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非酶 RNA 引物延伸过程中催化金属离子-底物配位。

Catalytic Metal Ion-Substrate Coordination during Nonenzymatic RNA Primer Extension.

机构信息

Department of Chemistry, Howard Hughes Medical Institute, The University of Chicago, Chicago, Illinois 60637, United States.

Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, Massachusetts 02138, United States.

出版信息

J Am Chem Soc. 2024 Apr 17;146(15):10632-10639. doi: 10.1021/jacs.4c00323. Epub 2024 Apr 5.

Abstract

Nonenzymatic template-directed RNA copying requires catalysis by divalent metal ions. The primer extension reaction involves the attack of the primer 3'-hydroxyl on the adjacent phosphate of a 5'-5'-imidazolium-bridged dinucleotide substrate. However, the nature of the interaction of the catalytic metal ion with the reaction center remains unclear. To explore the coordination of the catalytic metal ion with the imidazolium-bridged dinucleotide substrate, we examined catalysis by oxophilic and thiophilic metal ions with both diastereomers of phosphorothioate-modified substrates. We show that Mg and Cd exhibit opposite preferences for the two phosphorothioate substrate diastereomers, indicating a stereospecific interaction of the divalent cation with one of the nonbridging phosphorus substituents. High-resolution X-ray crystal structures of the products of primer extension with phosphorothioate substrates reveal the absolute stereochemistry of this interaction and indicate that catalysis by Mg involves inner-sphere coordination with the nonbridging phosphate oxygen in the pro- position, while thiophilic cadmium ions interact with sulfur in the same position, as in one of the two phosphorothioate substrates. These results collectively suggest that during nonenzymatic RNA primer extension with a 5'-5'-imidazolium-bridged dinucleotide substrate the interaction of the catalytic Mg ion with the pro- oxygen of the reactive phosphate plays a crucial role in the metal-catalyzed S2(P) reaction.

摘要

非酶模板指导的 RNA 复制需要二价金属离子的催化。引物延伸反应涉及引物 3'-羟基对 5'-5'-咪唑桥联二核苷酸底物相邻磷酸的攻击。然而,催化金属离子与反应中心的相互作用的性质仍不清楚。为了探索催化金属离子与咪唑桥联二核苷酸底物的配位,我们研究了亲氧和亲硫金属离子对磷硫代修饰底物的两种非对映异构体的催化作用。我们表明,Mg 和 Cd 对两种磷硫代底物非对映异构体表现出相反的偏好,表明二价阳离子与非桥接磷取代基之一具有立体特异性相互作用。磷硫代底物引物延伸产物的高分辨率 X 射线晶体结构揭示了这种相互作用的绝对立体化学,并表明 Mg 的催化作用涉及内球配位与前位的非桥接磷酸氧,而亲硫镉离子在相同位置与硫相互作用,就像在两种磷硫代底物中的一种一样。这些结果共同表明,在 5'-5'-咪唑桥联二核苷酸底物的非酶 RNA 引物延伸过程中,催化 Mg 离子与反应性磷酸的前氧的相互作用在金属催化的 S2(P)反应中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/093f/11027144/544938df3c86/ja4c00323_0001.jpg

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