Centre of Molecular and Macromolecular Studies, Polish Academy of Sciences, Department of Bioorganic Chemistry, Sienkiewicza 112, 90-363 Łódź, Poland.
Org Biomol Chem. 2019 May 8;17(18):4611-4620. doi: 10.1039/c8ob03112f.
3'-O-(2-Thio-4,4-pentamethylene-1,3,2-oxathiaphospholane) derivatives of 5'-O-DMT-N6-methyl-deoxyadenosine and 5'-O-DMT-N2,N2-dimethyl-O6-diphenylcarbamoyl-deoxyguanosine (OTP-NY, NY = DMT-m6dA or DMT-m,m2dGDPC) were synthesized, resolved onto pure P-diastereomers, and used in P-stereocontrolled synthesis of dinucleoside 3',5,-phosphorothioates NXPST (NX = m6dA or m,m2dG), in which the absolute configuration of the stereogenic phosphorus atom was established enzymatically. Diastereomerically pure OTP-NY and standard OTP-N (N = DMT-dABz or DMT-dGBz,DPC) were used in the synthesis of chimeric RP-stereodefined phosphorothioate oligomers ((RP-PS)-DN(NX)A) with hampered Watson-Crick base pairings. It was found that the m6dA units slightly reduce the thermodynamic stability of antiparallel duplexes formed with RNA and (2'-OMe)-RNA matrices, whereas m,m2dG units prevent their formation. The m6dA units stabilize (by up to 4.5 °C per modified unit) the parallel duplexes formed by (RP-PS)-DN(NX)A with Hoogsteen-paired (2'-OMe)-RNA templates compared to the analogous reference duplex containing only unmodified nucleobases. In contrast, the m,m2dG units destabilize such duplexes by up to 3 °C per modified unit. Both units prevent the formation of the corresponding parallel triplexes.
3'-O-(2-硫代-4,4-戊亚甲基-1,3,2-氧杂硫膦杂环戊烷)衍生物 5'-O-DMT-N6-甲基-脱氧腺苷和 5'-O-DMT-N2,N2-二甲基-O6-二苯基碳酰胺-脱氧鸟苷(OTP-NY,NY = DMT-m6dA 或 DMT-m,m2dGDPC)被合成,并分离为纯 P-非对映异构体,然后用于非对映异构体控制的二核苷酸 3',5'-磷酸硫代酯 NXPST(NX = m6dA 或 m,m2dG)的合成,其中手性磷原子的绝对构型通过酶法确定。非对映异构体纯 OTP-NY 和标准 OTP-N(N = DMT-dABz 或 DMT-dGBz,DPC)用于合成具有受阻沃森-克里克碱基配对的嵌合 RP-立体定义的硫代磷酸寡聚物((RP-PS)-DN(NX)A)。研究发现,m6dA 单元略微降低了与 RNA 和(2'-OMe)-RNA 基质形成的反平行双链体的热力学稳定性,而 m,m2dG 单元则阻止其形成。与仅含有未修饰碱基的类似参考双链体相比,m6dA 单元通过每个修饰单元稳定(高达 4.5°C)由(RP-PS)-DN(NX)A 与 Hoogsteen 配对的(2'-OMe)-RNA 模板形成的平行双链体。相比之下,m,m2dG 单元通过每个修饰单元使这些双链体不稳定高达 3°C。两个单元都阻止了相应的平行三聚体的形成。