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Evidence for a hydroxide ion bridging two magnesium ions at the active site of the hammerhead ribozyme.

机译:氢氧根离子在锤头状核酶的活性位点桥接两个镁离子的证据。

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摘要

In the presence of magnesium ions, cleavage by the hammerhead ribozyme RNA at a specific residue leads to 2'3'-cyclic phosphate and 5'-OH extremities. In the cleavage reaction an activated ribose 2'-hydroxyl group attacks its attached 3'-phosphate. Molecular dynamics simulations of the crystal structure of the hammerhead ribozyme, obtained after flash-freezing of crystals under conditions where the ribozyme is active, provide evidence that a mu-bridging OH-ion is located between two Mg2+ions close to the cleavable phosphate. Constrained simulations show further that a flip from the C3'- endo to the C2'- endo conformation of the ribose at the cleavable phosphate brings the 2'-hydroxyl in proximity to both the attacked phosphorous atom and the mu-bridging OH-ion. Thus, the simulations lead to a detailed new insight into the mechanism of hammerhead ribozyme cleavage where a mu-hydroxo bridged magnesium cluster, located on the deep groove side, provides an OH-ion that is able to activate the 2'-hydroxyl nucleophile after a minor and localized conformational change in the RNA.
机译:在镁离子的存在下,锤头状核酶RNA在特定残基处的裂解导致2'3'-环状磷酸酯和5'-OH末端。在裂解反应中,活化的核糖2'-羟基攻击其连接的3'-磷酸。锤头状核酶的晶体结构的分子动力学模拟是在核酶活跃的条件下快速冷冻冻结的晶体后获得的,这提供了一个mu-bridging OH离子位于两个Mg2 +离子之间,靠近可裂解的磷酸盐的证据。约束模拟进一步表明,在可裂解的磷酸酯上,从核糖的C3'-内构型向C2'-内构型的翻转使2'-羟基与被攻击的磷原子和mu-桥接OH-离子都接近。因此,模拟导致对锤头状核酶裂解机理的详细的新见解,其中位于深沟一侧的一个mu-羟基桥接的镁簇提供了一个OH离子,该OH离子能够在活化后活化2'-羟基亲核体。 RNA中微小的局部构象变化。

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