Fletcher J E, Copeland P R, Driscoll D M, Krol A
Department of Cell Biology, Lerner Research Institute, Cleveland Clinic Foundation, Ohio 44195, USA.
RNA. 2001 Oct;7(10):1442-53.
The decoding of UGA as a selenocysteine (Sec) codon in mammalian selenoprotein mRNAs requires a selenocysteine insertion sequence (SECIS) element in the 3' untranslated region. The SECIS is a hairpin structure that contains a non-Watson-Crick base-pair quartet with a conserved G.A/A.G tandem in the core of the upper helix. Another essential component of the Sec insertion machinery is SECIS-binding protein 2 (SBP2). In this study, we define the binding site of SBP2 on six different SECIS RNAs using enzymatic and hydroxyl radical footprinting, gel mobility shift analysis, and phosphate-ethylation binding interference. We show that SBP2 binds to a variety of mammalian SECIS elements with similar affinity and that the SBP2 binding site is conserved across species. Based on footprinting studies, SBP2 protects the proximal part of the hairpin and both strands of the lower half of the upper helix that contains the non-Watson-Crick base pair quartet. Gel mobility shift assays showed that the G.A/A.G tandem and internal loop are critical for the binding of SBP2. Modification of phosphates by ethylnitrosourea along both strands of the non-Watson-Crick base pair quartet, on the 5' strand of the lower helix and part of the 5' strand of the internal loop, prevented binding of SBP2. We propose a model in which SBP2 covers the central part of the SECIS RNA, binding to the non-Watson-Crick base pair quartet and to the 5' strands of the lower helix and internal loop. Our results suggest that the affinity of SBP2 for different SECIS elements is not responsible for the hierarchy of selenoprotein expression that is observed in vivo.
在哺乳动物硒蛋白mRNA中,UGA密码子被解码为硒代半胱氨酸(Sec)需要3'非翻译区的硒代半胱氨酸插入序列(SECIS)元件。SECIS是一种发夹结构,在上部螺旋的核心包含一个具有保守G.A/A.G串联的非沃森-克里克碱基对四重体。Sec插入机制的另一个重要组成部分是SECIS结合蛋白2(SBP2)。在本研究中,我们使用酶切和羟基自由基足迹法、凝胶迁移率变动分析以及磷酸乙酯化结合干扰法确定了SBP2在六种不同SECIS RNA上的结合位点。我们发现SBP2以相似的亲和力结合多种哺乳动物SECIS元件,并且SBP2结合位点在物种间是保守的。基于足迹研究,SBP2保护发夹的近端部分以及包含非沃森-克里克碱基对四重体的上部螺旋下半部分的两条链。凝胶迁移率变动分析表明G.A/A.G串联和内部环对于SBP2的结合至关重要。沿着非沃森-克里克碱基对四重体的两条链、下部螺旋的5'链以及内部环5'链的一部分用乙基亚硝基脲修饰磷酸会阻止SBP2的结合。我们提出了一个模型,其中SBP2覆盖SECIS RNA的中心部分,与非沃森-克里克碱基对四重体以及下部螺旋和内部环的5'链结合。我们的结果表明SBP2对不同SECIS元件的亲和力并非体内观察到的硒蛋白表达层次的原因。