Hausmann Stéphane, Ramirez Alejandro, Schneider Susanne, Schwer Beate, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.
Nucleic Acids Res. 2007;35(5):1411-20. doi: 10.1093/nar/gkl1150. Epub 2007 Feb 6.
RNA cap guanine-N2 methyltransferases such as Schizosaccharomyces pombe Tgs1 and Giardia lamblia Tgs2 catalyze methylation of the exocyclic N2 amine of 7-methylguanosine. Here we performed a mutational analysis of Giardia Tgs2, entailing an alanine scan of 17 residues within the minimal active domain. Alanine substitutions at Phe18, Thr40, Asp76, Asn103 and Asp140 reduced methyltransferase specific activity to <3% of wild-type Tgs2, thereby defining these residues as essential. Alanines at Pro142, Tyr148 and Pro185 reduced activity to 7-12% of wild-type. Structure-activity relationships at Phe18, Thr40, Asp76, Asn103, Asp140 and Tyr148, and at three other essential residues defined previously (Asp68, Glu91 and Trp143) were gleaned by testing the effects of 18 conservative substitutions. Our results engender a provisional map of the Tgs2 active site, which we discuss in light of crystal structures of related methyltransferases. A genetic analysis of S. pombe Tgs1 showed that it is nonessential. An S. pombe tgs1Delta strain grows normally, notwithstanding the absence of 2,2,7-trimethylguanosine caps on its U1, U2, U4 and U5 snRNAs. However, we find that S. pombe requires cap guanine-N7 methylation catalyzed by the enzyme Pcm1. Deletion of the pcm1(+) gene was lethal, as were missense mutations in the Pcm1 active site. Thus, whereas m(7)G caps are essential in both S. pombe and S. cerevisiae, m(2,2,7)G caps are not.
RNA帽鸟嘌呤-N2甲基转移酶,如粟酒裂殖酵母Tgs1和蓝氏贾第鞭毛虫Tgs2,催化7-甲基鸟苷的环外N2胺甲基化。在此,我们对贾第鞭毛虫Tgs2进行了突变分析,对最小活性结构域内的17个残基进行了丙氨酸扫描。苯丙氨酸18、苏氨酸40、天冬氨酸76、天冬酰胺103和天冬氨酸140处的丙氨酸替代将甲基转移酶的比活性降低至野生型Tgs2的<3%,从而将这些残基定义为必需残基。脯氨酸142、酪氨酸148和脯氨酸185处的丙氨酸将活性降低至野生型的7-12%。通过测试18种保守替代的效果,得出了苯丙氨酸18、苏氨酸40、天冬氨酸76、天冬酰胺103、天冬氨酸140和酪氨酸148以及先前定义的其他三个必需残基(天冬氨酸68、谷氨酸91和色氨酸143)的构效关系。我们的结果产生了Tgs活性位点的临时图谱,我们根据相关甲基转移酶的晶体结构进行了讨论。粟酒裂殖酵母Tgs1的遗传分析表明它不是必需的。粟酒裂殖酵母tgs1Δ菌株正常生长,尽管其U1、U2、U4和U5 snRNA上没有2,2,7-三甲基鸟苷帽。然而,我们发现粟酒裂殖酵母需要由Pcm1酶催化的帽鸟嘌呤-N7甲基化。pcm1(+)基因的缺失是致命的,Pcm1活性位点的错义突变也是致命的。因此,虽然m(7)G帽在粟酒裂殖酵母和酿酒酵母中都是必需的,但m(2,2,7)G帽不是。