Yin Shenmin, Kiong Ho C, Miller Eric S, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.
Virology. 2004 Feb 5;319(1):141-51. doi: 10.1016/j.virol.2003.10.037.
Bacteriophage T4 RNA ligase 2 (Rnl2) exemplifies a subfamily of RNA strand-joining enzymes that includes the trypanosome RNA editing ligases. A homolog of T4 Rnl2 is encoded in the 244-kbp DNA genome of vibriophage KVP40. We show that the 335-amino acid KVP40 Rnl2 is a monomeric protein that catalyzes RNA end-joining through ligase-adenylate and RNA-adenylate (AppRNA) intermediates. In the absence of ATP, pre-adenylated KVP40 Rnl2 reacts with an 18-mer 5'-PO(4) single-strand RNA (pRNA) to form an 18-mer RNA circle. In the presence of ATP, Rnl2 generates predominantly AppRNA. Isolated AppRNA can be circularized by KVP40 Rnl2 in the absence of ATP. The reactivity of phage Rnl2 and the distribution of the products are affected by the length of the pRNA substrate. Whereas 18-mer and 15-mer pRNAs undergo intramolecular sealing by T4 Rnl2 to form monomer circles, a 12-mer pRNA is ligated intermolecularly to form dimers, and a 9-mer pRNA is unreactive. In the presence of ATP, the 15-mer and 12-mer pRNAs are converted to AppRNAs, but the 9-mer pRNA is not. A single 5' deoxynucleotide substitution of an 18-mer pRNA substrate has no apparent effect on the 5' adenylation or circularization reactions of T4 Rnl2. In contrast, a single deoxyribonucleoside at the 3' terminus strongly and selectively suppresses the sealing step, thereby resulting in accumulation of high levels of AppRNA in the absence of ATP. The ATP-dependent "capping" of RNA with AMP by Rnl2 is reminiscent of the capping of eukaryotic mRNA with GMP by GTP:RNA guanylyltransferase and suggests an evolutionary connection between bacteriophage Rnl2 and eukaryotic RNA capping enzymes.
噬菌体T4 RNA连接酶2(Rnl2)是RNA链连接酶亚家族的一个例证,该亚家族包括锥虫RNA编辑连接酶。噬菌体KVP40的244千碱基DNA基因组中编码了T4 Rnl2的一个同源物。我们发现,335个氨基酸的KVP40 Rnl2是一种单体蛋白,它通过连接酶-腺苷酸和RNA-腺苷酸(AppRNA)中间体催化RNA末端连接。在没有ATP的情况下,预腺苷酸化的KVP40 Rnl2与一个18聚体5'-PO(4)单链RNA(pRNA)反应形成一个18聚体RNA环。在有ATP的情况下,Rnl2主要生成AppRNA。分离出的AppRNA可以在没有ATP的情况下被KVP40 Rnl2环化。噬菌体Rnl2的反应性和产物分布受pRNA底物长度的影响。18聚体和15聚体pRNAs通过T4 Rnl2进行分子内封闭形成单体环,而12聚体pRNA则进行分子间连接形成二聚体,9聚体pRNA无反应性。在有ATP的情况下,15聚体和12聚体pRNAs会转化为AppRNAs,但9聚体pRNA不会。18聚体pRNA底物的单个5'脱氧核苷酸取代对T4 Rnl2的5'腺苷酸化或环化反应没有明显影响。相比之下,3'末端的单个脱氧核糖核苷强烈且选择性地抑制封闭步骤,从而在没有ATP的情况下导致高水平AppRNA的积累。Rnl2对RNA进行的ATP依赖性AMP“加帽”让人联想到真核mRNA由GTP:RNA鸟苷酸转移酶进行的GMP加帽,并暗示了噬菌体Rnl2与真核RNA加帽酶之间的进化联系。