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Synthesis and characterization of mRNA cap analogs containing phosphorothioate substitutions that bind tightly to eIF4E and are resistant to the decapping pyrophosphatase DcpS

机译:包含硫代磷酸酯取代的mRNA帽类似物的合成和表征该取代基与eIF4E紧密结合并且对去壳焦磷酸酶DcpS具有抗性

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摘要

Analogs of the mRNA cap are widely employed to study processes involved in mRNA metabolism as well as being useful in biotechnology and medicinal applications. Here we describe synthesis of six dinucleotide cap analogs bearing a single phosphorothioate modification at either the α, β, or γ position of the 5′,5′-triphosphate chain. Three of them were also modified with methyl groups at the 2′-O position of 7-methylguanosine to produce anti-reverse cap analogs (ARCAs). Due to the presence of stereogenic P centers in the phosphorothioate moieties, each analog was obtained as a mixture of two diastereomers, D1 and D2. The mixtures were resolved by RP HPLC, providing 12 different compounds. Fluorescence quenching experiments were employed to determine the association constant (K AS) for complexes of the new analogs with eIF4E. We found that phosphorothioate modifications generally stabilized the complex between eIF4E and the cap analog. The most strongly bound phosphorothioate analog (the D1 isomer of the β-substituted analog m7GppSpG) was characterized by a K AS that was more than fourfold higher than that of its unmodified counterpart (m7GpppG). All analogs modified in the γ position were resistant to hydrolysis by the scavenger decapping pyrophosphatase DcpS from both human and Caenorhabditis elegans sources. The absolute configurations of the diastereomers D1 and D2 of analogs modified at the α position (i.e., m7GpppSG and m2 7,2′-OGpppSG) were established as SP and RP, respectively, using enzymatic digestion and correlation with the SP and RP diastereomers of guanosine 5′-O-(1-thiodiphosphate) (GDPαS). The analogs resistant to DcpS act as potent inhibitors of in vitro protein synthesis in rabbit reticulocyte lysates.
机译:mRNA帽的类似物被广泛用于研究参与mRNA代谢的过程,并在生物技术和医学应用中有用。在这里,我们描述了在5',5'-三磷酸链的α,β或γ位置带有单个硫代磷酸酯修饰的六个二核苷酸帽类似物的合成。它们中的三个还被7-甲基鸟苷的2'-O位置的甲基修饰,以产生抗反向帽类似物(ARCA)。由于在硫代磷酸酯部分中存在立体异构的P中心,因此以两种非对映异构体D1和D2的混合物形式获得每种类似物。通过RP HPLC分离混合物,提供12种不同的化合物。荧光猝灭实验用于确定新类似物与eIF4E的复合物的缔合常数(K AS)。我们发现硫代磷酸酯修饰通常稳定了eIF4E和cap类似物之间的复合物。结合最强的硫代磷酸酯类似物(β-取代类似物m 7 GppSpG的D1异构体)的K AS比未修饰的类似物(m 7 GpppG)。 γ位修饰的所有类似物均能抵抗人类和秀丽隐杆线虫来源的清除剂去盖焦磷酸酶DcpS的水解作用。建立在α位置修饰的类似物的非对映异构体D1和D2的绝对构型(即m 7 GpppSG和m2 7,2'-O GpppSG)作为SP和RP分别使用酶消化,并与鸟苷5'-O-(1-硫代二磷酸)(GDPαS)的SP和RP非对映异构体相关。抗DcpS的类似物在兔网织红细胞裂解物中起体外蛋白质合成的有效抑制剂的作用。

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