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小鼠和绵羊植入前哺乳动物发育过程中5-甲基胞嘧啶重编程和TET家族表达的比较动力学

Comparative dynamics of 5-methylcytosine reprogramming and TET family expression during preimplantation mammalian development in mouse and sheep.

作者信息

Jafarpour F, Hosseini S M, Ostadhosseini S, Abbasi H, Dalman A, Nasr-Esfahani M H

机构信息

Department of Reproductive Biotechnology, Reproductive Biomedicine Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, Iran.

Department of Reproductive Biotechnology, Reproductive Biomedicine Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, Iran; Department of Biology, Faculty of Science, Nour Danesh Institute of Higher Education, Meymeh, Isfahan, Iran.

出版信息

Theriogenology. 2017 Feb;89:86-96. doi: 10.1016/j.theriogenology.2016.10.010. Epub 2016 Oct 20.

Abstract

Despite previous assumption that paternal active DNA demethylation is an evolutionary conserved phenomenon in mammals, emerging studies in other species, particularly sheep, do not support this issue. Recently, ten eleven translocation (TET) enzymes have been suggested as intermediates in genome-wide DNA demethylation through the iterative conversion of five methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC)/5-formylcytosine/5-carboxylcytosine (5caC) derivatives. This study investigated whether TET enzymes and 5mC derivatives are also involved in dynamic reprogramming of early sheep embryos derived by fertilization. Mouse zygotes and developing embryos were considered as control. Obtained results reported substantial differences in dynamics of parent-of-origin-specific patterns of 5mC reprogramming and generation/dilution of 5mC derivatives (5hmC and 5caC) between mouse and sheep early zygotes. Sheep zygotes reported a gradual and insignificant decrease pattern of parental pronucleus 5mC, which was notably replication independent, coincided with gradual generation of 5hmC and 5caC. Although the expression profiles of TET family of enzymes (Tet1, Tet2, and Tet3), with the main exception being Tet2 at later developmental stages, were similar between mouse and sheep developing embryos. In addition, although the expression level of Tet3 was higher than Tet1 and Tet2 in MII oocytes and zygotes in both mouse and sheep, the expression of Tet3 in mouse was higher than sheep in both MII oocytes and zygotes. The contrasting dynamics of 5mC reprogramming between these two species may be associated with the particular evolutionary differences that exist between developmental program of rodents and ruminants, particularly during peri-implantation stages.

摘要

尽管先前认为父本主动DNA去甲基化是哺乳动物中一种进化保守的现象,但其他物种(尤其是绵羊)的新研究并不支持这一观点。最近,有人提出十 - 十一易位(TET)酶是全基因组DNA去甲基化的中间体,可通过将5 - 甲基胞嘧啶(5mC)反复转化为5 - 羟甲基胞嘧啶(5hmC)/5 - 甲酰基胞嘧啶/5 - 羧基胞嘧啶(5caC)衍生物来实现。本研究调查了TET酶和5mC衍生物是否也参与受精衍生的早期绵羊胚胎的动态重编程。小鼠受精卵和发育中的胚胎被视为对照。获得的结果表明,小鼠和绵羊早期受精卵之间在5mC重编程的亲本来源特异性模式的动态以及5mC衍生物(5hmC和5caC)的产生/稀释方面存在显著差异。绵羊受精卵的亲本原核5mC呈现逐渐且不显著的下降模式,这一模式明显与复制无关,同时伴随着5hmC和5caC的逐渐产生。尽管TET酶家族(Tet1、Tet2和Tet3)的表达谱在小鼠和绵羊发育中的胚胎之间相似,但主要例外是后期发育阶段的Tet2。此外,尽管在小鼠和绵羊的MII期卵母细胞和受精卵中,Tet3的表达水平均高于Tet1和Tet2,但在MII期卵母细胞和受精卵中,小鼠的Tet3表达均高于绵羊。这两个物种之间5mC重编程的对比动态可能与啮齿动物和反刍动物发育程序之间存在的特定进化差异有关,尤其是在植入前期。

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