Takano Kazuhiro, Ito Yuzuru, Obata Shuichi, Oinuma Tsutomu, Komazaki Shinji, Nakamura Hiroaki, Asashima Makoto
Department of Anatomy, Faculty of Medicine, Saitama Medical University, Iruma, Saitama, Japan.
Int J Dev Biol. 2007;51(4):265-72. doi: 10.1387/ijdb.072270kt.
During vertebrate cardiac development, the heart tube formed by fusion of right and left presumptive cardiac mesoderms (PCMs) undergoes looping toward the right, resulting in an asymmetrical heart. Here, we examined the right and left PCMs with regard to heart-tube looping using right- and left-half newt embryos (Cynops pyrrhogaster ). In the half embryos, the rightward (normal) loop of the heart tube was formed from the left PCM, irrespective of the timing of its separation, while the leftward (reversed) loop of the heart tube was formed from the right PCM, separated by stage 18. In addition, the direction of the leftward loop was inverted to the rightward direction in right-half embryos bisected after stage 18. Incision or resection of the embryonic caudal region implicated interactions between the right and left sides of this region as crucial for inverting the direction of the heart-tube loop from leftward to rightward in the right-half embryos. In situ hybridization of CyNodal (Cynops nodal-related gene) suggested that the inversion of heart looping in the right-half embryos has no association with the CyNodal expression pattern. Based on these findings, we propose a mechanism for the rightward looping underlying normal amphibian cardiac development.
在脊椎动物心脏发育过程中,由左右预定心脏中胚层(PCM)融合形成的心脏管会向右弯曲,从而形成不对称的心脏。在此,我们使用左右半侧蝾螈胚胎(日本红腹蝾螈)研究了与心脏管弯曲相关的左右PCM。在半侧胚胎中,心脏管的向右(正常)弯曲由左侧PCM形成,与分离时间无关,而心脏管的向左(反向)弯曲由右侧PCM形成,在第18阶段分离。此外,在第18阶段后对半切开的右侧半侧胚胎中,向左弯曲的方向会反转成向右方向。胚胎尾部区域的切开或切除表明该区域左右两侧之间的相互作用对于右侧半侧胚胎中心脏管弯曲方向从向左转变为向右至关重要。CyNodal(蝾螈结节相关基因)的原位杂交表明,右侧半侧胚胎中心脏弯曲的反转与CyNodal表达模式无关。基于这些发现,我们提出了正常两栖动物心脏发育过程中向右弯曲的机制。