Molecular recognition and homochirality preservation of guanine tetrads in the presence of melamine

来源 :纳米研究(英文版) | 被引量 : 0次 | 上传用户:dangerwind
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Molecular recognition between nucleobases plays a crucial role in all kinds of biological processes.However,real-space investigation of the recognition capability of nucleobases in the presence of interfering compounds remains unexplored.Herein,based on the combination of scanning tunneling microscopy imaging and density functional theory modeling,we report the impact of the presence of melamine (M) on the formation and chirality of guanine (G)-tetrads on Au(111).Although M can interact with G by double hydrogen bonding,the Hoogsteen base pairing of G is not compromised,forming identical individual G-tetrads as would have happened without the presence of M.G-tetrads coexist with M on the surface not only in separate domains,but also within the mixture network of G-tetrads and M-dimers.Although the adsorption orientation of G-tetrads in the mixture network diversifies into two distinct angles,all G-tetrads in the network keep the same chirality,emphasizing the high preference of homochirality in such biochemical systems.
其他文献
Nitrogen fixation is a vital process for both nature and industry.Whereas the nitrogenase can reduce nitrogen in ambient environment in nature,the industrialize
背景和目的:帕金森病是一种常见的神经系统变性疾病,严重影响中老年人的健康及生活质量。随着我国人口老龄化的加剧,帕金森病的发病率逐年快速攀升。目前研究发现帕金森病发病
目的 通过测量肩关节盂长短径形态数据,分析数据之间相关性,指导关节盂骨缺损的预估.方法 选取青岛大学解剖室完整成对肩胛骨标本共50对(100例),进行编号后根据左右侧进行分
对学术论文联合发表问题的研究是当前较为新颖的研究方向,而将其视作劳动力知识交互与合作行为,并对其进行刻画可以部分解释知识外部性的微观过程.本文基于长三角25个城市200