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寡核苷酸的末端单共轭和双共轭与 - 十二硼烷:合成和物理化学性质。

Terminal Mono- and Bis-Conjugates of Oligonucleotides with -Dodecaborate: Synthesis and Physico-Chemical Properties.

机构信息

Institute of Chemical Biology and Fundamental Medicine SB RAS, Lavrentiev Ave. 8, 630090 Novosibirsk, Russia.

出版信息

Int J Mol Sci. 2020 Dec 26;22(1):182. doi: 10.3390/ijms22010182.

Abstract

Oligonucleotide conjugates with boron clusters have found applications in different fields of molecular biology, biotechnology, and biomedicine as potential agents for boron neutron capture therapy, siRNA components, and antisense agents. Particularly, the -dodecaborate anion represents a high-boron-containing residue with remarkable chemical stability and low toxicity, and is suitable for the engineering of different constructs for biomedicine and molecular biology. In the present work, we synthesized novel oligonucleotide conjugates of -dodecaborate attached to the 5'-, 3'-, or both terminal positions of DNA, RNA, 2'-O-Me RNA, and 2'-F-Py RNA oligomers. For their synthesis, we employed click reaction with the azido derivative of -dodecaborate. The key physicochemical characteristics of the conjugates have been investigated using high-performance liquid chromatography, gel electrophoresis, UV thermal melting, and circular dichroism spectroscopy. Incorporation of -dodecaborate residues at the 3'-end of all oligomers stabilized their complementary complexes, whereas analogous 5'-modification decreased duplex stability. Two boron clusters attached to the opposite ends of the oligomer only slightly influence the stability of complementary complexes of RNA oligonucleotide and its 2'-O-methyl and 2'-fluoro analogs. On the contrary, the same modification of DNA oligonucleotides significantly destabilized the DNA/DNA duplex but gave a strong stabilization of the duplex with an RNA target. According to circular dichroism spectroscopy results, two terminal -dodecaborate residues cause a prominent structural rearrangement of complementary complexes with a substantial shift from the B-form to the A-form of the double helix. The revealed changes of key characteristics of oligonucleotides caused by incorporation of terminal boron clusters, such as the increase of hydrophobicity, change of duplex stability, and prominent structural changes for DNA conjugates, should be taken into account for the development of antisense oligonucleotides, siRNAs, or aptamers bearing boron clusters. These features may also be used for engineering of developing NA constructs with pre-defined properties.

摘要

具有硼簇的寡核苷酸缀合物在分子生物学、生物技术和生物医学的不同领域得到了应用,作为硼中子俘获治疗、siRNA 成分和反义剂的潜在试剂。特别是,-十二硼酸盐阴离子代表了一种高硼含量的残基,具有显著的化学稳定性和低毒性,适合用于为生物医学和分子生物学设计不同的构建体。在本工作中,我们合成了新型的寡核苷酸缀合物,将-十二硼酸盐附着在 DNA、RNA、2'-O-Me RNA 和 2'-F-Py RNA 寡聚物的 5' -、3' -或两端位置。对于它们的合成,我们使用与 -十二硼酸盐的叠氮衍生物的点击反应。使用高效液相色谱法、凝胶电泳、紫外热融解和圆二色光谱法研究了缀合物的关键物理化学特性。所有寡聚物的 3' -末端的 -十二硼酸盐残基的掺入稳定了它们的互补复合物,而类似的 5' -修饰则降低了双链体的稳定性。寡聚物两端连接的两个硼簇仅略微影响 RNA 寡核苷酸及其 2'-O-甲基和 2'-氟类似物的互补复合物的稳定性。相反,相同的 DNA 寡核苷酸修饰显著破坏了 DNA/DNA 双链体,但对与 RNA 靶标的双链体具有很强的稳定性。根据圆二色光谱学的结果,两个末端的 -十二硼酸盐残基导致互补复合物的显著结构重排,从双螺旋的 B 型转变为 A 型。寡核苷酸的关键特性的变化,如增加疏水性、双链体稳定性的变化和 DNA 缀合物的显著结构变化,这些变化是由末端硼簇的掺入引起的,应考虑到带有硼簇的反义寡核苷酸、siRNA 或适体的开发。这些特性也可用于设计具有预定特性的新型 NA 构建体。

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