Schoemaker Ruud J W, Gultyaev Alexander P
Section Theoretical Biology, Leiden Institute of Biology, Leiden University, Kaiserstraat 63, 2311 GP Leiden, The Netherlands.
Nucleic Acids Res. 2006 Apr 13;34(7):2015-26. doi: 10.1093/nar/gkl154. Print 2006.
Archaeal C/D box small RNAs (sRNAs) are homologues of eukaryotic C/D box small nucleolar RNAs (snoRNAs). Their main function is guiding 2'-O-ribose methylation of nucleotides in rRNAs. The methylation requires the pairing of an sRNA antisense element to an rRNA target site with formation of an RNA-RNA duplex. The temporary formation of such a duplex during rRNA maturation is expected to influence rRNA folding in a chaperone-like way, in particular in thermophilic Archaea, where multiple sRNAs with two binding sites are found. Here we investigate possible mechanisms of chaperone function of Archaeoglobus fulgidus and Pyrococcus abyssi C/D box sRNAs using computer simulations of rRNA secondary structure formation by genetic algorithm. The effects of sRNA binding on rRNA structure are introduced as temporary structural constraints during co-transcriptional folding. Comparisons of the final predictions with simulations without sRNA binding and with phylogenetic structures show that sRNAs with two antisense elements may significantly facilitate the correct formation of long-range interactions in rRNAs, in particular at elevated temperatures. The simulations suggest that the main mechanism of this effect is a transient restriction of folding in rRNA domains where the termini are brought together by binding to double-guide sRNAs.
古菌C/D盒小RNA(sRNA)是真核生物C/D盒小核仁RNA(snoRNA)的同源物。它们的主要功能是引导rRNA中核苷酸的2'-O-核糖甲基化。这种甲基化需要sRNA反义元件与rRNA靶位点配对形成RNA-RNA双链体。在rRNA成熟过程中这种双链体的临时形成预计会以类似伴侣蛋白的方式影响rRNA折叠,特别是在嗜热古菌中,那里发现了具有两个结合位点的多个sRNA。在这里,我们使用遗传算法对rRNA二级结构形成进行计算机模拟,研究嗜热栖热菌和深渊热球菌C/D盒sRNA伴侣蛋白功能的可能机制。在共转录折叠过程中,将sRNA结合对rRNA结构的影响作为临时结构限制引入。将最终预测结果与无sRNA结合的模拟结果以及系统发育结构进行比较表明,具有两个反义元件的sRNA可能会显著促进rRNA中长程相互作用的正确形成,特别是在高温下。模拟结果表明,这种效应的主要机制是rRNA结构域中折叠的瞬时限制,在这些结构域中,通过与双引导sRNA结合,末端被聚集在一起。