Ke Ailong, Ding Fang, Batchelor Joseph D, Doudna Jennifer A
Department of Molecular and Cell Biology, University of California at Berkeley, Berkeley, CA 94720, USA.
Structure. 2007 Mar;15(3):281-7. doi: 10.1016/j.str.2007.01.017.
The hepatitis delta virus (HDV) ribozyme catalyzes viral RNA self-cleavage through general acid-base chemistry in which an active-site cytidine and at least one metal ion are involved. Monovalent metal ions support slow catalysis and were proposed to substitute for structural, but not catalytic, divalent metal ions in the RNA. To investigate the role of monovalent cations in ribozyme structure and function, we determined the crystal structure of the precursor HDV ribozyme in the presence of thallium ions (Tl(+)). Two Tl(+) ions can occupy a previously observed divalent metal ion hexahydrate-binding site located near the scissile phosphate, but are easily competed away by cobalt hexammine, a magnesium hexahydrate mimic and potent reaction inhibitor. Intriguingly, a third Tl(+) ion forms direct inner-sphere contacts with the ribose 2'-OH nucleophile and the pro-S(p) scissile phosphate oxygen. We discuss possible structural and catalytic implications of monovalent cation binding for the HDV ribozyme mechanism.
丁型肝炎病毒(HDV)核酶通过一般酸碱化学催化病毒RNA的自我切割,其中涉及一个活性位点胞嘧啶和至少一个金属离子。单价金属离子支持缓慢的催化作用,并被认为可替代RNA中结构性而非催化性的二价金属离子。为了研究单价阳离子在核酶结构和功能中的作用,我们确定了在铊离子(Tl(+))存在下前体HDV核酶的晶体结构。两个Tl(+)离子可占据先前观察到的位于可切割磷酸附近的二价金属离子六水合物结合位点,但很容易被六氨合钴(一种六水合镁模拟物和强效反应抑制剂)竞争掉。有趣的是,第三个Tl(+)离子与核糖2'-OH亲核试剂和前-S(p)可切割磷酸氧形成直接的内球接触。我们讨论了单价阳离子结合对HDV核酶机制可能的结构和催化影响。