Department of Life Science, Graduate School of Life Science, University of Hyogo, 3-2-1 Koto, Kamigori, Akou-gun, Hyogo 678-1297, Japan.
Dev Growth Differ. 2010 Feb;52(2):235-44. doi: 10.1111/j.1440-169X.2009.01164.x.
Primordial germ cells (PGCs) in Xenopus embryo are specified in the endodermal cell mass and migrate dorsally toward the future gonads. The role of the signal mediated by Notch and Suppressor of Hairless [Su(H)] was analyzed on the migrating PGCs at the tailbud stage. X-Notch-1 and X-Delta-1 are expressed in the migrating PGCs and surrounding endodermal cells, whereas X-Delta-2 and X-Serrate-1 are expressed preferentially in the PGCs. Suppression and constitutive activation of the Notch/Su(H) signaling in the whole endoderm region or selectively in the PGCs resulted in an increase in ectopic PGCs located in lateral or ventral regions. Knocking down of the Notch ligands by morpholino oligonucleotides revealed that X-Delta-2 was indispensable for the correct PGC migration. The ectopic PGCs seemed to have lost their motility in the Notch/Su(H) signal-manipulated embryos. Our results suggest that a cell-to-cell interaction via the Notch/Su(H) pathway has a significant role in the PGC migration by regulating cell motility.
爪蟾胚胎中的原始生殖细胞(PGCs)在肠胚细胞团中被指定,并向未来的性腺背侧迁移。在尾芽阶段,分析了 Notch 和无发抑制因子[Su(H)]介导的信号对迁移的 PGC 的作用。X-Notch-1 和 X-Delta-1 在迁移的 PGCs 和周围的内胚层细胞中表达,而 X-Delta-2 和 X-Serrate-1 则优先在 PGCs 中表达。在整个内胚层区域或选择性地在 PGCs 中抑制和组成性激活 Notch/Su(H)信号,导致位于侧部或腹侧区域的异位 PGCs 增加。通过反义寡核苷酸敲低 Notch 配体表明,X-Delta-2 对于正确的 PGC 迁移是必不可少的。在 Notch/Su(H)信号处理的胚胎中,异位 PGCs 似乎已经失去了它们的运动性。我们的结果表明,通过调节细胞运动,Notch/Su(H)途径的细胞间相互作用在 PGC 迁移中具有重要作用。