Murasawa H, Takashima R, Yamanouchi K, Tojo H, Tachi C
Laboratory of Applied Genetics, Department of Animal Resource Sciences, Graduate School of Agriculture and Life Sciences, The University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.
Anat Rec. 2000 Aug 1;259(4):383-94. doi: 10.1002/1097-0185(20000801)259:4<383::AID-AR20>3.0.CO;2-N.
Mammalian placentae exhibit wide structural diversity among different species and are formed under intricate interplay between the embryonic trophoblast and the maternal endometrial cells. Increasing evidence in the literature indicates a possible role played by homeobox genes in the complex placental organogenesis. Although the expression of all HOX 9 paralogs has been demonstrated both in highly invasive murine hemochorial placentae and in non-invasive caprine synepitheliochorial placentae, no reports so far published in the literature described the patterns of gene expression of Hoxc-9 in the murine nor those of HOXC-9 in the caprine placenta at cellular levels. We carried out comparative analyses of the location and identity of the cells expressing Hoxc-9/HOXC-9 during various stages of placentation in the murine hemochorial and caprine synepitheliochorial placentae by means of in situ hybridization using murine Hoxc-9 or caprine HOXC-9 cRNA probe, respectively. The results demonstrated that Hoxc-9 mRNA was expressed at high levels in giant trophoblast cells of murine placentae on Days 12-19, but not on Day 8. Similar analysis of caprine Day 75 and Day 100 placentae revealed that the binucleate trophoblast cells that penetrate the uterine luminal epithelial cell layer, strongly expressed HOXC-9 mRNA. Although the functional significance of Hoxc-9/HOXC-9 gene expression in trophoblast cells remains to be elucidated, it was suggested that it might play a role in the regulation of invasiveness or endocrine activities in the murine giant trophoblast cells and/or the caprine binucleate trophoblast cells.
哺乳动物的胎盘在不同物种间呈现出广泛的结构多样性,并且是在胚胎滋养层细胞与母体子宫内膜细胞之间复杂的相互作用下形成的。文献中越来越多的证据表明,同源框基因在复杂的胎盘器官发生过程中可能发挥作用。尽管在具有高度侵袭性的小鼠血绒毛膜胎盘以及非侵袭性的山羊上皮绒毛膜胎盘中均已证实所有HOX 9旁系同源基因的表达,但迄今为止,文献中尚未有关于小鼠胎盘Hoxc - 9基因表达模式以及山羊胎盘HOXC - 9基因表达模式在细胞水平上的报道。我们分别使用小鼠Hoxc - 9或山羊HOXC - 9的cRNA探针,通过原位杂交技术,对小鼠血绒毛膜胎盘和山羊上皮绒毛膜胎盘在胎盘形成的各个阶段中表达Hoxc - 9/HOXC - 9的细胞的位置和特征进行了比较分析。结果表明,Hoxc - 9 mRNA在小鼠胎盘第12 - 19天的巨大滋养层细胞中高水平表达,但在第8天不表达。对山羊妊娠第75天和第100天胎盘的类似分析显示,穿透子宫腔上皮细胞层的双核滋养层细胞强烈表达HOXC - 9 mRNA。尽管Hoxc - 9/HOXC - 9基因在滋养层细胞中的功能意义仍有待阐明,但有人认为它可能在调节小鼠巨大滋养层细胞和/或山羊双核滋养层细胞的侵袭性或内分泌活性中发挥作用。