Tokudome Takeshi, Kishimoto Ichiro, Shindo Takayuki, Kawakami Hayato, Koyama Teruhide, Otani Kentaro, Nishimura Hirohito, Miyazato Mikiya, Kohno Masakazu, Nakao Kazuwa, Kangawa Kenji
Department of Biochemistry (T.T., I.K., H.N., M.M.), National Cerebral and Cardiovascular Research Center, Suita, Osaka, 565-8565 Japan; Department of Cardiovascular Research (T.S., T.K.), Shinshu University Graduate School of Medicine, Shinshu, 565-8565 Japan; Department of Anatomy (H.K.), Kyorin University School of Medicine, Mitaka, Tokyo, 565-8565 Japan; Tissue Engineering and Regenerative Medicine (K.O.), National Cerebral and Cardiovascular Research Center, Suita, Osaka, 565-8565 Japan; Department of Cardiorenal and Cerebrovascular Medicine (M.K.), Kagawa University Faculty of Medicine, Kagawa, 565-8565 Japan; Kyoto University Graduate School of Medicine Medical Innovation Center (K.N.), Kyoto, 565-8565 Japan; and Director General (K.K.), National Cerebral and Cardiovascular Research Center, Suita, Osaka, 565-8565 Japan.
Endocrinology. 2016 Jan;157(1):358-67. doi: 10.1210/en.2015-1344. Epub 2015 Oct 30.
Atrial natriuretic peptide (ANP) and brain natriuretic peptide (BNP) bind to the receptor guanylyl cyclase (GC)-A, leading to diuresis, natriuresis, and blood vessel dilation. In addition, ANP and BNP have various angiogenic properties in ischemic tissue. When breeding mice devoid of GC-A, we noted significant skewing of the Mendelian ratio in the offspring, suggesting embryonic lethality due to knockout of GC-A. Consequently, we here investigated the roles of endogenous ANP and BNP in embryonic neovascularization and organ morphogenesis. Embryos resulting from GC-A(-/-) × GC-A(+/-) crosses developed hydrops fetalis (HF) beginning at embryonic day (E)14.5. All embryos with HF had the genotype GC-A(-/-). At E17.5, 33.3% (12 of 36) of GC-A(-/-) embryos had HF, and all GC-A(-/-) embryos with HF were dead. Beginning at E16.0, HF-GC-A(-/-) embryos demonstrated poorly developed superficial vascular vessels and sc hemorrhage, the fetal side of the placenta appeared ischemic, and vitelline vessels on the yolk sac were poorly developed. Furthermore, HF-GC-A(-/-) embryos also showed abnormal constriction of umbilical cord vascular vessels, few cardiac trabeculae and a thin compact zone, hepatic hemorrhage, and poor bone development. Electron microscopy of E16.5 HF-GC-A(-/-) embryos revealed severe vacuolar degeneration in endothelial cells, and the expected 3-layer structure of the smooth muscle wall of the umbilical artery was indistinct. These data demonstrate the importance of the endogenous ANP/BNP-GC-A system not only in the neovascularization of ischemic tissues but also in embryonic vascular development and organ morphogenesis.
心房利钠肽(ANP)和脑利钠肽(BNP)与受体鸟苷酸环化酶(GC)-A结合,导致利尿、利钠和血管舒张。此外,ANP和BNP在缺血组织中具有多种血管生成特性。在培育缺乏GC-A的小鼠时,我们注意到后代孟德尔比率出现显著偏差,提示GC-A基因敲除导致胚胎致死。因此,我们在此研究内源性ANP和BNP在胚胎新血管形成和器官形态发生中的作用。由GC-A(-/-)×GC-A(+/-)杂交产生的胚胎从胚胎第(E)14.5天开始出现胎儿水肿(HF)。所有患有HF的胚胎基因型均为GC-A(-/-)。在E17.5时,33.3%(36个中有12个)的GC-A(-/-)胚胎患有HF,所有患有HF的GC-A(-/-)胚胎均死亡。从E16.0开始,HF-GC-A(-/-)胚胎表现出浅表血管发育不良和皮下出血,胎盘的胎儿侧出现缺血,卵黄囊上的卵黄血管发育不良。此外,HF-GC-A(-/-)胚胎还表现出脐带血管异常收缩、心脏小梁少和致密区薄、肝出血以及骨骼发育不良。E16.5 HF-GC-A(-/-)胚胎的电子显微镜检查显示内皮细胞严重空泡变性,脐动脉平滑肌壁预期的三层结构不清晰。这些数据表明内源性ANP/BNP-GC-A系统不仅在缺血组织的新血管形成中,而且在胚胎血管发育和器官形态发生中都很重要。