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Relative Strength of Noncovalent Interactions and Covalent Backbone Bonds in Gaseous RNA-Peptide Complexes

机译:非共价相互作用和共价骨干键在气态RNA肽复合物中的相对强度

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Interactions of ribonucleic acids (RNA) with basic ligands such as proteins or aminoglycosides play a key role in fundamental biological processes. Native top-down mass spectrometry (MS) has recently been extended to binding site mapping of RNA-ligand interactions by collisionally activated dissociation, without the need for laborious sample preparation procedures. The technique relies on the preservation of noncovalent interactions at energies that are sufficiently high to cause RNA backbone cleavage. In this study, we address the question of how many and what types of noncovalent interactions allow for binding site mapping by top-down MS. We show that proton transfer from protonated ligand to deprotonated RNA within salt bridges initiates loss of the ligand, but that proton transfer becomes energetically unfavorable in the presence of additional hydrogen bonds such that the noncovalent interactions remain stronger than the covalent RNA backbone bonds.
机译:核糖核酸(RNA)与碱性配体如蛋白质或氨基糖苷的相互作用在基本的生物过程中起着关键作用。 最近,本机自上而下的质谱(MS)已经扩展到RNA-配体相互作用的结合位点映射,通过牢固的活化的解离,而不需要进行费力的样品制备程序。 该技术依赖于保存在足够高的能量的非共价相互作用以引起RNA骨干裂解。 在这项研究中,我们解决了多少和任何类型的非共价相互作用的问题允许通过自上而下的MS结合网站映射。 我们表明,来自质子化配体的质子转移到盐桥内的脱质RNA引发了配体的损失,但是质子转移在额外的氢键存在下能够大致不利,使得非共价相互作用仍然比共价RNA主骨键更强。

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