Aida T, Oda S, Awaji T, Yoshida K, Miyazaki S
Department of Physiology, Tokyo Women's Medical University School of Medicine, 8-1 Kawada-cho, Shinjuku-ku, Tokyo 162-8666.
Mol Hum Reprod. 2001 Nov;7(11):1039-46. doi: 10.1093/molehr/7.11.1039.
In oocytes, cytoplasmic 3' polyadenylation regulates translational activation of dormant mRNA during meiotic maturation. Thus exogenous proteins are hardly expressed after injection of conventional RNA. To circumvent this, we synthesized a long polyadenylated (approximately 250 A) tail to encode RNA with an enhanced yellow fluorescent protein targeted to mitochondria (EYFP-mito), and injected it into mouse oocytes at the germinal vesicle (GV) stage. From this transcript, EYFP-mito was clearly expressed in approximately 80% of oocytes, while scarce expression from a transcript with only 30 A was observed. In strongly expressing oocytes, fluorescence was detected within 1-3 h after RNA injection, increased linearly up to 12 h, and reached a maximum at 12-15 h. The distribution of EYFP-mito matched the staining of mitochondria in these oocytes. About 80% of these oocytes underwent GV breakdown and 60% matured in vitro, comparable to non-expressing or non-RNA-injected oocytes. Some of the oocytes which strongly expressed EYFP-mito remained at the GV stage. Thus, the expression was not always accompanied by meiotic maturation, nor did it suppress the maturation process. Mature oocytes expressing EYFP-mito possessed normal fertilizability associated with intracellular Ca(2+) oscillations, and developed into 2-cell embryos. Thus, polyadenylated RNA is a useful tool applicable to the expression of EYFP-fused functional proteins or of indicator protein probes for studies of mammalian fertilization.
在卵母细胞中,细胞质3'多聚腺苷酸化在减数分裂成熟过程中调节休眠mRNA的翻译激活。因此,注射传统RNA后外源蛋白几乎不表达。为了克服这一问题,我们合成了一个长的多聚腺苷酸化(约250个A)尾巴,用于编码带有靶向线粒体的增强型黄色荧光蛋白(EYFP-线粒体)的RNA,并在生发泡(GV)期将其注射到小鼠卵母细胞中。从这个转录本中,EYFP-线粒体在约80%的卵母细胞中清晰表达,而从只有30个A的转录本中观察到的表达则很少。在强表达的卵母细胞中,RNA注射后1-3小时内检测到荧光,直到12小时线性增加,并在12-15小时达到最大值。这些卵母细胞中EYFP-线粒体的分布与线粒体染色相匹配。这些卵母细胞中约80%经历了GV破裂,60%在体外成熟,与未表达或未注射RNA的卵母细胞相当。一些强烈表达EYFP-线粒体的卵母细胞停留在GV期。因此,这种表达并不总是伴随着减数分裂成熟,也没有抑制成熟过程。表达EYFP-线粒体的成熟卵母细胞具有与细胞内Ca(2+)振荡相关的正常受精能力,并发育成2细胞胚胎。因此,多聚腺苷酸化RNA是一种有用的工具,适用于表达EYFP融合的功能蛋白或用于哺乳动物受精研究的指示蛋白探针。