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硫代磷酸帽类似物可稳定信使核糖核酸(mRNA)并提高哺乳动物细胞中的翻译效率。

Phosphorothioate cap analogs stabilize mRNA and increase translational efficiency in mammalian cells.

作者信息

Grudzien-Nogalska Ewa, Jemielity Jacek, Kowalska Joanna, Darzynkiewicz Edward, Rhoads Robert E

机构信息

Department of Biochemistry and Molecular Biology, Louisiana State University Health Sciences Center, Shreveport, Louisiana 71130-3932, USA.

出版信息

RNA. 2007 Oct;13(10):1745-55. doi: 10.1261/rna.701307. Epub 2007 Aug 24.

Abstract

Capped RNAs synthesized by in vitro transcription have found wide utility for studying mRNA function and metabolism and for producing proteins of interest. We characterize here a recently synthesized series of cap analogs with improved properties that contain a sulfur substitution for a nonbridging oxygen in either the alpha-, beta-, or gamma-phosphate moieties, m(2) (7,2'-O )Gppp(S)G, m(2) (7,2'-O )Gpp(S)pG, and m(2) (7,2'-O )Gp(S)ppG, respectively. The new compounds were also modified at the 2'-O position of the m(7)Guo to make them anti-reverse cap analogs (ARCAs), i.e., they are incorporated exclusively in the correct orientation during in vitro transcription. Each of the S-ARCAs exists in two diastereoisomeric forms (D1 and D2) that can be resolved by reverse-phase HPLC. A major in vivo pathway for mRNA degradation is initiated by removal of the cap by the pyrophosphatase Dcp1/Dcp2, which cleaves between the alpha- and beta-phosphates. Oligonucleotides capped with m(2) (7,2'-O )Gpp(S)pG (D2) were completely resistant to hydrolysis by recombinant human Dcp2 in vitro, whereas those capped with m(2) (7,2'-O )Gpp(S)pG (D1) and both isomers of m(2) (7,2'-O )Gppp(S)G were partially resistant. Luciferase mRNA capped with m(2) (7,2'-O )Gpp(S)pG (D2) had a t (1/2) of 257 min in cultured HC11 mammary epithelial cells compared with 86 min for m(7)Gp(3)G-capped mRNA. Luciferase mRNAs capped with m(2) (7,2'-O )Gpp(S)pG (D1) and m(2) (7,2'-O )Gpp(S)pG (D2) were translated 2.8-fold and 5.1-fold, respectively, more efficiently in HC11 cells than those capped with m(7)Gp(3)G. The greater yield of protein due to combining higher translational efficiency with longer t (1/2) of mRNA should benefit applications that utilize RNA transfection such as protein production, anti-cancer immunization, and gene therapy.

摘要

通过体外转录合成的带帽RNA已在研究mRNA功能和代谢以及生产目标蛋白质方面得到广泛应用。我们在此表征了一系列最近合成的具有改进特性的帽类似物,它们在α-、β-或γ-磷酸基团中用硫取代了一个非桥连氧,分别为m(2)(7,2'-O)Gppp(S)G、m(2)(7,2'-O)Gpp(S)pG和m(2)(7,2'-O)Gp(S)ppG。这些新化合物还在m(7)Guo的2'-O位置进行了修饰,使其成为抗逆转帽类似物(ARCAs),即它们在体外转录过程中仅以正确的方向掺入。每种S-ARCA都以两种非对映异构体形式(D1和D2)存在,可通过反相高效液相色谱法分离。mRNA降解的主要体内途径是由焦磷酸酶Dcp1/Dcp2去除帽引发的,该酶在α-和β-磷酸之间切割。用m(2)(7,2'-O)Gpp(S)pG(D2)加帽的寡核苷酸在体外对重组人Dcp2的水解完全抗性,而用m(2)(7,2'-O)Gpp(S)pG(D1)加帽的寡核苷酸以及m(2)(7,2'-O)Gppp(S)G的两种异构体则部分抗性。用m(2)(7,2'-O)Gpp(S)pG(D2)加帽的荧光素酶mRNA在培养的HC11乳腺上皮细胞中的半衰期为257分钟,而用m(7)Gp(3)G加帽的mRNA半衰期为86分钟。用m(2)(7,2'-O)Gpp(S)pG(D1)和m(2)(7,2'-O)Gpp(S)pG(D2)加帽的荧光素酶mRNA在HC11细胞中的翻译效率分别比用m(7)Gp(3)G加帽的mRNA高2.8倍和5.1倍。由于将更高的翻译效率与更长的mRNA半衰期相结合而产生的更高蛋白质产量,应该会有利于利用RNA转染的应用,如蛋白质生产、抗癌免疫和基因治疗。

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