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Zinc-dependent cleavage in the catalytic core of the hammerhead ribozyme: evidence for a pH-dependent conformational change

机译:锤头状核酶催化核心中锌依赖性裂解:pH依赖性构象变化的证据

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摘要

We have characterized a novel Zn~(2+)-catalyzed cleavage site between nucleotides C3 and U4 in the catalytic core of the hammerhead ribozyme. In contrast to previously described divalent metal-ion-dependent cleavage of RNA, U4 cleavage is only observed in the presence of Zn~(2+). This new cleavage site has an unusual pH dependence, in that U4 cleavage products are only observed above pH 7.9 and reach a maximum yield at about pH 8.5. These data, together with the fact that no metal ion-binding site is observed in proximity to the U4 cleavage site in either of the crystal structures, point toward a pH-dependent conformational change in the hammerhead ribozyme. We have described previously Zn~(2+)-dependent cleavage between G8 and A9 in the hammerhead ribozyme and have discovered that U4 cleavage occurs only after A9 cleavage. To our knowledge, this is the first example of sequential cleavage events as a possible regulatory mechanism in ribozymes.
机译:我们已经表征了锤头状核酶催化核心中的核苷酸C3和U4之间的新型Zn〜(2+)催化的切割位点。与先前描述的RNA的二价金属离子依赖性切割相反,仅在Zn〜(2+)存在下才能观察到U4切割。这个新的裂解位点具有不同寻常的pH依赖性,因为仅在pH 7.9以上观察到U4裂解产物,并且在约pH 8.5时达到最大产率。这些数据,加上在任一晶体结构中靠近U4裂解位点均未观察到金属离子结合位点的事实,说明了锤头状核酶的pH依赖性构象变化。我们先前已经描述了锤头状核酶中G8和A9之间依赖Zn〜(2+)的裂解,并且发现U4裂解仅在A9裂解之后发生。据我们所知,这是连续裂解事件作为核酶可能的调控机制的第一个例子。

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