Chaboute M E, Chaubet N, Clement B, Gigot C, Philipps G
Institut de Biologie Moléculaire des Plantes du C.N.R.S., Strasbourg, France.
Gene. 1988 Nov 15;71(1):217-23. doi: 10.1016/0378-1119(88)90095-9.
The histone H3 and H4 genes are shown to be expressed in both Arabidopsis plantlets and transitory multicellular suspension. The 5'- and 3'-ends of the H4 mRNAs have been localized on two H4 genes previously sequenced, H4A748 and H4A777. S1-nuclease mapping and reverse-transcriptase-primer-elongation experiments revealed the existence of two start points for transcription, located 31 and 37 nucleotides downstream from the TATA-box. The 3'-end of the mRNA corresponding to H4A748 was localized at 177 nt after the stop codon. The other gene, H4A777, most probably is not expressed. In addition to a long 3'-untranslated region, the H4 mRNA was shown to be polyadenylated in both plantlets and cell-suspension. This observation was extended to the H3 mRNAs of Arabidopsis and of two other dicots, tobacco and sunflower. Previous results on maize H3 and H4 mRNAs suggest that polyadenylation is a common feature for histone mRNAs in higher plants.
组蛋白H3和H4基因在拟南芥幼苗和瞬时多细胞悬浮液中均有表达。H4 mRNA的5′端和3′端已定位在先前测序的两个H4基因H4A748和H4A777上。S1核酸酶图谱分析和逆转录酶引物延伸实验揭示了两个转录起始点的存在,它们位于TATA框下游31和37个核苷酸处。对应于H4A748的mRNA的3′端定位在终止密码子后177 nt处。另一个基因H4A777很可能不表达。除了长的3′非翻译区外,H4 mRNA在幼苗和细胞悬浮液中均被多聚腺苷酸化。这一观察结果扩展到拟南芥以及另外两种双子叶植物烟草和向日葵的H3 mRNA。先前关于玉米H3和H4 mRNA的研究结果表明,多聚腺苷酸化是高等植物组蛋白mRNA的一个共同特征。