Sadeesh E M, Fozia Shah, Meena Kataria
Division of Animal Physiology and Reproduction, ICAR-Central Institute for Research on Buffaloes, Hisar, 125001, India.
Department of Veterinary Physiology and Biochemistry, Lala Lajpat Rai University of Veterinary and Animal Sciences, Hisar, 125004, India.
Cytotechnology. 2017 Apr;69(2):289-305. doi: 10.1007/s10616-016-0057-0. Epub 2017 Jan 9.
This study examined the effects of buffalo oocyte extracts (BOE) on donor cells reprogramming and molecular characterisation of oocytes screened via brilliant cresyl blue (BCB) staining and comparison of gene expression profiles of developmentally important genes in blastocysts from IVF and cloned derived from BOE treated donor cells with BCB selected recipient cytoplasts. Relative abundance (RA) of OCT4 and NANOG was increased (P < 0.05) and HDAC-1, DNMT-1, and DNMT-3A decreased (P < 0.05) in extract treated cells (ETCs). This ETCs dedifferentiated into neuron-like lineage under appropriate induction condition. The RA of NASP, EEF1A1, DNMT1, ODC1 and RPS27A was increased (P < 0.05) in BCB+ oocytes, whereas ATP5A1 and S100A10 increased (P < 0.05) in BCB- oocytes. Total cell number and RA of OCT4, NANOG, SOX2, DNMT1, IGF2, IGF2R, MNSOD, GLUT1, BAX and BCL2 in cloned blastocysts derived from BCB+ oocytes with ETC more closely followed that of IVF counterparts compared to BCB+ oocytes with extract untreated cell and BCB- oocytes with ETC derived blastocysts. In conclusion, BOE influenced epigenetic reprogramming of buffalo fibroblasts making them suitable donors for nuclear transfer (NT). BCB staining can be effectively used for selection of developmentally competent oocytes for NT. The combined effects of epigenetic reprogramming of donor nuclei by BOE and higher nuclear reprogramming capacity of BCB+ oocytes improve developmentally important gene expression in cloned blastocysts. Whether these improvements have long-term effects on buffalo calves born following embryo transfer remains unknown.
本研究检测了水牛卵母细胞提取物(BOE)对供体细胞重编程的影响,以及通过灿烂甲酚蓝(BCB)染色筛选的卵母细胞的分子特征,并比较了体外受精(IVF)囊胚和由BOE处理的供体细胞与BCB选择的受体细胞质体克隆得到的囊胚中发育重要基因的基因表达谱。提取物处理细胞(ETCs)中OCT4和NANOG的相对丰度(RA)增加(P<0.05),而HDAC-1、DNMT-1和DNMT-3A减少(P<0.05)。在适当的诱导条件下,这些ETCs去分化为神经元样谱系。BCB+卵母细胞中NASP、EEF1A1、DNMT1、ODC1和RPS27A的RA增加(P<0.05),而BCB-卵母细胞中ATP5A1和S100A10增加(P<0.05)。与用未处理提取物细胞的BCB+卵母细胞和由ETCs得到的BCB-卵母细胞囊胚相比,来自带有ETCs的BCB+卵母细胞的克隆囊胚中的总细胞数以及OCT4、NANOG、SOX2、DNMT1、IGF2、IGF2R、MNSOD、GLUT1、BAX和BCL2的RA更接近IVF囊胚。总之,BOE影响水牛成纤维细胞的表观遗传重编程,使其成为适合核移植(NT)的供体。BCB染色可有效用于选择发育能力良好的卵母细胞用于NT。BOE对供体细胞核的表观遗传重编程与BCB+卵母细胞更高的核重编程能力的联合作用改善了克隆囊胚中发育重要基因的表达。这些改善对胚胎移植后出生的水牛犊牛是否有长期影响仍不清楚。