Rao Suryadevara, Dinkins Randy D, Hunt Arthur G
Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40546-0312, USA.
BMC Cell Biol. 2009 Jul 2;10:51. doi: 10.1186/1471-2121-10-51.
The Arabidopsis ortholog of the 30 kD subunit of the mammalian Cleavage and Polyadenylation Specificity Factor (AtCPSF30) is an RNA-binding endonuclease that is associated with other Arabidopsis CPSF subunits (orthologs of the 160, 100, and 73 kD subunits of CPSF). In order to further explore the functions of AtCPSF30, the subcellular distribution of the protein was examined by over-expressing fusion proteins containing fluorescent reporters linked to different CPSF subunits.
It was found that AtCPSF30 by itself localizes, not to the nucleus, but to the cytoplasm. AtCPSF30 could be found in the nucleus when co-expressed with AtCPSF160 or AtCPSF73(I), one of the two Arabidopsis orthologs of CPSF73. This re-directing of AtCPSF30 indicates that AtCPSF30 is retained in the nucleus via interactions with either or both of these other CPSF subunits. Co-expression of AtCSPF30 with AtCPSF100 altered the location, not of AtCPSF30, but rather of AtCPSF100, with these proteins residing in the cytoplasm. Deletion of plant-specific N- or C-terminal domains of AtCPSF30 abolished various of the interactions between AtCPSF30 and other CPSF subunits, suggesting that the plant CPSF complex assembles via novel protein-protein interactions.
These results suggest that the nuclear CPSF complex in plants is a dynamic one, and that the interactions between AtCPSF30 and other CPSF subunits are different from those existing in other eukaryotes.
哺乳动物切割与聚腺苷酸化特异性因子(CPSF)30 kD亚基的拟南芥直系同源物AtCPSF30是一种RNA结合内切核酸酶,它与其他拟南芥CPSF亚基(CPSF 160、100和73 kD亚基的直系同源物)相关。为了进一步探究AtCPSF30的功能,通过过表达包含与不同CPSF亚基相连的荧光报告基因的融合蛋白,检测了该蛋白的亚细胞分布。
发现AtCPSF30自身定位于细胞质而非细胞核。当与AtCPSF160或AtCPSF73(I)(CPSF73的两个拟南芥直系同源物之一)共表达时,AtCPSF30可在细胞核中被发现。AtCPSF30的这种重新定位表明,AtCPSF30通过与这些其他CPSF亚基中的一个或两个相互作用而保留在细胞核中。AtCSPF30与AtCPSF100共表达改变的不是AtCPSF30的位置,而是AtCPSF100的位置,这些蛋白存在于细胞质中。缺失AtCPSF30的植物特异性N端或C端结构域消除了AtCPSF30与其他CPSF亚基之间的各种相互作用,这表明植物CPSF复合物是通过新型蛋白质-蛋白质相互作用组装而成的。
这些结果表明,植物中的细胞核CPSF复合物是动态的,并且AtCPSF30与其他CPSF亚基之间的相互作用不同于其他真核生物中的相互作用。