4.4 Article

An efficient in vitro translation system from mammalian cells lacking the translational inhibition caused by eIF2 phosphorylation

期刊

RNA
卷 14, 期 3, 页码 593-602

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1261/rna.825008

关键词

protein synthesis; in vitro translation; cell-free systems; eIF2 phosphorylation

资金

  1. NHLBI NIH HHS [HL052173, R01 HL052173] Funding Source: Medline
  2. NIDDK NIH HHS [DK060596, R01 DK060596, DK042394, R01 DK042394, R01 DK053307, R01-DK053307, R37 DK060596, R37 DK042394] Funding Source: Medline

向作者/读者索取更多资源

In vitro translation systems are used to investigate translational mechanisms and to synthesize proteins for characterization. Most available mammalian cell-free systems have reduced efficiency due to decreased translation initiation caused by phosphorylation of the initiation factor eIF2 alpha on Ser51. We describe here a novel cell-free protein synthesis system using extracts from cultured mouse embryonic fibroblasts that are homozygous for the Ser51 to- Ala mutation in eIF2 alpha (A/A cells). The translation efficiency of a capped and polyadenylated firefly luciferase mRNA in A/A cell extracts was 30-fold higher than in wild-type extracts. Protein synthesis in extracts from A/A cells was active for at least 2 h and generated up to 20 mg/mL of luciferase protein. Additionally, the A/A cell-free system faithfully recapitulated the selectivity of in vivo translation for mRNA features; translation was stimulated by a 5 '-end cap (m(7) GpppN) and a 3 '-end poly(A) tail in a synergistic manner. The system also showed similar efficiencies of cap-dependent and IRES-mediated translation (EMCV IRES). Significantly, the A/A cell-free system supported the post-translational modification of proteins, as shown by glycosylation of the HIV type-1 gp120 and cleavage of the signal peptide from beta-lactamase. We propose that cell-free systems from A/A cells can be a useful tool for investigating mechanisms of mammalian mRNA translation and for the production of recombinant proteins for molecular studies. In addition, cell-free systems from differentiated cells with the Ser51Ala mutation should provide a means for investigating cell type-specific features of protein synthesis.

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