Wang Tzu-Pin, Su Yu-Chih, Chen Yi, Severance Scott, Hwang Chi-Ching, Liou Yi-Ming, Lu Chia-Hui, Lin Kun-Liang, Zhu Rui Jing, Wang Eng-Chi
Department of Medicinal and Applied Chemistry, Kaohsiung Medical University Kaohsiung 80708 Taiwan
Kaohsiung Medical University Hospital, Kaohsiung Medical University Kaohsiung 80708 Taiwan.
RSC Adv. 2018 Sep 21;8(57):32775-32793. doi: 10.1039/c8ra05083j. eCollection 2018 Sep 18.
The TW17 ribozyme, a catalytic RNA selected from a pool of artificial RNA, is specific for the Zn-dependent hydrolysis of a phosphorothiolate thiolester bond. Here, we describe the organic synthesis of both guanosine α-thio-monophosphate and the substrates required for selecting and characterizing the TW17 ribozyme, and for deciphering the catalytic mechanism of the ribozyme. By successively substituting the substrate originally conjugated to the RNA pool with structurally modified substrates, we demonstrated that the TW17 ribozyme specifically catalyzes phosphorothiolate thiolester hydrolysis. Metal titration studies of TW17 ribozyme catalysis in the presence of Zn alone, Zn and Mg, and Zn and [Co(NH)] supported our findings that Zn is absolutely required for ribozyme catalysis, and indicated that optimal ribozyme catalysis involves the presence of outer-sphere and one inner-sphere Mg. A survey of the TW17 ribozyme activity at various pHs revealed that the activity of the ribozyme critically depends on the alkaline conditions. Moreover, a GNRA tetraloop-containing ribozyme constructed with active catalysis provided catalysis and multiple substrate turnover efficiencies significantly higher than ribozymes lacking a GNRA tetraloop. This research supports the essential roles of Zn, Mg, and a GNRA tetraloop in modulating the TW17 ribozyme structure for optimal ribozyme catalysis, leading also to the formulation of a proposed reaction mechanism for TW17 ribozyme catalysis.
TW17核酶是一种从人工RNA文库中筛选出的催化性RNA,它对硫代磷酸酯硫酯键的锌依赖性水解具有特异性。在此,我们描述了鸟苷α-硫代单磷酸以及筛选和表征TW17核酶、解读该核酶催化机制所需底物的有机合成方法。通过用结构修饰的底物依次取代最初与RNA文库偶联的底物,我们证明了TW17核酶特异性催化硫代磷酸酯硫酯水解。在仅存在锌、锌和镁以及锌和[Co(NH)]的情况下对TW17核酶催化进行的金属滴定研究支持了我们的发现,即锌是核酶催化绝对必需的,并表明最佳的核酶催化需要存在外层和一个内层镁。对TW17核酶在不同pH值下活性的研究表明,核酶的活性关键取决于碱性条件。此外,构建的含有GNRA四环且具有活性催化作用的核酶,其催化作用和多底物周转效率显著高于缺乏GNRA四环的核酶。这项研究支持了锌、镁和GNRA四环在调节TW17核酶结构以实现最佳核酶催化方面的重要作用,也由此形成了TW17核酶催化的拟议反应机制。