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多个嘧啶富集区元件调控小麦花叶病毒内部核糖体进入位点活性的协同机制。

Multiple Polypyrimidine Tract Elements Regulate a Cooperative Mechanism for Triticum Mosaic Virus Internal Ribosomal Entry Site Activity.

作者信息

Jaramillo-Mesa Helena, Fischer Emma, Rakotondrafara Aurélie M

机构信息

Department of Plant Pathology, University of Wisconsin-Madison, Madison, WI, United States.

出版信息

Front Plant Sci. 2022 Apr 12;13:864832. doi: 10.3389/fpls.2022.864832. eCollection 2022.

Abstract

Diverse elements within the 5' untranslated region of an mRNA can influence the translation efficiency at the main AUG codon. We previously identified a core picornaviral like YX-AUG motif with 16-nt polypyrimidine CU tract separated by an 11-nt spacer sequence from the 13th AUG codon, which is recognized as the preferred initiation site within the (TriMV) internal ribosome entry site (IRES) element. The motif is proposed to function as an internal ribosomal landing site at the designated start codon. Here, we exposed the cooperative role of multiple CU-rich segments flanking the TriMV YX-AUG motif to reach and drive internal initiation of translation at the preferred start site. We propose that these auxiliary domains may enhance the ribosome capacity and their delivery at proximity of the correct initiation site. These polypyrimidine tracts can be modulated with a cryptic AUG in a position-dependent manner to replace the native YX-AUG motif, and thus uncovering a new layer of control of start codon selection. In line with these observations, mass spectrometry analysis of proteins directly interacting with translationally impaired TriMV IRES mutants that bear these motifs indicated an enrichment in 40S and 60S ribosomal related proteins, revealing a new function of polypyrimidine tracts to regulate IRES-driven translation. Accessibility of these RNA regions for interaction was validated by SHAPE analysis of the entire TriMV leader sequence and supported by the ability of anti-sense oligonucleotides designed to block the CU tracts accessibility to impair IRES activity. This is the first evidence that defines the core modular domains required for ribosomal recruitment and start codon selection in a complex, multi-AUG viral 5' UTR for translation in plants.

摘要

信使核糖核酸(mRNA)5'非翻译区内的多种元件可影响主要AUG密码子处的翻译效率。我们之前鉴定出一种核心微小核糖核酸病毒样YX - AUG基序,其具有16个核苷酸的多嘧啶CU序列,与第13个AUG密码子之间由11个核苷酸的间隔序列隔开,该密码子被认为是烟草花叶病毒(TriMV)内部核糖体进入位点(IRES)元件内的首选起始位点。该基序被认为在指定的起始密码子处作为内部核糖体着陆位点发挥作用。在此,我们揭示了TriMV YX - AUG基序侧翼多个富含CU片段在到达并驱动首选起始位点处的内部翻译起始中的协同作用。我们提出这些辅助结构域可能增强核糖体能力及其在正确起始位点附近的传递。这些多嘧啶序列可通过一个隐蔽的AUG以位置依赖的方式进行调节,以取代天然的YX - AUG基序,从而揭示起始密码子选择控制的新层面。与这些观察结果一致,对与携带这些基序的翻译受损的TriMV IRES突变体直接相互作用的蛋白质进行质谱分析表明,40S和60S核糖体相关蛋白质富集,揭示了多嘧啶序列调节IRES驱动翻译的新功能。通过对整个TriMV前导序列进行SHAPE分析验证了这些RNA区域用于相互作用的可及性,并得到了设计用于阻断CU序列可及性的反义寡核苷酸损害IRES活性能力的支持。这是首次在植物复杂的多AUG病毒5'非翻译区中定义核糖体募集和起始密码子选择所需的核心模块化结构域的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28ca/9042117/87ce0b528e20/fpls-13-864832-g001.jpg

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