Yokoska J, Tsukamoto T, Miura K i, Shiokawa K, Mizumoto K
Laboratory of Molecular Embryology, Department of Biological Science, Graduate School of Science, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Biochem Biophys Res Commun. 2000 Feb 16;268(2):617-24. doi: 10.1006/bbrc.2000.2188.
The mRNA cap structure, which is synthesized by a series of reactions catalyzed by capping enzyme, mRNA (guanine-7-)-methyltransferase, and mRNA (ribose-2'-O-)-methyltransferase, has crucial roles for RNA processing and translation. Methylation of the cap structure is also implicated in polyadenylation-mediated translational activation during Xenopus oocyte maturation. Here we isolated two Xenopus laevis cDNAs, xCAP1a and xCAP1b, for mRNA capping enzyme and one cDNA for mRNA (guanine-7-)-methyltransferase, xCMT1, which encode 598, 511, and 402 amino acids, respectively. The deduced amino acid sequence of xCAP1a was highly homologous to that of human capping enzyme hCAP1a, having all the characteristic regions including N-terminal RNA 5'-triphosphatase as well as C-terminal mRNA guanylyltransferase domains which are conserved among animal mRNA guanylyltransferases, whereas in xCAP1b the most C-terminal motif was missing. The amino acid sequence of xCMT1 was also similar to human (guanine-7-)-methyltransferase, hCMT1a, with all the conserved motifs among cellular (guanine-7-)-methyltransferases, except for its N-terminal portion. The recombinant xCAP1a and xCMT1 exhibited cap formation and mRNA (guanine-7-)-methyltransferase activities, respectively. RT-PCR analysis showed that mRNA for xCAP1a and xCMT1 exist abundantly in fertilized eggs as maternal mRNAs, but xCMT1 mRNA gradually decreased in its amount in later stages of early development.
mRNA帽结构由加帽酶、mRNA(鸟嘌呤-7-)-甲基转移酶和mRNA(核糖-2'-O-)-甲基转移酶催化的一系列反应合成,对RNA加工和翻译起着关键作用。帽结构的甲基化也与非洲爪蟾卵母细胞成熟过程中多聚腺苷酸化介导的翻译激活有关。在这里,我们分离出了非洲爪蟾的两个mRNA加帽酶cDNA,即xCAP1a和xCAP1b,以及一个mRNA(鸟嘌呤-7-)-甲基转移酶cDNA,即xCMT1,它们分别编码598、511和402个氨基酸。xCAP1a推导的氨基酸序列与人加帽酶hCAP1a的序列高度同源,具有所有特征区域,包括N端RNA 5'-三磷酸酶以及动物mRNA鸟苷酸转移酶中保守的C端mRNA鸟苷酰转移酶结构域,而xCAP1b中缺少最C端的基序。xCMT1的氨基酸序列也与人类(鸟嘌呤-7-)-甲基转移酶hCMT1a相似,具有细胞(鸟嘌呤-7-)-甲基转移酶中所有保守基序,但其N端部分除外。重组的xCAP1a和xCMT1分别表现出帽形成活性和mRNA(鸟嘌呤-7-)-甲基转移酶活性。RT-PCR分析表明,xCAP1a和xCMT1的mRNA作为母源mRNA在受精卵中大量存在,但xCMT1 mRNA在早期发育后期的量逐渐减少。