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RhoA phosphorylation mediated by Rho/RhoA-associated kinase pathway improves the anti-freezing potentiality of murine hatched and diapaused blastocysts

机译:Rho / RhoA相关激酶途径介导的RhoA磷酸化提高了小鼠孵化和滞育的胚泡的抗冻能力

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摘要

Embryonic cryopreservation has a relatively low survival rate because of cytoskeletal damage. However, molecular anti-freezing mechanisms have been largely unexplored. This study investigated the significance of RhoA, involved in embryonic development, and the Rho/RhoA-associated kinase (ROCK) signalling pathway in cryopreservation. The anti-freezing mechanism in murine dormant embryos, compared with normal blastocysts, was assessed by combining molecular, physiological and pharmacological approaches. Real-time PCR and western blotting experiments showed high RhoA expression in cryo-dormant and dormant embryos. RhoA GTPases were overexpressed on the surface of trophectoderm cells in dormant embryos. Treatment with Y-27632, a ROCK antagonist, decreased survival of both normal and dormant blastocysts, while recombinant RhoA protein remarkably increased survival, after freeze–thawing, of normal hatched blastocysts. Our findings elucidated the molecular mechanism of anti-freezing, involving RhoA phosphorylation, meditated by the Rho/ROCK signalling pathway, in hatched and diapaused murine blastocysts. In addition, evidence for a potentially protective additive suggests a new method for improving the anti-freezing potential of mammalian embryos, without protecting the zona pellucida.
机译:由于细胞骨架损伤,胚胎冷冻保存的存活率相对较低。但是,分子防冻机理尚未得到充分探索。这项研究调查了RhoA参与胚胎发育的重要性,以及Rho / RhoA相关激酶(ROCK)信号通路在冷冻保存中的意义。与正常的胚泡相比,通过结合分子,生理和药理学方法评估了小鼠休眠胚胎中的抗冻机制。实时PCR和蛋白质印迹实验显示,RhoA在低温休眠和休眠胚胎中具有高表达。 RhoA GTPases在休眠胚胎的滋养外胚层细胞表面过表达。 ROCK拮抗剂Y-27632的治疗降低了正常和休眠胚泡的存活率,而重组RhoA蛋白在冻融后显着提高了正常孵化胚泡的存活率。我们的发现阐明了在孵化和滞育的鼠胚泡中抗冷冻的分子机制,涉及RhoA磷酸化,并受Rho / ROCK信号通路的思考。另外,有关潜在保护性添加剂的证据表明,一种新的方法可在不保护透明带的情况下提高哺乳动物胚胎的抗冻能力。

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