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首页> 外文期刊>Nucleosides, nucleotides and nucleic acids >Site specific incorporation of 6-azauridine into the genomic HDV ribozyme active site.
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Site specific incorporation of 6-azauridine into the genomic HDV ribozyme active site.

机译:位点特异地将6-氮杂尿苷掺入基因组HDV核酶活性位点。

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The HDV ribozyme is proposed to catalyze its self cleavage reaction by a proton transfer mechanism wherein the N3 of its C75 acts as a general acid. The C75 to U mutation, which raises the N3 pKa from about 4 to almost 10. abolishes all enzymatic activity. To test if a U analogue with a neutral pKa can restore ribozyme function we incorporated 6-azauridine (n6U), a uridine analogue with histidine-like N3 pKa. into the genomic HDV ribozyme active site by 2'-O-ACE oligoribonucleotide protection chemistry. The resulting ribozymes were analyzed for their ability to undergo the HDV ribozyme cis-cleavage reaction. Incorporation of n6U at nucleotide position 75 did not restore ribozyme function compared to the U75 mutant. This suggests that the HDV ribozyme reaction mechanism involves more than positioning of a neutral nucleobase at the active site and implies that the exocyclic amino group of C75 participates in establishing the proper active site fold.
机译:提出HDV核酶通过质子转移机制催化其自身裂解反应,其中C75的N3充当一般酸。从C75到U的突变将N3 pKa从大约4提高到几乎10。这消除了所有酶的活性。为了测试具有中性pKa的U类似物是否可以恢复核酶功能,我们引入了6-氮杂尿苷(n6U),尿苷类似物与组氨酸样N3 pKa。通过2'-O-ACE寡核糖核苷酸保护化学将其导入基因组HDV核酶活性位点。分析所得核酶进行HDV核酶顺式裂解反应的能力。与U75突变体相比,在核苷酸75位上掺入n6U不能恢复核酶功能。这表明,HDV核酶反应机制涉及的不仅仅是在活性位点定位中性核碱基,而且暗示C75的环外氨基参与建立适当的活性位点折叠。

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