首页> 外文期刊>Cellular reprogramming >Epigenetic Alteration of Donor Cells with Histone Deacetylase Inhibitor m-Carboxycinnamic Acid Bishydroxymide Improves the i>In Vitro/i> Developmental Competence of Buffalo (i>Bubalus bubalis/i>) Cloned Embryos
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Epigenetic Alteration of Donor Cells with Histone Deacetylase Inhibitor m-Carboxycinnamic Acid Bishydroxymide Improves the i>In Vitro/i> Developmental Competence of Buffalo (i>Bubalus bubalis/i>) Cloned Embryos

机译:具有组蛋白脱乙酰酶抑制剂M-羧基氨基酸脱脱石的供体细胞的表观遗传学改变改善了水牛(& i> Bubalus bubalis)的胚胎胚胎的培养能力

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摘要

Epigenetic reprogramming is an indispensable process during the course of mammalian development, but aberrant in cloned embryos. The aim of this study was to examine the effect of donor cell treatment with histone deacetylase (HDAC) inhibitor m-carboxycinnamic acid bishydroxymide (CBHA) on cloned embryo development and establish its optimal concentration. Different concentrations of CBHA (2.5, 5.0, 10.0, and 20.0?μM) were used to treat buffalo adult fibroblast cells for 24 hours and effect on cell proliferation, gene expression, and histone modifications was analyzed. Based on these experiments, the best concentration was chosen to determine the effect of enhanced gene activation mark on developmental rates. Among the different concentrations, CBHA at higher concentration (20?μM) shows the sign of apoptosis and stress as indicated by proliferation rate and gene expression data. CBHA treatment significantly decreased the activity of HDACs and increased the level of gene activation mark H3K9ac and H3K4me3, but could not alter the level of H3K27ac. Based on these experiments, 5?μM CBHA was chosen for treatment of donor cells used for the production of cloned embryos. There was no significant difference in cleavage rate between the control and CBHA treatment group (98.5%?±?1.5% vs. 99.0%?±?1.0%), whereas, blastocyst rate markedly improved (46.65%?±?1.94% vs. 57.18%?±?2.68%). The level of H3K9ac and H3K27me3 did not differ significantly in cloned blastocyst produced from either control or CBHA-treated cells. Altogether, these results suggested that donor cell treatment with CBHA supports the reprogramming process and improves the cloned preimplantation development.
机译:表观遗传重编程是哺乳动物发展过程中不可或缺的过程,但在克隆胚胎中异常。本研究的目的是研究供体细胞治疗与组蛋白脱乙酰酶(HDAC)抑制剂M-羧基氨基氨基酸Bishydroxymide(CBHA)的影响,并建立其最佳浓度。不同浓度的CBHA(2.5,5.0,10.0和20.0μm)用于治疗水牛成年成纤维细胞24小时,分析细胞增殖,基因表达和组蛋白修饰。基于这些实验,选择最佳浓度以确定增强基因活化标志对发育率的影响。在不同的浓度中,高浓度(20μm)的CBHA显示了凋亡和应力的迹象,如增殖率和基因表达数据所示。 CBHA治疗显着降低了HDAC的活性,并增加了基因活化标志H3K9AC和H3K4ME3的水平,但不能改变H3K27AC的水平。基于这些实验,选择5βμmCBHA用于治疗用于生产克隆胚胎的供体细胞。对照和CBHA治疗组之间的切割率没有显着差异(98.5%?±1.5%vs.1.5%Δ±1.0%),而胚泡率明显改善(46.65%?±1.94%与57.18%?±2.68%)。 H3K9Ac和H3K27ME3的水平在由对照或CBHA处理的细胞产生的克隆胚泡中没有显着差异。总共,这些结果表明,随着CBHA的供体细胞治疗支持重编程过程并改善克隆的预溶解发育。

著录项

  • 来源
    《Cellular reprogramming》 |2018年第1期|共13页
  • 作者单位

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

    Embryo Biotechnology Laboratory Animal Biotechnology Centre ICAR-National Dairy Research Institute Karnal Haryana India.;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 分子生物学;
  • 关键词

    CBHA; reprogramming; epigenetic; buffalo;

    机译:CBHA;重编程;表观遗传;水牛;

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