Addepalli Balasubrahmanyam, Hunt Arthur G
Department of Plant and Soil Sciences, University of Kentucky, 301A Plant Science Building, 1405 Veterans Drive, Lexington, KY 40546-0312, USA.
Arch Biochem Biophys. 2008 May 1;473(1):88-95. doi: 10.1016/j.abb.2008.02.027. Epub 2008 Mar 4.
The Arabidopsis CPSF30 ortholog (AtCPSF30) is an RNA-binding endonuclease that is part of the plant polyadenylation complex. Previous work (B. Addepalli, A.G. Hunt, Nucleic Acids Res. 35 (2007) 4453-4463) demonstrated that different zinc finger motifs in the protein were responsible for RNA-binding and nuclease activity, respectively. In this study, a more detailed functional map of AtCPSF30 is presented, a map that includes descriptions of novel biochemical activities. Elevated temperatures, the specific zinc chelator 1,10-phenanthroline, and the sulfhydryl reagent dithiothreitol all had differential inhibitory effects on the RNA-binding and nuclease activities. The endonuclease activity of AtCPSF30 was inhibited by relatively high (>100muM) concentrations of zinc, and this inhibition required a plant-specific N-terminal domain apart from the zinc finger core of the protein. ATP stimulated the nuclease activity in the presence of zinc, and this stimulation required a plant-specific C-terminal domain, again apart from the zinc finger core. These studies reveal a subtle and unexpected complexity to AtCPSF30, and raise the possibility that multiple avenues of regulation may impinge on this protein through different functional domains.
拟南芥CPSF30直系同源物(AtCPSF30)是一种RNA结合内切核酸酶,是植物聚腺苷酸化复合体的一部分。先前的研究(B. Addepalli,A.G. Hunt,《核酸研究》35卷(2007年)4453 - 4463页)表明,该蛋白中不同的锌指基序分别负责RNA结合和核酸酶活性。在本研究中,展示了AtCPSF30更详细的功能图谱,该图谱包含了对新生化活性的描述。高温、特定的锌螯合剂1,10 - 菲咯啉以及巯基试剂二硫苏糖醇对RNA结合和核酸酶活性均有不同的抑制作用。相对较高(>100μM)浓度的锌会抑制AtCPSF30 的内切核酸酶活性,且这种抑制作用需要该蛋白锌指核心之外的一个植物特异性N端结构域。在有锌存在的情况下,ATP会刺激核酸酶活性,且这种刺激作用需要同样位于锌指核心之外的一个植物特异性C端结构域。这些研究揭示了AtCPSF30存在微妙且意想不到的复杂性,并增加了多种调控途径可能通过不同功能结构域作用于该蛋白的可能性。