Bernstein Jade, Patterson Dimeka N, Wilson Gerald M, Toth Eric A
Department of Biochemistry and Molecular Biology, and Marlene and Stewart Greenebaum Cancer Center, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
J Biol Chem. 2008 Feb 22;283(8):4930-42. doi: 10.1074/jbc.M706677200. Epub 2007 Dec 20.
Mtr4p belongs to the Ski2p family of DEVH-box containing proteins and is required for processing and degradation of a variety of RNA substrates in the nucleus. In particular, Mtr4p is required for creating the 5.8 S ribosomal RNA from its 7 S precursor, proper 3'-end processing of the U4 small nuclear RNA and some small nucleolar RNAs, and degradation of aberrant mRNAs and tRNAs. In these studies we have shown that Mtr4p has RNA-dependent ATPase (or dATPase) activity that is stimulated effectively by likely substrates (e.g. tRNA) but surprisingly weakly by poly(A). Using an RNA strand-displacement assay, we have demonstrated that Mtr4p can, in the presence of ATP or dATP, unwind the duplex region of a partial duplex RNA substrate in the 3'-->5' direction. We have examined the ability of Mtr4p to bind model RNA substrates in the presence of nucleotides that mimic the stages (i.e. ATP-bound, ADP-bound, and nucleotide-free) of the unwinding reaction. Our results demonstrate that the presence of a non-hydrolyzable ATP analog allows Mtr4p to discriminate between partial duplex RNA substrates, binding a 3'-tailed substrate with 5-fold higher affinity than a 5'-tailed substrate. In addition, Mtr4p displays a marked preference for binding to poly(A) RNA relative to an oligoribonucleotide of the same length and a random sequence. This binding exhibits apparent cooperativity and different dynamic behavior from binding to the random single-stranded RNA. This unique binding mode might be employed primarily for degradation.
Mtr4p属于含有DEVH盒的Ski2p蛋白家族,是细胞核中多种RNA底物加工和降解所必需的。具体而言,从7S前体生成5.8S核糖体RNA、U4小核RNA和一些小核仁RNA的正确3'末端加工以及异常mRNA和tRNA的降解都需要Mtr4p。在这些研究中,我们已经表明Mtr4p具有RNA依赖性ATP酶(或dATP酶)活性,该活性受到可能的底物(如tRNA)的有效刺激,但令人惊讶的是受到多聚腺苷酸的刺激较弱。使用RNA链置换测定法,我们已经证明,在ATP或dATP存在的情况下,Mtr4p可以在3'→5'方向上解开部分双链RNA底物的双链区域。我们已经研究了Mtr4p在模拟解旋反应阶段(即ATP结合、ADP结合和无核苷酸)的核苷酸存在下结合模型RNA底物的能力。我们的结果表明,不可水解的ATP类似物的存在使Mtr4p能够区分部分双链RNA底物,以比5'末端底物高5倍的亲和力结合3'末端底物。此外,相对于相同长度和随机序列的寡核糖核苷酸,Mtr4p表现出对结合多聚腺苷酸RNA的明显偏好。这种结合表现出明显的协同性,并且与结合随机单链RNA具有不同的动态行为。这种独特的结合模式可能主要用于降解。