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A Peptide from Autoantigen La Blocks Poliovirus and Hepatitis C Virus Cap-Independent Translation and Reveals a Single Tyrosine Critical for La RNA Binding and Translation Stimulation

机译:从自身抗原肽肽阻断脊髓灰质炎病毒和丙型肝炎病毒帽独立翻译,并揭示了一个酪氨酸关键La RNA绑定和翻译刺激。

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摘要

La, a 52-kDa autoantigen in patients with systemic lupus erythematosus, was one of the first cellular proteins identified to interact with viral internal ribosome entry site (IRES) elements and stimulate poliovirus (PV) and hepatitis C virus (HCV) IRES-mediated translation. Previous results from our laboratory have shown that a small, yeast RNA (IRNA) could selectively inhibit PV and HCV IRES-mediated translation by sequestering the La protein. Here we have identified an 18-amino-acid-long sequence from the N-terminal “La motif” which is required for efficient interaction of La with IRNA and viral 5′ untranslated region (5′-UTR) elements. A synthetic peptide (called LAP, for La peptide) corresponding to this sequence (amino acids 11 to 28) of La was found to efficiently inhibit viral IRES-mediated translation in vitro. The LAP efficiently enters Huh-7 cells and preferentially inhibits HCV IRES-mediated translation programmed by a bicistronic RNA in vivo. The LAP does not bind RNA directly but appears to block La binding to IRNA and PV 5′-UTR. Competition UV cross-link and translation rescue experiments suggested that LAP inhibits IRES-mediated translation by interacting with proteins rather than RNA. Mutagenesis of LAP demonstrates that single amino acid changes in a highly conserved sequence within LAP are sufficient to eliminate the translation-inhibitory activity of LAP. When one of these mutations (Y23Q) is introduced into full-length La, the mutant protein is severely defective in interacting with the PV IRES element and consequently unable to stimulate IRES-mediated translation. However, the La protein with a mutation of the next tyrosine moiety (Y24Q) could still interact with PV 5′-UTR and stimulate viral IRES-mediated translation significantly. These results underscore the importance of the La N-terminal amino acids in RNA binding and viral RNA translation. The possible role of the LAP sequence in La-RNA binding and stimulation of viral IRES-mediated translation is discussed.
机译:La是系统性红斑狼疮患者的52 kDa自身抗原,是鉴定出与病毒内部核糖体进入位点(IRES)元素相互作用并刺激脊髓灰质炎病毒(PV)和丙型肝炎病毒(HCV)IRES介导的首批细胞蛋白之一翻译。我们实验室的先前结果表明,小的酵母RNA(IRNA)可以通过螯合La蛋白来选择性抑制PV和HCV IRES介导的翻译。在这里,我们从N端“ La基序”中鉴定出一个18个氨基酸长的序列,这是La与IRNA和病毒5'非翻译区(5'-UTR)元件有效相互作用所必需的。已发现对应于La的该序列(氨基酸11至28)的合成肽(对于La肽,称为LAP)在体外可有效抑制病毒IRES介导的翻译。 LAP有效进入Huh-7细胞,并优先抑制体内由双顺反子RNA编程的HCV IRES介导的翻译。 LAP不直接结合RNA,但似乎阻断La与IRNA和PV 5'-UTR的结合。竞争性紫外线交联和翻译拯救实验表明,LAP通过与蛋白质而非RNA相互作用来抑制IRES介导的翻译。 LAP的诱变表明,LAP内高度保守的序列中的单个氨基酸变化足以消除LAP的翻译抑制活性。当将这些突变之一(Y23Q)引入全长La时,该突变蛋白在与PV IRES元件相互作用中存在严重缺陷,因此无法刺激IRES介导的翻译。然而,具有下一个酪氨酸部分(Y24Q)突变的La蛋白仍可以与PV 5'-UTR相互作用,并显着刺激病毒IRES介导的翻译。这些结果强调了La N末端氨基酸在RNA结合和病毒RNA翻译中的重要性。讨论了LAP序列在La-RNA结合和刺激IRES介导的翻译中的可能作用。

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