...
首页> 外文期刊>Chemical science >Investigation and improvement of catalytic activity of G-quadruplex/hemin DNAzymes using designed terminal G-tetrads with deoxyadenosine caps
【24h】

Investigation and improvement of catalytic activity of G-quadruplex/hemin DNAzymes using designed terminal G-tetrads with deoxyadenosine caps

机译:使用设计的末端G-Tetrads用脱氧腺苷帽的设计终端G-四胞嘧啶催化活性的研究及改进

获取原文
   

获取外文期刊封面封底 >>

       

摘要

It is generally acknowledged that G-quadruplexes (G4s) acquire peroxidase activity upon interaction with hemin. Hemin has been demonstrated to bind selectively to the 3′-terminal G-tetrad of parallel G4s via end-stacking; however, the relationships between different terminal G-tetrads and the catalytic functions of G4/hemin DNAzymes are not fully understood. Herein, the oligonucleotide d(AGGGGA) and its three analogues, d(AG ~(Br) G ~(Br) GGA), d(AG ~(Br) GGG ~(Br) A) and d(AG ~(Br) GG ~(Br) GA) (G ~(Br) indicates 8-bromo-2′-deoxyguanosine), were designed. These oligonucleotides form three parallel G4s and one antiparallel G4 without loop regions. The scaffolds had terminal G-tetrads that were either anti -deoxyguanosines ( anti -dGs) or syn -deoxyguanosines ( syn -dGs) at different proportions. The results showed that the parallel G4 DNAzymes exhibited 2 to 5-fold higher peroxidase activities than the antiparallel G4 DNAzyme, which is due to the absence of the 3′-terminal G-tetrad in the antiparallel G4. Furthermore, the 3′-terminal G-tetrad consisting of four anti -dGs in parallel G4s was more energetically favorable and thus more preferable for hemin stacking compared with that consisting of four syn -dGs. We further investigated the influence of 3′ and 5′ deoxyadenosine (dA) caps on the enzymatic performance by adding 3′-3′ or 5′-5′ phosphodiester bonds to AG _(4) A. Our data demonstrated that 3′ dA caps are versatile residues in promoting the interaction of G4s with hemin. Thus, by increasing the number of 3′ dA caps, the DNAzyme of 3′A5′-5′GG3′-3′GG5′-5′A3′ with two 5′-terminal G-tetrads can exhibit significantly high catalytic activity, which is comparable to that of 5′A3′-3′GG5′-5′GG3′-3′A5′ with two 3′-terminal G-tetrads. This study may provide insights into the catalytic mechanism of G4-based DNAzymes and strategies for promoting their catalytic activities.
机译:通常公认,G-四边形(G4s)在与血红素相互作用时获得过氧化物酶活性。已经证明血红素通过终端堆叠选择性地与平行G4s的3'-端子G-Tetrad结合;然而,不完全理解不同末端G-四胞胎和G4 /血红素DNAzymes的催化功能之间的关系。在此,寡核苷酸D(AgGGGA)及其三种类似物,D(Ag〜(Br)G〜(Br)GGA),D(Ag〜(Br)Ggg〜(Br)a)和D(Ag〜(Br) GG〜(BR)GA)(G〜(BR)表示8-溴-2'-脱氧核苷酸)。这些寡核苷酸形成三个平行的G4s和一个反平行的G4,没有回路区域。支架的末端G-Tetrads在不同比例下具有抗氧氧核(抗-dgs)或Syn -deoxyguanines(Syn -dgs)。结果表明,平行的G4 dnazymes表现出比反平行的G4 dnazyme更高的过氧化物酶活性表现出2至5倍,这是由于在反平行G4中没有3'-末端G-四锥体。此外,由一个平行G4s中的四个抗-dg组成的3'-末端G-TETRAd在比四个SYN -DG组成的那个组成的组成的比较中更具能力良好,因此更优选HEMIN堆叠。我们进一步研究了3'和5'DoOxyadenosine(DA)帽对酶促性能的影响,通过将3'-3'或5'-5'磷酸二磷酸酯键加入Ag _(4)A.我们的数据表明3'DA帽是促进G4s与血红素的相互作用的通用残留物。因此,通过增加3'Da-5'GG3'-3'GG5'-5'-5'-5'3'的二氮杂体,具有两个5'-末端G-Tetrads可以表现出显着高的催化活性,这与5'A3'-3'GG5'-5'GG3'-3'-3'A5'的相当,具有两个3'-末端G-Tetrads。该研究可以提供进入G4基二氮杂体的催化机制和促进催化活性的策略的见解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号