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一种用于筛选RNA内部环-配体相互作用的小分子微阵列平台。

A small molecule microarray platform to select RNA internal loop-ligand interactions.

作者信息

Childs-Disney Jessica L, Wu Meilan, Pushechnikov Alexei, Aminova Olga, Disney Matthew D

机构信息

Department of Chemistry and Center of Excellence in Bioinformatics and Life Sciences, University at Buffalo, 657 Natural Sciences Complex, Buffalo, New York 14260, USA.

出版信息

ACS Chem Biol. 2007 Nov 20;2(11):745-54. doi: 10.1021/cb700174r. Epub 2007 Nov 2.

Abstract

Herein, we report the development of a microarray platform to select RNA motif-ligand interactions that allows simultaneous screening of both RNA and chemical space. We used this platform to identify the RNA internal loops that bind 6'- N-5-hexynoate kanamycin A ( 1). Selected internal loops that bind 1 were studied in detail and commonly display an adenine across from a cytosine independent of the size of the loop. Additional preferences are also observed. For 3 x 3 nucleotide loops, there is a preference for purines, and for 2 x 2 nucleotide loops there is a preference for pyrimidines neighbored by an adenine across from a cytosine. This technique has several advantageous features for selecting RNA motif-ligand interactions: (1) higher affinity RNA motif-ligand interactions are identified by harvesting bound RNAs from lower ligand loadings; (2) bound RNAs are harvested from the array via gel extraction, mitigating kinetic biases in selections; and (3) multiple selections are completed on a single array surface. To further demonstrate that multiple selections can be completed in parallel on the same array surface, we selected the RNA internal loops from a 4096-member RNA internal loop library that bound a four-member aminoglycoside library. These experiments probed 16,384 (4 aminoglycoside x 4096-member RNA library) interactions in a single experiment. These studies allow for parallel screening of both chemical and RNA space to improve our understanding of RNA-ligand interactions. This information may facilitate the rational and modular design of small molecules targeting RNA.

摘要

在此,我们报告了一种微阵列平台的开发,该平台用于选择RNA基序-配体相互作用,能够同时筛选RNA和化学空间。我们使用该平台鉴定了与6'-N-5-己炔酸卡那霉素A(1)结合的RNA内环。对结合1的选定内环进行了详细研究,发现通常在胞嘧啶对面有一个腺嘌呤,与环的大小无关。还观察到其他偏好。对于3×3核苷酸环,偏好嘌呤;对于2×2核苷酸环,偏好与胞嘧啶对面的腺嘌呤相邻的嘧啶。该技术在选择RNA基序-配体相互作用方面具有几个有利特征:(1)通过从较低配体负载中收获结合的RNA来鉴定更高亲和力的RNA基序-配体相互作用;(2)通过凝胶提取从阵列中收获结合的RNA,减轻选择中的动力学偏差;(3)在单个阵列表面上完成多次选择。为了进一步证明可以在同一阵列表面上并行完成多次选择,我们从一个4096成员的RNA内环文库中选择了与一个四成员氨基糖苷文库结合的RNA内环。这些实验在一次实验中探测了16384种(4种氨基糖苷×4096成员RNA文库)相互作用。这些研究允许对化学和RNA空间进行并行筛选,以增进我们对RNA-配体相互作用的理解。这些信息可能有助于合理且模块化地设计靶向RNA的小分子。

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