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Localization of DNA methyltransferase-1 during oocyte differentiation in vitro maturation and early embryonic development in cow

机译:牛卵母细胞分化体外成熟和早期胚胎发育过程中DNA甲基转移酶-1的定位

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摘要

DNA methyltransferase-1 (Dnmt1) is involved in the maintenance of DNA methylation patterns and is crucial for normal mammalian development. The aim of the present study was to assess the localization of Dnmt1 in cow, during the latest phases of oocyte differentiation and during the early stages of segmentation. Dnmt1 expression and localization were assessed in oocytes according to the chromatin configuration, which in turn provides an important epigenetic mechanism for the control of global gene expression and represents a morphological marker of oocyte differentiation. We found that the initial chromatin condensation was accompanied by a slight increase in the level of global DNA methylation, as assessed by 5-methyl-cytosine immunostaining followed by laser scanning confocal microscopy analysis (LSCM). RT-PCR confirmed the presence of Dnmt1 transcripts throughout this phase of oocyte differentiation. Analogously, Dnmt1 immunodetection and LSCM indicated that the protein was always present and localized in the cytoplasm, regardless the chromatin configuration and the level of global DNA methylation. Moreover, our data indicate that while Dnmt1 is retained in the cytoplasm in metaphase II stage oocytes and zygotes, it enters the nuclei of 8–16 cell stage embryos. As suggested in mouse, the functional meaning of the presence of Dnmt1 in the bovine embryo nuclei could be the maintainement of the methylation pattern of imprinted genes. In conclusion, the present work provides useful elements for the study of Dnmt1 function during the late stage of oocyte differentiation, maturation and early embryonic development in mammals.
机译:DNA甲基转移酶-1(Dnmt1)参与DNA甲基化模式的维持,对哺乳动物的正常发育至关重要。本研究的目的是评估在卵母细胞分化的最新阶段以及分割的早期阶段,Dnmt1在奶牛中的定位。根据染色质构型评估Dnmt1的表达和定位在卵母细胞中,这反过来又为控制全局基因表达提供了重要的表观遗传机制,并代表了卵母细胞分化的形态学标志。我们发现,最初的染色质凝聚伴随着总体DNA甲基化水平的轻微增加,这是通过5-甲基-胞嘧啶免疫染色,然后进行激光扫描共聚焦显微镜分析(LSCM)进行评估的。 RT-PCR证实了在卵母细胞分化的整个过程中Dnmt1转录本的存在。类似地,Dnmt1免疫检测和LSCM表明,无论染色质构型和整体DNA甲基化水平如何,蛋白质始终存在并定位于细胞质中。此外,我们的数据表明,尽管Dnmt1保留在II期中期卵母细胞和受精卵的细胞质中,但它却进入8-16个细胞期胚胎的核中。如在小鼠中所暗示的,牛胚胎核中Dnmt1的存在的功能意义可能是印迹基因的甲基化模式的维持。总之,本研究为研究哺乳动物卵母细胞分化,成熟和早期胚胎发育后期的Dnmt1功能提供了有用的要素。

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