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在锤头状核酶切割反应中,限速步骤似乎是pH依赖性构象变化,而非化学步骤。

A pH-dependent conformational change, rather than the chemical step, appears to be rate-limiting in the hammerhead ribozyme cleavage reaction.

作者信息

Murray James B, Dunham Christine M, Scott William G

机构信息

Department of Chemistry and Biochemistry and The Center for the Molecular Biology of RNA Sinsheimer Laboratories, University of California at Santa Cruz, Santa Cruz, CA 95064, USA.

出版信息

J Mol Biol. 2002 Jan 11;315(2):121-30. doi: 10.1006/jmbi.2001.5145.

Abstract

We have investigated the chemical basis for a previously observed 7.8 A conformational change in the hammerhead ribozyme that positions the substrate for in-line attack. We have found that the conformational change can only be observed at or above pH 8.5 (in the presence of Co(2+)) and requires the presence of an ionizable 2'-OH at the cleavage site, and note that this observed apparent pK(a) of 8.5 for the conformational change is within experimental error (+/-0.5) of the previously reported apparent kinetic pK(a) of 8.5 for the hammerhead ribozyme in the presence of Co(2+). We have solved two crystal structures of hammerhead ribozymes having 2'-OCH(3) or 2'-F substitutions at the cleavage site and have found that these will not undergo a conformational change equivalent to that observed for the hammerhead ribozyme having an unmodified attacking nucleophile under otherwise identical conditions. We have also characterized the kinetics of cleavage in the crystal. In addition to verifying that the particular sequence of RNA that we crystallized cleaves faster in the crystal than in solution, we also find that the extent of cleavage in the crystal is complete, unlike in solution where this and most other hammerhead ribozyme substrates are cleaved only to about 70 % completion. The initial cleavage rate in the crystal obeys the expected log-linear relation between cleavage-rate and pH with a slope of 0.7, as has been observed for other hammerhead ribozyme sequences in solution, indicating that in both the crystal and in solution the pH-dependent step is rate-limiting. However, the cleavage rate in the crystal is biphasic, with the most dramatic distinction between initial (slower) and final (faster) phases appearing at pH 6.0. The initial phase corresponds to the pH-dependent cleavage rate observed in solution, but the second, faster phase is roughly pH-independent and closely parallels the cleavage rate observed at pH 8 (0.4/minute). This result is particularly remarkable because it entails that the rapidly cleaving phase at pH 6 is comparable to the cleavage rate for the fastest cleaving hammerhead ribozymes at pH 6. Based upon these observations, we conclude that the pH-dependent conformational change is the rate-determining step under standard conditions for the hammerhead ribozyme self-cleavage reaction, and that an ionizable 2'-proton at cleavage site is required for this conformational change. We further hypothesize that deprotonation of the cleavage-site 2'-oxygen drives this conformational change.

摘要

我们研究了锤头状核酶中先前观察到的7.8埃构象变化的化学基础,该构象变化将底物定位用于线性攻击。我们发现,这种构象变化仅在pH 8.5及以上(在Co(2+)存在下)才能观察到,并且需要在切割位点存在可电离的2'-OH,并注意到观察到的这种构象变化的表观pK(a)为8.5,在实验误差范围内(±0.5),与先前报道的在Co(2+)存在下锤头状核酶的表观动力学pK(a) 8.5一致。我们解析了在切割位点具有2'-OCH(3)或2'-F取代的锤头状核酶的两个晶体结构,发现它们在其他相同条件下不会经历与具有未修饰攻击亲核试剂的锤头状核酶所观察到的等效构象变化。我们还对晶体中的切割动力学进行了表征。除了验证我们结晶的特定RNA序列在晶体中比在溶液中切割得更快之外,我们还发现晶体中的切割程度是完全的,这与溶液中不同,在溶液中该底物和大多数其他锤头状核酶底物仅切割至约70%的程度。晶体中的初始切割速率遵循切割速率与pH之间预期的对数线性关系,斜率为0.7,这与在溶液中观察到的其他锤头状核酶序列一致,表明在晶体和溶液中,pH依赖性步骤都是限速步骤。然而,晶体中的切割速率是双相的,在pH 6.0时初始(较慢)和最终(较快)阶段之间的差异最为显著。初始阶段对应于在溶液中观察到的pH依赖性切割速率,但第二个较快阶段大致与pH无关,并且与在pH 8时观察到的切割速率(0.4/分钟)密切平行。这个结果特别引人注目,因为它意味着在pH 6时快速切割阶段与在pH 6时最快切割的锤头状核酶的切割速率相当。基于这些观察结果,我们得出结论,pH依赖性构象变化是锤头状核酶自我切割反应在标准条件下的限速步骤,并且切割位点处可电离的2'-质子是这种构象变化所必需的。我们进一步假设切割位点2'-氧的去质子化驱动了这种构象变化。

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