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Class 3 semaphorins negatively regulate dermal lymphatic network formation

机译:3类信号量负面调节真皮淋巴网络的形成

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The development of a patterned lymphatic vascular network is essential for proper lymphatic functions during organ development and homeostasis. Here we report that class 3 semaphorins (SEMA3s), SEMA3F and SEMA3G negatively regulate lymphatic endothelial cell (LEC) growth and sprouting to control dermal lymphatic network formation. Neuropilin2 (NRP2) functions as a receptor for SEMA3F and SEMA3G, as well as vascular endothelial growth factor C (VEGFC). In culture, Both SEMA3F and SEMA3G inhibit VEGFC-mediated sprouting and proliferation of human dermal LECs. In the developing mouse skin, Sema3f is expressed in the epidermis and Sema3g expression is restricted to arteries, whereas their receptor Nrp2 is preferentially expressed by lymphatic vessels. Both Sema3f;Sema3g double mutants and Nrp2 mutants exhibit increased LEC growth in the skin. In contrast, Sema3f;Sema3g double mutants display increased lymphatic branching, while Nrp2 mutants exhibit reduced lymphatic branching. A targeted mutation in PlexinA1 or PlexinA2 , signal transducers forming a receptor complex with NRP2 for SEMA3s, exhibits an increase in LEC growth and lymphatic branching as observed in Sema3f;Sema3g double mutants. Our results provide the first evidence that SEMA3F and SEMA3G function as a negative regulator for dermal lymphangiogenesis in vivo . The reciprocal phenotype in lymphatic branching between Sema3f;Sema3g double mutants and Nrp2 mutants suggest a complex NRP2 function that regulates LEC behavior both positively and negatively, through a binding with VEGFC or SEMA3s.
机译:模式化的淋巴管网络的发育对于器官发育和体内平衡过程中适当的淋巴功能至关重要。在这里,我们报告3类信号量(SEMA3s),SEMA3F和SEMA3G负调节淋巴管内皮细胞(LEC)的生长和发芽,以控制真皮淋巴网络的形成。 Neuropilin2(NRP2)充当SEMA3F和SEMA3G以及血管内皮生长因子C(VEGFC)的受体。在培养中,SEMA3F和SEMA3G均抑制VEGFC介导的人皮肤LEC的萌发和增殖。在发育中的小鼠皮肤中,Sema3f在表皮中表达,而Sema3g的表达限于动脉,而它们的受体Nrp2优先由淋巴管表达。 Sema3f; Sema3g双突变体和Nrp2突变体在皮肤中均显示出增加的LEC生长。相反,Sema3f; Sema3g双突变体显示出增加的淋巴分支,而Nrp2突变体显示出减少的淋巴分支。在Sema3f; Sema3g双重突变体中观察到,PlexinA1或PlexinA2的定向突变(信号转导子与NRP2形成SEMA3s的受体复合物)显示LEC生长和淋巴分支增加。我们的结果提供了第一个证据,SEMA3F和SEMA3G作为体内真皮淋巴管生成的负调节剂。 Sema3f; Sema3g双突变体和Nrp2突变体之间的淋巴分支中的倒数表型表明,复杂的NRP2功能通过与VEGFC或SEMA3s的结合而正向和负向调节LEC行为。

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