Cui Xiang-Shun, Li Xing-Yu, Yin Xi-Jun, Kong Il Keun, Kang Jason-Jongho, Kim Nam-Hyung
National Research Laboratory of Molecular Embryology, Department of Animal Science, Chungbuk National University, Cheongju, Korea.
J Reprod Dev. 2007 Apr;53(2):405-18. doi: 10.1262/jrd.18113. Epub 2006 Dec 20.
Maternal gene expression is an important biological process in oocyte maturation and early cleavage. To gain insights into oocyte maturation and early embryo development, we used microarray analysis to compare the gene expression profiles of germinal vesicle (GV)- and metaphase II (MII)-stage oocytes. The differences in spot intensities were normalized and grouped using the Avadis Prophetic software platform. Of the 12164 genes examined, we found 1682 genes with more highly expression in GV-stage oocytes than in MII-stage oocytes, while 1936 genes were more highly expressed in MII-stage oocytes (P<0.05). The genes were grouped on the basis of the Panther classification system according to their involvement in particular biological processes. The genes that were up-regulated in GV oocytes were more likely to be involved in protein metabolism and modification, the mitotic cell cycle, electron transport, or fertilization or belong to the microtubule/cytoskeletal protein family. The genes specifically upregulated in the MII oocytes were more likely to be involved in DNA replication, amino acid metabolism, or expression of G protein-coupled receptors and signaling molecules. Identification of genes that are preferentially expressed at particular oocyte maturation stages provides insights into the complex gene regulatory networks that drive oocyte maturation and fertilization.
母体基因表达是卵母细胞成熟和早期卵裂过程中的一个重要生物学过程。为了深入了解卵母细胞成熟和早期胚胎发育,我们使用微阵列分析来比较生发泡(GV)期和中期II(MII)期卵母细胞的基因表达谱。使用Avadis Prophetic软件平台对斑点强度的差异进行归一化和分组。在检测的12164个基因中,我们发现1682个基因在GV期卵母细胞中的表达高于MII期卵母细胞,而1936个基因在MII期卵母细胞中表达更高(P<0.05)。根据基因参与的特定生物学过程,依据Panther分类系统对这些基因进行分组。在GV期卵母细胞中上调的基因更有可能参与蛋白质代谢和修饰、有丝分裂细胞周期、电子传递或受精过程,或者属于微管/细胞骨架蛋白家族。在MII期卵母细胞中特异性上调的基因更有可能参与DNA复制、氨基酸代谢,或G蛋白偶联受体和信号分子的表达。鉴定在特定卵母细胞成熟阶段优先表达的基因,有助于深入了解驱动卵母细胞成熟和受精的复杂基因调控网络。