Cre mice remarkably enhanced the early development of DVT, indicating that kindlin-3 in platelets and myeloid cells can play distinct roles in regulating DVT. Mechanistically, the levels of neutrophil extracellular traps (NETs) in plasma, a key DVT facilitator, were significantly elevated in Kindlin-3fl/flLysM-Cre mice upon the IVC stenosis; and treatment with either DNase I or PAD4 inhibitor could effectively compromise the enhancement of DVT in these mice, suggesting that kindlin-3 in neutrophils may affect DVT via restraining NET release. In addition, we found that the kindlin-3-integrin αIIbβ3 signaling in platelets was required to promote NET release. Together, our studies reveal that kindlin-3 in platelets and myeloid cells can differentially regulate DVT through orchestrating NET release, thus providing further mechanistic insights into DVT.
机译:血小板和髓样细胞共同促进深静脉血栓形成(DVT)。在这里我们评估了关键蛋白整联蛋白激活剂kindlin-3在调节小鼠狭窄引起的DVT中的作用。在表达整合素结合缺陷的kindlin-3突变体的小鼠中,DVT被显着抑制,表明DVT需要血细胞中kindlin-3介导的整合素信号传导。 Kindlin-3 fl / fl PF4-Cre小鼠的kindlin-3血小板特异性缺乏可显着抑制DVT,而Kindlin-3 fl / fl的髓样细胞中kindlin-3的缺乏特别明显。 LysM-Cre小鼠显着增强了DVT的早期发育,表明血小板和髓样细胞中的kindlin-3在调节DVT中可以发挥不同的作用。从机制上讲,在IVC狭窄时,Kindlin-3 fl / fl LysM-Cre小鼠血浆中的中性粒细胞胞外陷阱(NETs)水平显着升高;并且用DNase I或PAD4抑制剂治疗可以有效地损害这些小鼠中DVT的增强,这表明中性粒细胞中的kindlin-3可能通过抑制NET释放而影响DVT。此外,我们发现血小板中的kindlin-3-integrinαIIbβ3信号传导是促进NET释放所必需的。总之,我们的研究表明,血小板和髓样细胞中的kindlin-3可以通过协调NET释放来差异调节DVT,从而提供了对DVT的进一步机理性见解。

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