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Binding specificity and stability of duplexes formed by modified oligonucleotides with a 4096-hexanucleotide microarray

机译:结合特异性和稳定性 修饰寡核苷酸与4096-六核苷酸微阵列形成的双链

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摘要

The binding of oligodeoxynucleotides modified with adenine 2′-O-methyl riboside, 2,6-diaminopurine 2′-O-methyl riboside, cytosine 2′-O-methyl riboside, 2,6-diaminopurine deoxyriboside or 5-bromodeoxyuridine was studied with a microarray containing all possible (4096) polyacrylamide-bound hexadeoxynucleotides (a generic microchip). The generic microchip was manufactured by using reductive immobilization of aminooligonucleotides in the activated copolymer of acrylamide, bis-acrylamide and N-(2,2-dimethoxyethyl) acrylamide. The binding of the fluorescently labeled modified octanucleotides to the array was analyzed with the use of both melting profiles and the fluorescence distribution at selected temperatures. Up to three substitutions of adenosines in the octamer sequence by adenine 2′-O-methyl ribosides (Am), 2,6-diaminopurine 2′-O-methyl ribosides (Dm) or 2,6-diaminopurine deoxyribosides (D) resulted in increased mismatch discrimination measured at the melting temperature of the corresponding perfect duplex. The stability of complexes formed by 2′-O-methyl-adenosine-modified oligodeoxynucleotides was slightly decreased with every additional substitution, yielding ∼4°C of total loss in melting temperature for three modifications, as followed from microchip thermal denaturation experiments. 2,6-Diaminopurine 2′-O-methyl riboside modifications led to considerable duplex stabilization. The cytosine 2′-O-methyl riboside and 5-bromodeoxyuridine modifications generally did not change either duplex stability or mismatch resolution. Denaturation experiments conducted with selected perfect duplexes on microchips and in solution showed similar results on thermal stabilities. Some hybridization artifacts were observed that might indicate the formation of parallel DNA.
机译:研究了用腺嘌呤2'-O-甲基核糖苷,2,6-二氨基嘌呤2'-O-甲基核糖苷,胞嘧啶2'-O-甲基核糖苷,2,6-二氨基嘌呤脱氧核糖苷或5-溴脱氧尿苷修饰的寡脱氧核苷酸的结合。包含所有可能的(4096)聚丙烯酰胺结合的六脱氧核苷酸的微阵列(通用微芯片)。通过将氨基寡核苷酸还原固定在丙烯酰胺,双丙烯酰胺和N-(2,2-二甲氧基乙基)丙烯酰胺的活化共聚物中来制造通用微芯片。通过使用熔解曲线和在选定温度下的荧光分布,分析了荧光标记的修饰八核苷酸与阵列的结合。腺嘌呤2'-O-甲基核糖苷(A m ),2,6-二氨基嘌呤2'-O-甲基核糖苷(D m < )或2,6-二氨基嘌呤脱氧核糖苷(D)导致在相应的完美双链体的解链温度下测得的错配歧视增加。由2'-O-甲基-腺苷修饰的寡脱氧核苷酸形成的复合物的稳定性为 每次替换都会稍微降低,导致〜4°C 进行三个修改后,熔化温度的总损失如下 来自微芯片的热变性实验。 2,6-二氨基嘌呤 2'-O-甲基核糖苷 修改导致相当大的双工稳定性。胞嘧啶2'-O-甲基核糖苷 和5-溴脱氧尿苷修饰通常也不会改变 双工稳定性或不匹配分辨率。变性实验 在微芯片和溶液中使用选定的完美双链进行 在热稳定性方面显示出相似的结果。一些杂交 观察到可能指示平行DNA形成的伪像。

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