Li Yan-Li, Maurel Marie-Christine, Ebel Christine, Vergne Jacques, Pipich Vitaliy, Zaccai Giuseppe
Institut Jacques-Monod,Université Paris VI, Tour 43, 2 place Jussieu, 75251, Paris Cedex 05, France.
Eur Biophys J. 2008 Feb;37(2):173-82. doi: 10.1007/s00249-007-0213-8. Epub 2007 Sep 25.
Hairpin ribozymes are flexible molecules that catalyse reversible self-cleavage after the docking of two independently folded internal loops, A and B. The activities, self-association and structures in solution of two 85 base adenine-dependent hairpin ribozymes (ADHR1 and ADHR2) were studied by native gel electrophoresis, analytical centrifugation, and small angle neutron scattering. Bi-molecular RNA interactions such as linear-linear, loop-loop, loop-linear or kissing interactions have been found to be important in the control of various biological functions, and hairpin loops present rich potential for establishing both intra- and intermolecular interactions through standard Watson-Crick base pairing or non-canonical interactions. Similar results were obtained for ADHR1 and ADHR2. At room temperature, they indicated end-to-end self-association of the ribozymes in rod-like structures with a cross-section corresponding to two double strands side-by-side. Dimers, which predominate at low concentration ( approximately 0.1 mg/ml), associate into longer rods, with increasing concentration ( approximately 1 mg/ml). Above 65 degrees C, the dimers and rods dissociated into compact monomers, with a radius of gyration similar to that of tRNA (about 70 bases). The dimers were non-active for catalysis, which suggests that dimer formation, probably by preventing the correct docking of loops A and B, could act as an inhibition mechanism for the regulation of hairpin ribozyme catalysis.
发夹状核酶是一种灵活的分子,在两个独立折叠的内部环A和B对接后催化可逆的自我切割。通过非变性凝胶电泳、分析超速离心和小角中子散射研究了两种85个碱基的腺嘌呤依赖性发夹状核酶(ADHR1和ADHR2)在溶液中的活性、自缔合和结构。已发现双分子RNA相互作用,如线性-线性、环-环、环-线性或亲吻相互作用,在控制各种生物学功能中很重要,并且发夹环通过标准的沃森-克里克碱基配对或非经典相互作用建立分子内和分子间相互作用具有丰富的潜力。ADHR1和ADHR2获得了类似的结果。在室温下,它们表明核酶在棒状结构中进行端对端自缔合,其横截面对应于两条并排的双链。在低浓度(约0.1mg/ml)下占主导的二聚体,随着浓度增加(约1mg/ml)会缔合成更长的棒状结构。在65℃以上,二聚体和棒状结构解离成紧密的单体,其回转半径与tRNA(约70个碱基)相似。二聚体对催化无活性,这表明二聚体的形成可能通过阻止环A和环B的正确对接,可作为一种抑制机制来调节发夹状核酶的催化作用。