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肌强直性营养不良 2 型 RNA 的结构和设计的降低毒性的小分子。

Structure of the myotonic dystrophy type 2 RNA and designed small molecules that reduce toxicity.

机构信息

Department of Chemistry, The Scripps Research Institute, 130 Scripps Way, Jupiter, FL 33458.

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL 60208-3113.

出版信息

ACS Chem Biol. 2014 Feb 21;9(2):538-550. doi: 10.1021/cb4007387. Epub 2013 Dec 16.

Abstract

Myotonic dystrophy type 2 (DM2) is an incurable neuromuscular disorder caused by a r(CCUG) expansion (r(CCUG)(exp)) that folds into an extended hairpin with periodically repeating 2×2 nucleotide internal loops (5'CCUG/3'GUCC). We designed multivalent compounds that improve DM2-associated defects using information about RNA-small molecule interactions. We also report the first crystal structure of r(CCUG) repeats refined to 2.35 Å. Structural analysis of the three 5'CCUG/3'GUCC repeat internal loops (L) reveals that the CU pairs in L1 are each stabilized by one hydrogen bond and a water-mediated hydrogen bond, while CU pairs in L2 and L3 are stabilized by two hydrogen bonds. Molecular dynamics (MD) simulations reveal that the CU pairs are dynamic and stabilized by Na(+) and water molecules. MD simulations of the binding of the small molecule to r(CCUG) repeats reveal that the lowest free energy binding mode occurs via the major groove, in which one C residue is unstacked and the cross-strand nucleotides are displaced. Moreover, we modeled the binding of our dimeric compound to two 5'CCUG/3'GUCC motifs, which shows that the scaffold on which the RNA-binding modules are displayed provides an optimal distance to span two adjacent loops.

摘要

肌强直性营养不良 2 型(DM2)是一种不可治愈的神经肌肉疾病,由 r(CCUG) 扩展(r(CCUG)(exp))引起,该扩展折叠成具有周期性重复 2×2 核苷酸内部环(5'CCUG/3'GUCC)的扩展发夹。我们设计了多价化合物,利用有关 RNA-小分子相互作用的信息来改善与 DM2 相关的缺陷。我们还报告了 r(CCUG) 重复的第一个晶体结构,其精修至 2.35Å。对三个 5'CCUG/3'GUCC 重复内部环(L)的结构分析表明,L1 中的 CU 对各由一个氢键和一个水介导的氢键稳定,而 L2 和 L3 中的 CU 对由两个氢键稳定。分子动力学(MD)模拟表明,CU 对是动态的,并由 Na(+)和水分子稳定。小分子与 r(CCUG) 重复结合的 MD 模拟表明,最低自由能结合模式通过主沟发生,其中一个 C 残基未堆积,跨链核苷酸发生位移。此外,我们对我们的二聚化合物与两个 5'CCUG/3'GUCC 基序的结合进行了建模,这表明展示 RNA 结合模块的支架提供了跨越两个相邻环的最佳距离。

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