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2′OMeNAD+的化学合成及其作为 RNA 2′-磷酸转移酶(Tpt1)“毒物”的应用,该毒物可捕获酶在其无活性的 RNA-2′-PO4-(ADP-2′OMe-核糖)反应中间体上。

Chemical synthesis of 2″OMeNAD+ and its deployment as an RNA 2'-phosphotransferase (Tpt1) 'poison' that traps the enzyme on its abortive RNA-2'-PO4-(ADP-2″OMe-ribose) reaction intermediate.

机构信息

Department of Chemistry, University of Konstanz, 78457 Konstanz, Germany.

Molecular Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

出版信息

Nucleic Acids Res. 2024 Sep 23;52(17):10533-10542. doi: 10.1093/nar/gkae695.

Abstract

RNA 2'-phosphotransferase Tpt1 catalyzes the removal of an internal RNA 2'-PO4 via a two-step mechanism in which: (i) the 2'-PO4 attacks NAD+ C1″ to form an RNA-2'-phospho-(ADP-ribose) intermediate and nicotinamide; and (ii) transesterification of the ADP-ribose O2″ to the RNA 2'-phosphodiester yields 2'-OH RNA and ADP-ribose-1″,2″-cyclic phosphate. Although Tpt1 enzymes are prevalent in bacteria, archaea, and eukarya, Tpt1 is uniquely essential in fungi and plants, where it erases the 2'-PO4 mark installed by tRNA ligases during tRNA splicing. To identify a Tpt1 'poison' that arrests the reaction after step 1, we developed a chemical synthesis of 2″OMeNAD+, an analog that cannot, in principle, support step 2 transesterification. We report that 2″OMeNAD+ is an effective step 1 substrate for Runella slithyformis Tpt1 (RslTpt1) in a reaction that generates the normally undetectable RNA-2'-phospho-(ADP-ribose) intermediate in amounts stoichiometric to Tpt1. EMSA assays demonstrate that RslTpt1 remains trapped in a stable complex with the abortive RNA-2'-phospho-(ADP-2″OMe-ribose) intermediate. Although 2″OMeNAD+ establishes the feasibility of poisoning and trapping a Tpt1 enzyme, its application is limited insofar as Tpt1 enzymes from fungal pathogens are unable to utilize this analog for step 1 catalysis. Analogs with smaller 2″-substitutions may prove advantageous in targeting the fungal enzymes.

摘要

RNA 2'-磷酸转移酶 Tpt1 通过两步机制催化内部 RNA 2'-PO4 的去除:(i)2'-PO4 攻击 NAD+C1″以形成 RNA-2'-磷酸-(ADP-核糖)中间体和烟酰胺;(ii)ADP-核糖 O2″的酯交换到 RNA 2'-磷酸二酯上,生成 2'-OH RNA 和 ADP-核糖-1″,2″-环磷酸。尽管 Tpt1 酶在细菌、古菌和真核生物中普遍存在,但 Tpt1 在真菌和植物中是独特的必需酶,在这些生物中,它消除了 tRNA 连接酶在 tRNA 剪接过程中安装的 2'-PO4 标记。为了鉴定一种在第一步反应后阻止反应的 Tpt1“毒药”,我们开发了 2″OMeNAD+的化学合成方法,这种类似物原则上不能支持第二步的酯交换。我们报告说,2″OMeNAD+是 Runella slithyformis Tpt1(RslTpt1)的有效第一步底物,该反应以与 Tpt1 化学计量的量生成通常无法检测到的 RNA-2'-磷酸-(ADP-核糖)中间体。EMSA 测定表明,RslTpt1 仍然与失活的 RNA-2'-磷酸-(ADP-2″OMe-核糖)中间体稳定复合物结合。尽管 2″OMeNAD+确立了毒害和捕获 Tpt1 酶的可行性,但由于真菌病原体的 Tpt1 酶无法利用该类似物进行第一步催化,因此其应用受到限制。具有较小 2″-取代的类似物可能在靶向真菌酶方面具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f17/11417386/9ec57c5e28ab/gkae695figgra1.jpg

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