Lilley D M
Department of Biochemistry, The University of Dundee, UK.
FEBS Lett. 1999 Jun 4;452(1-2):26-30. doi: 10.1016/s0014-5793(99)00544-x.
The hairpin ribozyme undergoes a site-specific transesterification cleavage of the phosphodiester backbone. The natural form of the ribozyme is a four-way helical junction, where two arms contain unpaired loops. This folds by pairwise coaxial stacking of helical arms, and a rotation into an antiparallel conformation in which there is close association between the loops. This probably generates the local conformation required to facilitate the trajectory into an in-line SN2 transition state. Folding is induced by the cooperative binding of at least two divalent metal ions, which are probably distributed between the junction and the loop-loop interface. The junction forms the structural scaffold on which the geometry of the ribozyme is built, and structural perturbation of the junction leads to impaired catalytic activity.
发夹状核酶会对磷酸二酯主链进行位点特异性的酯交换切割。核酶的天然形式是一种四臂螺旋连接体,其中两条臂包含未配对的环。它通过螺旋臂的成对同轴堆积进行折叠,并旋转成反平行构象,此时环之间紧密缔合。这可能产生了促进进入线性SN2过渡态所需的局部构象。折叠是由至少两个二价金属离子的协同结合诱导的,这些金属离子可能分布在连接体和环-环界面之间。连接体形成了构建核酶几何结构的结构支架,连接体的结构扰动会导致催化活性受损。