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NAD(+)-dependent RNA terminal 2 ' and 3 ' phosphomonoesterase activity of a subset of Tpt1 enzymes

机译:NAD(+) - 依赖性RNA末端2'和3'TPT1酶的子集的磷酸酯酶活性

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The enzyme Tpt1 removes the 2'-PO4 at the splice junction generated by fungal tRNA ligase; it does so via a two-step reaction in which (i) the internal RNA 2'-PO4 attacks NAD(+) to form an RNA-2'-phospho-ADP-ribosyl intermediate; and (ii) transesterification of the ribose O2 '' to the 2'-phosphodiester yields 2'-OH RNA and ADP-ribose-1 '',2 ''-cyclic phosphate products. The role that Tpt1 enzymes play in taxa that have no fungal-type RNA ligase remains obscure. An attractive prospect is that Tpt1 enzymes might catalyze reactions other than internal RNA 2'-PO4 removal, via their unique NAD(+)-dependent transferase mechanism. This study extends the repertoire of the Tpt1 enzyme family to include the NAD(+)-dependent conversion of RNA terminal 2' and 3' monophosphate ends to 2'-OH and 3'-OH ends, respectively. The salient finding is that different Tpt1 enzymes vary in their capacity and positional specificity for terminal phosphate removal. Clostridium thermocellum and Aeropyrum pernix Tpt1 proteins are active on 2'-PO4 and 3'-PO4 ends, with a 2.4- to 2.6-fold kinetic preference for the 2'-PO4. The accumulation of a terminal 3'-phospho-ADP-ribosylated RNA intermediate during the 3'-phosphotransferase reaction suggests that the geometry of the 3'-p-ADPR adduct is not optimal for the ensuing transesterification step. Chaetomium thermophilum Tpt1 acts specifically on a terminal 2'-PO4 end and not with a 3'-PO4. In contrast, Runella slithyformis Tpt1 and human Tpt1 are ineffective in removing either a 2'-PO4 or 3'-PO4 end.
机译:酶TPT1在真菌TRNA连接酶产生的接头结处除去2'-PO4;通过两步反应使其在其中(i)内部RNA 2'-PO4攻击NAD(+)以形成RNA-2'-磷酸-ADP-核糖基中间体; (ii)核糖O2''核糖O2''的酯交换为2'-磷酸二酯,得到2'-OH RNA和ADP-核糖-1'',2'' - 环磷酸盐产物。 TPT1酶在没有真菌型RNA连接酶的分类群中发挥的作用仍然模糊不清。有吸引力的前景是TPT1酶可能通过其独特的NAD(+)依赖性转移酶机制来催化内部RNA 2'-PO4除外的反应。该研究延伸了TPT1酶系列的曲目,将RNA末端2'和3'单磷酸末端的NAD(+) - 依赖性转化物分别分别分别于2'-OH和3'-OH结束。突出的发现是不同的TPT1酶的容量和位置特异性,用于去除末端磷酸末端。 Clostridium Thermocellum和Aernyrum Pernix TPT1蛋白在2'-PO4和3'-PO4上有效,末端为2.4-至2.6倍的动力学偏好于2'-PO4。在3'-磷酸转移酶反应期间末端3'-磷酸-ADP-核糖基化的RNA中间体的积累表明,对于随后的酯交换步骤,3'-P-ADPR加合物的几何形状是不适的。 Chaetomium v​​irtophilum TPT1专门用于端子2'-PO4端,而不是3'-PO4。相比之下,梭子氏滑动性TPT1和人TPT1在除去2'-PO4或3'-PO4端时是无效的。

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