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发夹状核酶分子间催化作用的动力学与热力学

Kinetics and thermodynamics of intermolecular catalysis by hairpin ribozymes.

作者信息

Hegg L A, Fedor M J

机构信息

Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester 01655-0103, USA.

出版信息

Biochemistry. 1995 Dec 5;34(48):15813-28. doi: 10.1021/bi00048a027.

Abstract

The hairpin ribozyme, derived from the negative strand of the satellite RNA of tobacco ringspot virus, belongs to the class of small catalytic RNAs that cleave RNA to generate 2',3'-cyclic phosphate and 5'hydroxyl termini and ligate these termini in the reverse reaction to form 3',5'-phosphodiesters. Rate and equilibrium constants for binding, dissociation, cleavage, and ligation steps in the kinetic mechanism were determined using a series of hairpin ribozyme/substrate pairs that differed in the sequence and length of the intermolecular base-paired helices. All hairpin variants cleaved with rate constants of approximately 0.3 min-1 at pH 7.5 in 10 nM MgCl2 at 25 degrees C, regardless of the length or sequence of the intermolecular helices. A rate constant of approximately 3 min-1 was determined for an intermolecular ligation reaction in which both cleavage products were supplied to the ribozyme in trans. Thus, the hairpin favored ligation over cleavage by 10-fold when the ribozyme was saturated with cleavage products. Binding rate constants for cleavage substrates and products were comparable to values reported for other catalytic RNAs but were somewhat slower than binding rates typical of small RNA helices. Substrate dissociation rate constants were much slower than cleavage rate constants for all substrates. Because virtually every substrate that was bound was cleaved before it could dissociate, KMS values were not the same as KdS values. Instead, KMS reflected the ratio of cleavage and substrate binding rate constants and had the same value of approximately 30 nM for all substrates. Calculations based on empirically determined free energy parameters for simple RNA helices indicated that complexes between ribozymes and 5'-cleavage products were slightly less stable than simple helices with the same sequences. In contrast, affinities between ribozymes and cleavage substrates and between ribozymes and 3'-cleavage products were stronger than expected for simple duplexes by about -2.5 kcal/mol, evidence of stabilizing interactions in addition to those contributed by helical base pairs. This kinetic and thermodynamic study demonstrates that the kinetic mechanism of the hairpin ribozyme is distinct from the kinetic mechanisms of other well-characterized ribozymes and provides a foundation for further exploration of the hairpin structure and catalytic mechanism.

摘要

发夹状核酶源自烟草环斑病毒卫星RNA的负链,属于小催化RNA类别,可切割RNA以产生2',3'-环磷酸酯和5'羟基末端,并在逆反应中将这些末端连接形成3',5'-磷酸二酯。利用一系列在分子间碱基配对螺旋的序列和长度上存在差异的发夹状核酶/底物对,测定了动力学机制中结合、解离、切割和连接步骤的速率和平衡常数。所有发夹变体在25℃、pH 7.5、10 nM MgCl₂条件下的切割速率常数约为0.3 min⁻¹,与分子间螺旋的长度或序列无关。对于一种分子间连接反应,其中两种切割产物以反式形式提供给核酶,测定的速率常数约为3 min⁻¹。因此,当核酶被切割产物饱和时,发夹状核酶对连接的偏好比对切割的偏好高10倍。切割底物和产物的结合速率常数与其他催化RNA报道的值相当,但比小RNA螺旋典型的结合速率稍慢。所有底物的底物解离速率常数都比切割速率常数慢得多。由于几乎每个结合的底物在解离之前就被切割了,所以KMS值与KdS值不同。相反,KMS反映了切割和底物结合速率常数的比值,所有底物的KMS值约为30 nM。基于简单RNA螺旋的经验确定的自由能参数进行的计算表明,核酶与5'-切割产物之间的复合物稳定性略低于具有相同序列的简单螺旋。相比之下,核酶与切割底物之间以及核酶与3'-切割产物之间的亲和力比简单双链体预期的要强约-2.5 kcal/mol,这证明除了螺旋碱基对贡献的相互作用外,还存在稳定相互作用。这项动力学和热力学研究表明,发夹状核酶的动力学机制与其他特征明确的核酶的动力学机制不同,并为进一步探索发夹状结构和催化机制奠定了基础。

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