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Temporal and Spatial Regulation of Epsin Abundance and VEGFR3 Signaling are Required for Lymphatic Valve Formation and Function

机译:淋巴阀的形成和功能需要Epsin丰度和VEGFR3信号的时空调节。

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摘要

Lymphatic valves prevent the backflow of the lymph fluid and ensure proper lymphatic drainage throughout the body. Local accumulation of lymphatic fluid in tissues, a condition called lymphedema, is common in individuals with malformed lymphatic valves. The vascular endothelial growth factor receptor 3 (VEGFR3) is required for the development of lymphatic vascular system. The abundance of VEGFR3 in collecting lymphatic trunks is high before valve formation and, except at valve regions, decreases after valve formation. We found that in mesenteric lymphatics, the abundance of epsin 1 and 2, which are ubiquitin-binding adaptor proteins involved in endocytosis, was low at early stages of development. After lymphatic valve formation, the initiation of steady shear flow was associated with an increase in the abundance of epsin 1 and 2 in collecting lymphatic trunks, but not in valve regions. Epsin 1 and 2 bound to VEGFR3 and mediated the internalization and degradation of VEGFR3, resulting in termination of VEGFR3 signaling. Mice with lymphatic endothelial cell-specific deficiency of epsin 1 and 2 had dilated lymphatic capillaries, abnormally high VEGFR3 abundance in collecting lymphatics, immature lymphatic valves, and defective lymph drainage. Deletion of a single Vegfr3 allele or pharmacological suppression of VEGFR3 signaling restored normal lymphatic valve development and lymph drainage in epsin-deficient mice. Our findings establish a critical role for epsins in the temporal and spatial regulation of VEGFR3 abundance and signaling in collecting lymphatic trunks during lymphatic valve formation.
机译:淋巴瓣膜可防止淋巴液回流,并确保整个体内适当的淋巴引流。淋巴液在组织中的局部积聚(一种称为淋巴水肿的情况)在淋巴瓣畸形的个体中很常见。淋巴管系统的发育需要血管内皮生长因子受体3(VEGFR3)。在瓣膜形成之前,收集的淋巴干中的VEGFR3丰度很高,并且除瓣膜区域外,在瓣膜形成后降低。我们发现,在肠系膜淋巴管中,参与内吞作用的泛素结合衔接蛋白epsin 1和2的丰度在发育的早期阶段较低。淋巴阀形成后,稳定的剪切流的开始与收集淋巴干而不是瓣膜区域中的epsin 1和epsin 2的丰度增加有关。 Epsin 1和2与VEGFR3结合并介导VEGFR3的内在化和降解,从而导致VEGFR3信号终止。 epsin 1和2具有淋巴管内皮细胞特异性缺陷的小鼠有淋巴管毛细血管扩张,收集淋巴管的VEGFR3丰度异常高,淋巴阀未成熟和淋巴引流不良。删除单个Vegfr3等位基因或VEGFR3信号的药理抑制可恢复epsin缺陷小鼠的正常淋巴瓣发育和淋巴引流。我们的发现建立了epsins在VEGFR3丰度的时空调节和在淋巴阀形成过程中收集淋巴干的信号传导中的关键作用。

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