Ishimura Akihiko, Ng Jennifer K, Taira Masanori, Young Stephen G, Osada Shin-Ichi
The 21st Century Center of Excellence Program, Akita University School of Medicine, Hondo 1-1-1, Akita, Japan.
Development. 2006 Oct;133(19):3919-28. doi: 10.1242/dev.02538. Epub 2006 Aug 30.
A growing number of integral inner nuclear membrane (INM) proteins have been implicated in diverse cellular functions. Man1, an INM protein, has recently been shown to regulate transforming growth factor (Tgf) beta superfamily signaling by interacting with receptor-associated Smads. However, the in vivo roles of Man1 have not been fully characterized. Here, we show that Man1 regulates vascular remodeling by analyzing Man1-deficient embryos lacking the Smad interacting domain. Man1-deficient embryos die at midgestation because of defects in embryonic vasculature; the primary capillary plexus forms, but subsequent remodeling is perturbed. It has been proposed that the angiogenesis process is divided into two balanced phases, the activation and resolution/maturation phases, both of which are regulated by Tgfbeta1. We have demonstrated, in Man1-deficient embryos, the expression of Tgfb1 is upregulated and Smad2/3 signaling is abnormally activated, resulting in increased extracellular matrix deposition, a hallmark of the resolution phase of angiogenesis. We have also showed that the recruitment of mural cells to the vascular wall is severely disturbed in mutants, which may lead to disruption of intercellular communication between endothelial and mural cells required for proper vascular remodeling. These results have revealed a novel role for Man1 in angiogenesis and provide the first evidence that vascular remodeling can be regulated at the INM through the interaction between Man1 and Smads.
越来越多的核内膜(INM)整合蛋白被认为参与多种细胞功能。核内膜蛋白Man1最近被证明可通过与受体相关的Smads相互作用来调节转化生长因子(Tgf)β超家族信号传导。然而,Man1在体内的作用尚未完全明确。在此,我们通过分析缺乏Smad相互作用结构域的Man1缺陷胚胎,发现Man1可调节血管重塑。Man1缺陷胚胎在妊娠中期死亡,原因是胚胎血管系统存在缺陷;初级毛细血管丛形成,但随后的重塑受到干扰。有人提出血管生成过程分为两个平衡阶段,即激活阶段和消退/成熟阶段,这两个阶段均受Tgfβ1调节。我们在Man1缺陷胚胎中证明,Tgfb1的表达上调,Smad2/3信号传导异常激活,导致细胞外基质沉积增加,这是血管生成消退阶段的一个标志。我们还表明,突变体中壁细胞向血管壁的募集受到严重干扰,这可能导致内皮细胞与壁细胞之间正常血管重塑所需的细胞间通讯中断。这些结果揭示了Man1在血管生成中的新作用,并提供了首个证据,即血管重塑可通过Man1与Smads之间的相互作用在核内膜处受到调节。