Hausmann Stéphane, Altura Melissa A, Witmer Matthew, Singer Steven M, Elmendorf Heidi G, Shuman Stewart
Molecular Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.
J Biol Chem. 2005 Apr 1;280(13):12077-86. doi: 10.1074/jbc.M412063200. Epub 2004 Nov 19.
A scheme of eukaryotic phylogeny has been suggested based on the structure and physical linkage of the RNA triphosphatase and RNA guanylyltransferase enzymes that catalyze mRNA cap formation. Here we show that the unicellular pathogen Giardia lamblia encodes an mRNA capping apparatus consisting of separate triphosphatase and guanylyltransferase components, which we characterize biochemically. We also show that native Giardia mRNAs have blocked 5'-ends and that 7-methylguanosine caps promote translation of transfected mRNAs in Giardia in vivo. The Giardia triphosphatase belongs to the tunnel family of metal-dependent phosphohydrolases that includes the RNA triphosphatases of fungi, microsporidia, and protozoa such as Plasmodium and Trypanosoma. The tunnel enzymes adopt a unique active-site fold and are structurally and mechanistically unrelated to the cysteine-phosphatase-type RNA triphosphatases found in metazoans and plants, which comprise part of a bifunctional triphosphataseguanylyltransferase fusion protein. All available evidence now points to the separate tunnel-type triphosphatase and guanylyltransferase as the aboriginal state of the capping apparatus. We identify a putative tunnel-type triphosphatase and a separate guanylyltransferase encoded by the red alga Cyanidioschyzon merolae. These findings place fungi, protozoa, and red algae in a common lineage distinct from that of metazoa and plants.
基于催化mRNA帽形成的RNA三磷酸酶和RNA鸟苷酸转移酶的结构及物理连接,有人提出了一种真核生物系统发育的方案。在此,我们表明单细胞病原体贾第虫编码一种由单独的三磷酸酶和鸟苷酸转移酶成分组成的mRNA加帽装置,我们对其进行了生化特性分析。我们还表明,天然的贾第虫mRNA的5'-末端被封闭,并且7-甲基鸟苷帽在体内促进了转染的mRNA在贾第虫中的翻译。贾第虫三磷酸酶属于金属依赖性磷酸水解酶的通道家族,该家族包括真菌、微孢子虫以及疟原虫和锥虫等原生动物的RNA三磷酸酶。通道酶具有独特的活性位点折叠,在结构和机制上与后生动物和植物中发现的半胱氨酸磷酸酶型RNA三磷酸酶无关,后者是双功能三磷酸酶-鸟苷酸转移酶融合蛋白的一部分。目前所有可得的证据都指向单独的通道型三磷酸酶和鸟苷酸转移酶是加帽装置的原始状态。我们鉴定出一种由红藻嗜盐隐杆藻编码的推定通道型三磷酸酶和一种单独的鸟苷酸转移酶。这些发现将真菌、原生动物和红藻置于一个与后生动物和植物不同的共同谱系中。