Fu Ming, Lui Vincent Chi Hang, Sham Mai Har, Cheung Annie Nga Yin, Tam Paul Kwong Hang
Department of Surgery, University of Hong Kong Medical Centre, Queen Mary Hospital, Hong Kong SAR, China.
Dev Dyn. 2003 Sep;228(1):1-10. doi: 10.1002/dvdy.10350.
HOX genes from paralogous groups 4 and 5 are particularly relevant to the gut neuromusculature development because these genes are expressed at the splanchnic mesoderm surrounding the gut diverticulum, and at the level of the neural tube from where the vagal neural crest cells (NCCs) originate. In this study, we examined the migration and differentiation of NCCs, and investigated the expression patterns of HOXB5 in human embryonic guts. Human embryos of gestational week-4 to -8.5 were studied. Vagal NCCs enter the esophagus, migrate, and colonize the entire gut in a rostrocaudal manner between week-4 and week-7. The migrating NCCs in gut express HOXB5. Two separate and discontinuous mesenchymal expression domains of HOXB5 were detected in the gut: the distal domain preceding the migratory NCCs; and the proximal domain overlapping with the NCCs. The two expression domains shift caudally in parallel with the rostrocaudal migration of NCCs between week-4 and week-5. Neuron and glia differentiation of NCCs are concomitant with HOXB5 down-regulation in NCCs and the mesenchyme. By week-7, myenteric plexuses have formed; HOXB5 expression is switched on in the plexuses. We found that (1) the migratory route of NCCs in human embryonic gut was similar to that in mice and chicks; and (2) the expression pattern of HOXB5 correlated with the migration and differentiation of NCCs, suggesting a regulatory role of HOXB5 in the development of NCCs.
同源异型基因簇4和5中的HOX基因与肠道神经肌肉组织的发育特别相关,因为这些基因在围绕肠道憩室的脏壁中胚层以及迷走神经嵴细胞(NCCs)起源的神经管水平表达。在本研究中,我们检查了NCCs的迁移和分化,并研究了HOXB5在人类胚胎肠道中的表达模式。研究了妊娠第4至8.5周的人类胚胎。迷走神经嵴细胞在第4周和第7周之间以头尾方向进入食管,迁移并定居于整个肠道。肠道中迁移的NCCs表达HOXB5。在肠道中检测到HOXB5的两个独立且不连续的间充质表达域:在迁移的NCCs之前的远端域;以及与NCCs重叠的近端域。在第4周和第5周之间,这两个表达域随着NCCs的头尾迁移而平行向尾侧移动。NCCs的神经元和神经胶质细胞分化与NCCs和间充质中HOXB5的下调同时发生。到第7周时,肌间神经丛已经形成;HOXB5在神经丛中表达开启。我们发现:(1)人类胚胎肠道中NCCs的迁移途径与小鼠和小鸡中的相似;(2)HOXB5的表达模式与NCCs的迁移和分化相关,表明HOXB5在NCCs的发育中起调节作用。