胚胎植入过程中,子宫内肌肉节段同源框(Msx)基因的失活会改变上皮细胞连接蛋白。
Uterine inactivation of muscle segment homeobox (Msx) genes alters epithelial cell junction proteins during embryo implantation.
作者信息
Sun Xiaofei, Park Craig B, Deng Wenbo, Potter S Steven, Dey Sudhansu K
机构信息
*Division of Reproductive Sciences and Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.
*Division of Reproductive Sciences and Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA
出版信息
FASEB J. 2016 Apr;30(4):1425-35. doi: 10.1096/fj.15-282798. Epub 2015 Dec 14.
Embryo implantation requires that the uterus differentiate into the receptive state. Failure to attain uterine receptivity will impede blastocyst attachment and result in a compromised pregnancy. The molecular mechanism by which the uterus transitions from the prereceptive to the receptive stage is complex, involving an intricate interplay of various molecules. We recently found that mice with uterine deletion ofMsxgenes (Msx1(d/d)/Msx2(d/d)) are infertile because of implantation failure associated with heightened apicobasal polarity of luminal epithelial cells during the receptive period. However, information on Msx's roles in regulating epithelial polarity remains limited. To gain further insight, we analyzed cell-type-specific gene expression by RNA sequencing of separated luminal epithelial and stromal cells by laser capture microdissection fromMsx1(d/d)/Msx2(d/d)and floxed mouse uteri on d 4 of pseudopregnancy. We found that claudin-1, a tight junction protein, and small proline-rich (Sprr2) protein, a major component of cornified envelopes in keratinized epidermis, were substantially up-regulated inMsx1(d/d)/Msx2(d/d)uterine epithelia. These factors also exhibited unique epithelial expression patterns at the implantation chamber (crypt) inMsx1(f/f)/Msx2(f/f)females; the patterns were lost inMsx1(d/d)/Msx2(d/d)epithelia on d 5, suggesting important roles during implantation. The results suggest thatMsxgenes play important roles during uterine receptivity including modulation of epithelial junctional activity.-Sun, X., Park, C. B., Deng, W., Potter, S. S., Dey, S. K. Uterine inactivation of muscle segment homeobox (Msx) genes alters epithelial cell junction proteins during embryo implantation.
胚胎着床要求子宫分化为接受态。无法达到子宫接受性会阻碍囊胚附着并导致妊娠受损。子宫从非接受态转变为接受态的分子机制很复杂,涉及多种分子的复杂相互作用。我们最近发现,子宫中Msx基因缺失的小鼠(Msx1(d/d)/Msx2(d/d))不育,原因是在接受期与腔上皮细胞顶基极性增强相关的着床失败。然而,关于Msx在调节上皮极性方面作用的信息仍然有限。为了进一步深入了解,我们通过激光捕获显微切割从假孕第4天的Msx1(d/d)/Msx2(d/d)和floxed小鼠子宫中分离出腔上皮细胞和基质细胞,进行RNA测序,分析细胞类型特异性基因表达。我们发现,紧密连接蛋白claudin-1和角质化表皮中角化包膜的主要成分富含脯氨酸的小分子蛋白(Sprr2)在Msx1(d/d)/Msx2(d/d)子宫上皮中显著上调。这些因子在Msx1(f/f)/Msx2(f/f)雌性小鼠的着床腔(隐窝)处也表现出独特的上皮表达模式;在第5天,这些模式在Msx1(d/d)/Msx2(d/d)上皮中消失,表明在着床过程中起重要作用。结果表明,Msx基因在子宫接受性过程中发挥重要作用,包括调节上皮连接活性。——孙,X.,朴,C.B.,邓,W.,波特,S.S.,戴伊,S.K. 肌肉节段同源框(Msx)基因的子宫失活在胚胎着床期间改变上皮细胞连接蛋白。
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