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酰基胍基杯[4]芳烃作为一种高效催化剂,用于断裂 RNA 和 DNA 模型化合物中的磷酸二酯键。

A calix[4]arene with acylguanidine units as an efficient catalyst for phosphodiester bond cleavage in RNA and DNA model compounds.

机构信息

Dipartimento di Scienze e Tecnologie Chimiche, Università "Tor Vergata", Via della Ricerca Scientifica, 1, I-00133 Roma, Italy.

Dipartimento di Scienze Chimiche, della Vita e della Sostenibilità Ambientale, Università degli Studi di Parma, Viale delle Scienze, 17/A, 43124 Parma, Italy.

出版信息

Org Biomol Chem. 2019 Aug 28;17(32):7482-7492. doi: 10.1039/c9ob01141b. Epub 2019 Jul 31.

DOI:10.1039/c9ob01141b
PMID:31364652
Abstract

A calix[4]arene scaffold, blocked in the cone conformation and decorated at the upper rim with two acylguanidine units, effectively catalyzes the cleavage of phosphodiester bonds of HPNP and BNPP under neutral pH conditions. The catalyst performance is discussed in terms of acceleration over background hydrolysis and effective molarity (EM). The combination of potentiometric acid-base titrations with pH-rate profiles for HPNP and BNPP cleavage in the presence of 2·2HCl additives points to a marked synergic action of an acylguanidine/acylguanidinium catalytic dyad in 2H, via general base-electrophilic bifunctional catalysis. Acceleration factors over background larger than 3 orders of magnitude are obtained. The connection of the guanidine/guanidinium dyad to the calixarene scaffold by means of carbonyl joints has a double advantage: (i) the acidity of the guanidinium moiety is enhanced by the electron-withdrawing carbonyl group and maximum conversion into the catalytically active form 2H occurs at almost neutral pH, lower than the pH needed for the monoprotonated form 1H devoid of carbonyl groups; (ii) the EM value for HPNP cleavage with 2H is definitely higher than that with 1H, suggesting a highly preorganized catalyst that perfectly fits in a strainless ring-shaped transition state in the catalyzed process. DFT calculations also provide useful insights into the reaction mechanisms and transition states.

摘要

冠醚骨架在锥形构象中被封锁,并在上边缘用两个酰基胍基单元进行修饰,可在中性 pH 条件下有效催化 HPNP 和 BNPP 的磷酸二酯键断裂。根据加速背景水解和有效摩尔浓度 (EM),讨论了催化剂的性能。结合外加 2·2HCl 的 HPNP 和 BNPP 断裂的电位酸碱滴定和 pH 速率曲线表明,在 2H 中,酰基胍/酰基胍鎓催化偶联通过一般碱亲电双功能催化,表现出明显的协同作用。获得了大于 3 个数量级的背景加速因子。通过羰基键将胍/胍鎓偶联连接到杯芳烃骨架具有双重优势:(i)胍基部分的酸度通过吸电子羰基增强,并且催化活性形式 2H 的最大转化率在几乎中性 pH 下发生,低于需要无羰基的单质子化形式 1H 的 pH;(ii)用 2H 进行 HPNP 断裂的 EM 值肯定高于用 1H 的 EM 值,表明催化剂高度预组织,在催化过程中完美适应无应变的环形过渡态。DFT 计算还为反应机制和过渡态提供了有用的见解。

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