Murray J B, Seyhan A A, Walter N G, Burke J M, Scott W G
Department of Chemistry and Biochemistry, University of California, Santa Cruz, USA.
Chem Biol. 1998 Oct;5(10):587-95. doi: 10.1016/s1074-5521(98)90116-8.
The catalytic activity of RNA enzymes is thought to require divalent metal ions, which are believed to facilitate RNA folding and to play a direct chemical role in the reaction.
We have found that the hammerhead, hairpin and VS ribozymes do not require divalent metal ions, their mimics such as [Co(NH3)6]3+, or even monovalent metal ions for efficient self-cleavage. The HDV ribozyme, however, does appear to require divalent metal ions for self-cleavage. For the hammerhead, hairpin and VS ribozymes, very high concentrations of monovalent cations support RNA-cleavage rates similar to or exceeding those observed in standard concentrations of Mg2+. Analysis of all reaction components by inductively coupled plasma-optical emission spectrophotometry (ICPOES) and the use of a variety of chelating agents effectively eliminate the possibility of contaminating divalent and trivalent metal ions in the reactions. For the hairpin ribozyme, fluorescence resonance energy transfer experiments demonstrate that high concentrations of monovalent cations support folding into the catalytically proficient tertiary structure.
These results directly demonstrate that metal ions are not obligatory chemical participants in the reactions catalysed by the hammerhead, hairpin, and VS ribozymes. They permit us to suggest that the folded structure of the RNA itself contributes more to the catalytic function than was previously recognised, and that the presence of a relatively dense positive charge, rather than divalent metal ions, is the general fundamental requirement. Whether this charge is required for catalysis per se or simply for RNA folding remains to be determined.
RNA 酶的催化活性被认为需要二价金属离子,据信这些离子有助于 RNA 折叠并在反应中发挥直接的化学作用。
我们发现锤头状、发夹状和 VS 核酶在高效自我切割时不需要二价金属离子、它们的类似物如[Co(NH₃)₆]³⁺,甚至单价金属离子。然而,丁型肝炎病毒(HDV)核酶在自我切割时似乎确实需要二价金属离子。对于锤头状、发夹状和 VS 核酶,非常高浓度的单价阳离子能支持 RNA 切割速率,其与在标准浓度 Mg²⁺中观察到的速率相似或超过该速率。通过电感耦合等离子体发射光谱法(ICPOES)对所有反应成分进行分析,并使用多种螯合剂,有效地排除了反应中存在二价和三价金属离子污染的可能性。对于发夹状核酶,荧光共振能量转移实验表明,高浓度的单价阳离子能支持其折叠成具有催化活性的三级结构。
这些结果直接表明,金属离子并非锤头状、发夹状和 VS 核酶所催化反应中必不可少的化学参与者。它们使我们能够提出,RNA 自身的折叠结构对催化功能的贡献比之前认识到的更大,并且相对密集的正电荷的存在,而非二价金属离子,是普遍的基本要求。这种电荷是催化本身所必需的,还是仅仅用于 RNA 折叠,仍有待确定。