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单分子研究揭示 DNA 酶的固有构象动力学。

Single-Molecule Study of DNAzyme Reveals Its Intrinsic Conformational Dynamics.

机构信息

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325001, China.

Wenzhou-Kean University, Wenzhou 325060, China.

出版信息

Int J Mol Sci. 2023 Jan 7;24(2):1212. doi: 10.3390/ijms24021212.

Abstract

DNAzyme is a class of DNA molecules that can perform catalytic functions with high selectivity towards specific metal ions. Due to its potential applications for biosensors and medical therapeutics, DNAzyme has been extensively studied to characterize the relationships between its biochemical properties and functions. Similar to protein enzymes and ribozymes, DNAzymes have been found to undergo conformational changes in a metal-ion-dependent manner for catalysis. Despite the important role the conformation plays in the catalysis process, such structural and dynamic information might not be revealed by conventional approaches. Here, by using the single-molecule fluorescence resonance energy transfer (smFRET) technique, we were able to investigate the detailed conformational dynamics of a uranyl-specific DNAzyme 39E. We observed conformation switches of 39E to a folded state with the addition of Mg and to an extended state with the addition of UO. Furthermore, 39E can switch to a more compact configuration with or without divalent metal ions. Our findings reveal that 39E can undergo conformational changes spontaneously between different configurations.

摘要

DNA 酶是一类具有高度选择性的 DNA 分子,可针对特定的金属离子进行催化功能。由于其在生物传感器和医学治疗方面的潜在应用,DNA 酶已被广泛研究,以表征其生化特性和功能之间的关系。与蛋白质酶和核酶类似,已经发现 DNA 酶在金属离子依赖性催化过程中发生构象变化。尽管构象在催化过程中起着重要作用,但传统方法可能无法揭示这种结构和动态信息。在这里,我们使用单分子荧光共振能量转移 (smFRET) 技术,能够研究铀特异性 DNA 酶 39E 的详细构象动力学。我们观察到 39E 在加入 Mg 时会发生折叠构象转变,在加入 UO 时会发生伸展构象转变。此外,39E 可以在有无二价金属离子的情况下切换到更紧凑的构象。我们的发现表明,39E 可以在不同构象之间自发地发生构象变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93be/9864658/b8b69344f89b/ijms-24-01212-g001.jpg

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