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蛋氨酸代谢在牛植入前胚胎桑椹胚向囊胚转变中的重要性。

Importance of methionine metabolism in morula-to-blastocyst transition in bovine preimplantation embryos.

作者信息

Ikeda Shuntaro, Sugimoto Miki, Kume Shinichi

机构信息

Laboratory of Animal Physiology and Functional Anatomy, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.

出版信息

J Reprod Dev. 2012;58(1):91-7. doi: 10.1262/jrd.11-096h. Epub 2011 Nov 4.

Abstract

The roles of methionine metabolism in bovine preimplantation embryo development were investigated by using ethionine, an antimetabolite of methionine. In vitro produced bovine embryos that had developed to the 5-cell stage or more at 72 h after the commencement of in vitro fertilization (IVF) were then cultured until day 8 (IVF = day 0) in medium supplemented with 0 (control), 1, 5 and 10 mM ethionine. Compared with the blastocyst development in the control (40.0%), ethionine at 10 mM almost completely blocked blastocyst development (1.1%, P<0.001), and this concentration was used in the following experiments. Methionine added at the same concentration (10 mM, a concentration control of ethionine) did not cause such an intense developmental inhibition. Development to the compacted morula stage on day 6 was not affected by 10 mM ethionine treatment. S-adenosylmethionine (SAM) added to the ethionine treatment partly restored the blastocyst development. Semiquantitative reverse transcription-polymerase chain reaction analysis of cell lineage-related transcription factors in day 6 compacted morulae showed that the expressions of NANOG and TEAD4 were increased by ethionine treatment relative to the control (P<0.01). Furthermore, immunofluorescence analysis of 5-methylcytosine revealed that DNA was hypomethylated in the ethionine-treated day 6 morulae compared with the control (P<0.001). These results demonstrate that the disruption of methionine metabolism causes impairment of the morula-to-blastocyst transition during bovine preimplantation development in part via SAM deficiency, indicating the indispensable roles of methionine during this period. The disruption of methionine metabolism may cause hypomethylation of DNA and consequently lead to the altered expression of developmentally important genes, which then results in the impairment of blastocyst development.

摘要

通过使用蛋氨酸的抗代谢物乙硫氨酸,研究了蛋氨酸代谢在牛植入前胚胎发育中的作用。在体外受精(IVF)开始72小时后发育到5细胞阶段或更高级别的体外生产牛胚胎,然后在补充有0(对照)、1、5和10 mM乙硫氨酸的培养基中培养至第8天(IVF = 第0天)。与对照中的囊胚发育(40.0%)相比,10 mM乙硫氨酸几乎完全阻断了囊胚发育(1.1%,P<0.001),该浓度用于以下实验。添加相同浓度(10 mM,乙硫氨酸的浓度对照)的蛋氨酸不会引起如此强烈的发育抑制。10 mM乙硫氨酸处理对第6天致密桑椹胚阶段的发育没有影响。添加到乙硫氨酸处理中的S-腺苷甲硫氨酸(SAM)部分恢复了囊胚发育。对第6天致密桑椹胚中细胞谱系相关转录因子的半定量逆转录-聚合酶链反应分析表明,与对照相比,乙硫氨酸处理使NANOG和TEAD4的表达增加(P<0.01)。此外,5-甲基胞嘧啶的免疫荧光分析显示,与对照相比,乙硫氨酸处理的第6天桑椹胚中的DNA发生了低甲基化(P<0.001)。这些结果表明,蛋氨酸代谢的破坏部分通过SAM缺乏导致牛植入前发育过程中桑椹胚向囊胚转变的损伤,表明蛋氨酸在此期间的不可或缺的作用。蛋氨酸代谢的破坏可能导致DNA低甲基化,从而导致发育重要基因的表达改变,进而导致囊胚发育受损。

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