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丝状真菌粗糙脉孢菌中起始密码子选择的严格性。

The stringency of start codon selection in the filamentous fungus Neurospora crassa.

机构信息

Department of Biology, Texas A&M University, College Station, TX 77843-3258, USA.

出版信息

J Biol Chem. 2013 Mar 29;288(13):9549-62. doi: 10.1074/jbc.M112.447177. Epub 2013 Feb 8.

DOI:10.1074/jbc.M112.447177
PMID:23396971
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3611022/
Abstract

In eukaryotic cells initiation may occur from near-cognate codons that differ from AUG by a single nucleotide. The stringency of start codon selection impacts the efficiency of initiation at near-cognate codons and the efficiency of initiation at AUG codons in different contexts. We used a codon-optimized firefly luciferase reporter initiated with AUG or each of the nine near-cognate codons in preferred context to examine the stringency of start codon selection in the model filamentous fungus Neurospora crassa. In vivo results indicated that the hierarchy of initiation at start codons in N. crassa (AUG ≫ CUG > GUG > ACG > AUA ≈ UUG > AUU > AUC) is similar to that in human cells. Similar results were obtained by translating mRNAs in a homologous N. crassa in vitro translation system or in rabbit reticulocyte lysate. We next examined the efficiency of initiation at AUG, CUG, and UUG codons in different contexts in vitro. The preferred context was more important for efficient initiation from near-cognate codons than from AUG. These studies demonstrated that near-cognate codons are used for initiation in N. crassa. Such events could provide additional coding capacity or have regulatory functions. Analyses of the 5'-leader regions in the N. crassa transcriptome revealed examples of highly conserved near-cognate codons in preferred contexts that could extend the N termini of the predicted polypeptides.

摘要

在真核细胞中,起始可以从与 AUG 相差一个核苷酸的近同密码子发生。起始密码子选择的严格性影响近同密码子起始的效率和不同背景下 AUG 密码子起始的效率。我们使用密码子优化的萤火虫荧光素酶报告基因,该报告基因起始于 AUG 或每个近同密码子(在优选的背景下),以检查模型丝状真菌粗糙脉孢菌中起始密码子选择的严格性。体内结果表明,粗糙脉孢菌中起始密码子的起始顺序层次(AUG ≫ CUG > GUG > ACG > AUA ≈ UUG > AUU > AUC)与人类细胞相似。在同源的粗糙脉孢菌体外翻译系统或兔网织红细胞裂解物中翻译 mRNA 时,也获得了类似的结果。接下来,我们在体外检查了 AUG、CUG 和 UUG 密码子在不同背景下的起始效率。优选的背景对于从近同密码子有效起始比从 AUG 更重要。这些研究表明,近同密码子可用于粗糙脉孢菌的起始。此类事件可能提供额外的编码能力或具有调节功能。对粗糙脉孢菌转录组的 5'-启动子区域的分析揭示了在优选背景下高度保守的近同密码子的例子,这些密码子可以延长预测多肽的 N 端。

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本文引用的文献

1
Non-optimal codon usage affects expression, structure and function of clock protein FRQ.非最佳密码子使用会影响生物钟蛋白 FRQ 的表达、结构和功能。
Nature. 2013 Mar 7;495(7439):111-5. doi: 10.1038/nature11833. Epub 2013 Feb 17.
2
Global mapping of translation initiation sites in mammalian cells at single-nucleotide resolution.在单核苷酸分辨率下绘制哺乳动物细胞翻译起始位点的全球图谱。
Proc Natl Acad Sci U S A. 2012 Sep 11;109(37):E2424-32. doi: 10.1073/pnas.1207846109. Epub 2012 Aug 27.
3
Genome-wide search for novel human uORFs and N-terminal protein extensions using ribosomal footprinting.利用核糖体足迹法进行全基因组搜索新的人类 uORFs 和 N 端蛋白延伸。
Genome Res. 2012 Nov;22(11):2208-18. doi: 10.1101/gr.139568.112. Epub 2012 Aug 9.
4
Sequential eukaryotic translation initiation factor 5 (eIF5) binding to the charged disordered segments of eIF4G and eIF2β stabilizes the 48S preinitiation complex and promotes its shift to the initiation mode.顺序真核翻译起始因子 5(eIF5)与 eIF4G 和 eIF2β 的带电无序片段结合,稳定 48S 起始前复合物,并促进其向起始模式转变。
Mol Cell Biol. 2012 Oct;32(19):3978-89. doi: 10.1128/MCB.00376-12. Epub 2012 Jul 30.
5
The C-terminal domain of eukaryotic initiation factor 5 promotes start codon recognition by its dynamic interplay with eIF1 and eIF2β.真核起始因子 5 的 C 末端结构域通过与 eIF1 和 eIF2β 的动态相互作用促进起始密码子的识别。
Cell Rep. 2012 Jun 28;1(6):689-702. doi: 10.1016/j.celrep.2012.04.007. Epub 2012 May 24.
6
Hidden coding potential of eukaryotic genomes: nonAUG started ORFs.真核生物基因组的隐藏编码潜力:非 AUG 起始的 ORFs。
J Biomol Struct Dyn. 2013;31(1):103-14. doi: 10.1080/07391102.2012.691367. Epub 2012 Jul 18.
7
Leucine-tRNA initiates at CUG start codons for protein synthesis and presentation by MHC class I.亮氨酰-tRNA 可从 CUG 起始密码子起始蛋白质合成,并由 MHC Ⅰ类分子呈递。
Science. 2012 Jun 29;336(6089):1719-23. doi: 10.1126/science.1220270.
8
A mechanistic overview of translation initiation in eukaryotes.真核生物翻译起始的机制概述。
Nat Struct Mol Biol. 2012 Jun 5;19(6):568-76. doi: 10.1038/nsmb.2303.
9
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Proc Natl Acad Sci U S A. 2012 May 22;109(21):8161-6. doi: 10.1073/pnas.1201262109. Epub 2012 May 8.
10
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Mol Cell Biol. 2012 Jul;32(13):2396-406. doi: 10.1128/MCB.00136-12. Epub 2012 Apr 16.