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Role of yes-associated protein 1 angiomotin and mitogen-activated kinase kinase 1/2 in development of the bovine blastocyst

机译:Yes相关蛋白1血管动蛋白和丝裂原激活的激酶激酶1/2在牛胚泡发育中的作用

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摘要

The morula-stage embryo is transformed into a blastocyst composed of epiblast, hypoblast, and trophectoderm (TE) through mechanisms that, in the mouse, involve the Hippo signaling and mitogen-activated kinase (MAPK) pathways. Using the cow as an additional model, we tested the hypotheses that TE and hypoblast differentiation were regulated by the Hippo pathway regulators, yes-associated protein 1 (YAP1) and angiomotin (AMOT), and MAPK kinase 1/2 (MAPK1/2). The presence of YAP1 and CDX2 in the nucleus and cytoplasm of MII oocytes and embryos was evaluated by immunofluorescence labeling. For both molecules, localization changed from cytoplasmic to nuclear as development advanced. Inhibition of YAP1 activity, either by verteporfin or a YAP1 targeting GapmeR, reduced the percent of zygotes that became blastocysts, the proportion of blastocysts that hatched and numbers of CDX2+ cells in blastocysts. Moreover, the YAP1-targeting GapmeR altered expression of 15 of 91 genes examined in the day 7.5 blastocyst. Treatment of embryos with an AMOT targeting GapmeR did not affect blastocyst development or hatching but altered expression of 16 of 91 genes examined at day 7.5 and reduced the number of CDX2+ nuclei and YAP1+ nuclei in blastocysts at day 8.5 of development. Inhibition of MAPK1/2 with PD0325901 did not affect blastocyst development but increased the number of epiblast cells. Results indicate a role for YAP1 and AMOT in function of TE in the bovine blastocyst. YAP1 can also affect function of the epiblast and hypoblast, and MAPK signaling is important for inner cell mass differentiation by reducing epiblast numbers.
机译:通过在小鼠中涉及Hippo信号传导和有丝分裂原激活的激酶(MAPK)途径的机制,桑ula子阶段的胚胎被转化为由上皮细胞,次胚细胞和滋养外胚层(TE)组成的胚泡。使用牛作为附加模型,我们测试了以下假设:河马途径调节剂,yes相关蛋白1(YAP1)和血管动蛋白(AMOT)以及MAPK激酶1/2(MAPK1 / 2)调节TE和次胚分化。 。通过免疫荧光标记评估了MII卵母细胞和胚胎的核和细胞质中YAP1和CDX2的存在。对于两个分子,随着开发的进展,定位从胞质变为核。 Verteporfin或靶向GapmeR的YAP1抑制YAP1活性,降低了变成胚泡的受精卵的百分比,孵化的胚泡的比例以及胚泡中CDX2 + 细胞的数量。此外,靶向YAP1的GapmeR改变了在7.5天的胚泡中检查的91个基因中的15个的表达。用针对GapmeR的AMOT靶向处理胚胎不会影响胚泡的发育或孵化,但在7.5天时检查的91个基因中的16个基因的表达发生了改变,并减少了CDX2 + 核和YAP1 +

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