Altenburg Leanna M, Wang Stephanie H, Ciabattoni Grace O, Kennedy Amelia, O'Toole Rachel L, Farwell Sara L N, Iovine M Kathryn, Lowe-Krentz Linda J
Department of Biological Sciences, Lehigh University, Bethlehem, PA 18015, USA.
Department of Microbiology, New York University Grossman School of Medicine, New York, NY 10016, USA.
Cells. 2025 Jun 3;14(11):833. doi: 10.3390/cells14110833.
VE-cadherin (VE-cad) membrane stability and localization regulates adhesion formation and actin cytoskeleton dynamics in angiogenesis and vascular remodeling and requires the heparan sulfate proteoglycan (HSPG), Syndecan-4 (Sdc4). This study characterizes the interactions of the heparin receptor, Transmembrane protein-184A (TMEM184A), and Sdc4 in bovine aortic endothelial cells (BAOECs) and the regenerating Zebrafish (ZF) caudal fin and measures the effect of siRNA TMEM184A KD (siTMEM) and TMEM184A overexpression (TMEM OE) on VE-cad levels and localization in confluent and sub-confluent cultured BAOECs. Additionally, we examined the effect of siTMEM on key Rab GTPase trafficking regulators and migrating BAOECs in scratch wound healing assays. We demonstrated that TMEM184A and Sdc4 colocalize in BAOECs and that Sdc4 OE increases colocalization in an HS chain dependent manner, while both Tmem184a and Sdc4 cooperate synergistically in ZF fin angiogenic and tissue repair. We also showed that siTMEM decreases VE-cad membrane and cytoplasmic levels, while increasing scratch wound migration rates. However, TMEM OE cells show increased vesicle formation and VE-cad trafficking and membrane recovery. These findings characterize TMEM184A-Sdc4 cooperation in angiogenesis and indicate a dual function of TMEM184A in signaling and trafficking in vascular cells that promotes VE-cad recovery and membrane localization.
血管内皮钙黏蛋白(VE-cad)的膜稳定性和定位在血管生成和血管重塑过程中调节黏附形成和肌动蛋白细胞骨架动力学,并且需要硫酸乙酰肝素蛋白聚糖(HSPG)、Syndecan-4(Sdc4)。本研究表征了肝素受体跨膜蛋白184A(TMEM184A)与Sdc4在牛主动脉内皮细胞(BAOECs)和再生斑马鱼(ZF)尾鳍中的相互作用,并测量了小干扰RNA介导的TMEM184A基因敲低(siTMEM)和TMEM184A过表达(TMEM OE)对汇合和亚汇合培养的BAOECs中VE-cad水平和定位的影响。此外,我们在划痕伤口愈合试验中检测了siTMEM对关键Rab GTPase转运调节因子和迁移的BAOECs的影响。我们证明TMEM184A和Sdc4在BAOECs中共定位,并且Sdc4过表达以HS链依赖的方式增加共定位,而Tmem184a和Sdc4在ZF鳍血管生成和组织修复中协同合作。我们还表明,siTMEM降低了VE-cad的膜和细胞质水平,同时提高了划痕伤口迁移率。然而,TMEM OE细胞显示出囊泡形成增加以及VE-cad的转运和膜恢复增加。这些发现表征了TMEM184A-Sdc4在血管生成中的合作,并表明TMEM184A在血管细胞的信号传导和转运中具有双重功能,可促进VE-cad的恢复和膜定位。