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德鲁-迪克森十二聚体中B型和A型构象转变的动力学

Kinetics of the Conformational Transformation between B- and A-Forms in the Drew-Dickerson Dodecamer.

作者信息

Kovaleva Natalya A, Strelnikov Ivan A, Zubova Elena A

机构信息

N.N. Semenov Federal Research Center for Chemical Physics, Russian Academy of Sciences, 4 Kosygin Street, Moscow 119991, Russia.

出版信息

ACS Omega. 2020 Dec 15;5(51):32995-33006. doi: 10.1021/acsomega.0c04247. eCollection 2020 Dec 29.

Abstract

Some DNA sequences in crystals and in complexes with proteins can exist in the forms intermediate between the B- and A-DNA. Based on this, it was implied that the B-to-A transition for any DNA molecule should go through these intermediate forms also in kinetics. More precisely, the helix parameter has to change first, and the molecule should take the E-form. After that, the parameter changes. In the present work, we simulated the kinetics of the B-A transition in the Drew-Dickerson dodecamer, a known B-philic DNA oligomer. We used the "sugar" coarse-grained model that reproduces ribose flexibility, preserves sequence specificity, employs implicit water and explicit ions, and offers the possibility to vary friction. As the control parameter of the transition, we chose the volume available for a counterion and considered the change from a large to a small volume. In the described system, the B-to-A conformational transformation proved to correspond to a first-order phase transition. The molecule behaves like a small cluster in the region of such a transition, jumping between the A- and B-forms in a wide range of available volumes. The viscosity of the solvent does not affect the midpoint of the transition but only the overall mobility of the system. All helix parameters change synchronously on average, we have not observed the sequence " first, later" in kinetics, and the E-DNA is not a necessary step for the transition between the B- and A-forms in the studied system. So, the existence of the intermediate DNA forms requires specific conditions, shifting the common balance of interactions: certain nucleotide sequence in specific solution or/and the interaction with some protein.

摘要

晶体中以及与蛋白质形成复合物时的一些DNA序列能够以介于B型和A型DNA之间的中间形式存在。基于此,有人认为任何DNA分子从B型到A型的转变在动力学上也应经过这些中间形式。更确切地说,螺旋参数必须首先发生变化,分子应转变为E型。之后,参数发生变化。在本研究中,我们模拟了已知的亲B型DNA寡聚体——德鲁-迪克森十二聚体中B - A转变的动力学。我们使用了“糖”粗粒化模型,该模型再现了核糖的柔韧性,保留了序列特异性,采用了隐式水和显式离子,并提供了改变摩擦力的可能性。作为转变的控制参数,我们选择了可供抗衡离子使用的体积,并考虑从大体积到小体积的变化。在所描述的系统中,B型到A型的构象转变被证明对应于一级相变。在这种转变区域,分子的行为类似于一个小聚集体,在很宽的可用体积范围内在A型和B型之间跳跃。溶剂的粘度不影响转变的中点,而只影响系统的整体迁移率。平均而言,所有螺旋参数同步变化,我们在动力学中未观察到“先,后”的顺序,并且在所研究的系统中,E型DNA不是B型和A型之间转变的必要步骤。因此,中间DNA形式的存在需要特定条件,改变相互作用的总体平衡:特定溶液中的特定核苷酸序列或/和与某些蛋白质的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07fe/7774075/6dfee3311188/ao0c04247_0002.jpg

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