Grudzien-Nogalska Ewa, Jemielity Jacek, Kowalska Joanna, Darzynkiewicz Edward, Rhoads Robert E
Department of Biochemistry and Molecular Biology, Louisiana State University Health Sciences Center, Shreveport, Louisiana 71130-3932, USA.
RNA. 2007 Oct;13(10):1745-55. doi: 10.1261/rna.701307. Epub 2007 Aug 24.
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.
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。