Zimmer Sara L, Fei Zhangjun, Stern David B
Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY 14853, USA.
Genetics. 2008 May;179(1):125-36. doi: 10.1534/genetics.107.086223.
Enzymes from several gene families modify RNA molecules at their extremities. These reactions occur in several cellular compartments and affect every class of RNA. To assess the diversity of a subclass of these enzymes, we searched Chlamydomonas for open reading frames (ORFs) potentially encoding exoribonucleases, poly(A) polymerases, and proteins known to associate with and/or regulate them. The ORFs were further analyzed for indications of protein localization to the nucleus, cytosol, mitochondrion, and/or chloroplast. By comparing predicted proteins with homologs in Arabidopsis and yeast, we derived several tentative conclusions regarding RNA 5'- and 3'-end metabolism in Chlamydomonas. First, the alga possesses only one each of the following likely organellar enzymes: polynucleotide phosphorylase, hydrolytic exoribonuclease, poly(A) polymerase, and CCA transferase, a surprisingly small complement. Second, although the core of the nuclear/cytosolic exosome decay complex is well conserved, neither nucleus-specific activators nor the cytosolic exosome activators are present. Finally, our discovery of nine noncanonical poly(A) polymerases, a divergent family retaining the catalytic domains of conventional poly(A) polymerases, leads to the hypothesis that polyadenylation may play an especially important regulatory role throughout the Chlamydomonas cell, stabilizing some transcripts and targeting degradation machinery to others.
来自几个基因家族的酶会修饰RNA分子的末端。这些反应发生在多个细胞区室中,并影响每一类RNA。为了评估这些酶的一个亚类的多样性,我们在衣藻中搜索了可能编码外切核糖核酸酶、聚腺苷酸聚合酶以及已知与它们相关联和/或调节它们的蛋白质的开放阅读框(ORF)。对这些ORF进一步分析,以寻找蛋白质定位于细胞核、细胞质、线粒体和/或叶绿体的迹象。通过将预测的蛋白质与拟南芥和酵母中的同源物进行比较,我们得出了关于衣藻中RNA 5'端和3'端代谢的几个初步结论。第一,这种藻类分别仅拥有以下可能的细胞器酶各一种:多核苷酸磷酸化酶、水解性外切核糖核酸酶、聚腺苷酸聚合酶和CCA转移酶,其数量惊人地少。第二,尽管核/细胞质外切体衰变复合体的核心高度保守,但既不存在细胞核特异性激活剂,也不存在细胞质外切体激活剂。最后,我们发现了九种非典型聚腺苷酸聚合酶,这是一个保留了传统聚腺苷酸聚合酶催化结构域的不同家族,这导致了一个假说,即聚腺苷酸化可能在整个衣藻细胞中发挥特别重要的调节作用,使一些转录本稳定,并将降解机制靶向其他转录本。