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首页> 外文期刊>Nucleic acids research >Fabrication and characterization of RNA aptamer microarrays for the study of protein–aptamer interactions with SPR imaging
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Fabrication and characterization of RNA aptamer microarrays for the study of protein–aptamer interactions with SPR imaging

机译:RNA适体微阵列的制备和表征,用于研究蛋白质-适体与SPR成像的相互作用

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RNA microarrays were created on chemically modified gold surfaces using a novel surface ligation methodology and employed in a series of surface plasmon resonance imaging (SPRI) measurements of DNA–RNA hybridization and RNA aptamer–protein binding. Various unmodified single-stranded RNA (ssRNA) oligonucleotides were ligated onto identical 5′-phosphate-terminated ssDNA microarray elements with a T4 RNA ligase surface reaction. A combination of ex situ polarization modulation FTIR measurements of the RNA monolayer and in situ SPRI measurements of DNA hybridization adsorption onto the surface were used to determine an ssRNA surface density of 4.0 × 1012 molecules/cm2 and a surface ligation efficiency of 85 ± 10%. The surface ligation methodology was then used to create a five-component RNA microarray of potential aptamers for the protein factor IXa (fIXa). The relative surface coverages of the different aptamers were determined through a novel enzymatic method that employed SPRI measurements of a surface RNase H hydrolysis reaction. SPRI measurements were then used to correctly identify the best aptamer to fIXa, which was previously determined from SELEX measurements. A Langmuir adsorption coefficient of 1.6 × 107 M?1 was determined for fIXa adsorption to this aptamer. Single-base variations from this sequence were shown to completely destroy the aptamer–fIXa binding interaction.
机译:RNA微阵列是在化学修饰的金表面上使用新颖的表面连接方法创建的,并用于DNA-RNA杂交和RNA适体-蛋白质结合的一系列表面等离振子共振成像(SPRI)测量。通过T4 RNA连接酶表面反应,将各种未修饰的单链RNA(ssRNA)寡核苷酸连接到相同的5'-磷酸末端的ssDNA微阵列元件上。将RNA单层的异位极化调制FTIR测量与表面上DNA杂交吸附的原位SPRI测量结合使用,确定ssRNA表面密度为4.0×10 12 分子/ cm 2 ,表面连接效率为85±10%。然后使用表面连接方法建立了蛋白质因子IXa(fIXa)潜在适体的五组分RNA微阵列。通过一种新的酶促方法确定不同适体的相对表面覆盖率,该方法采用表面核糖核酸酶H水解反应的SPRI测量。然后,使用SPRI测量值正确识别出fIXa的最佳适体,该适体是先前从SELEX测量中确定的。对于该适体的fIXa吸附,确定的Langmuir吸附系数为1.6×10 7 M Δ1。已显示该序列的单碱基变异完全破坏了适体与fIXa的结合相互作用。

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