Sekharudu C Y, Yathindra N, Sundaralingam M
Department of Chemistry, Ohio State University, Columbus 43210.
J Biomol Struct Dyn. 1993 Oct;11(2):225-44. doi: 10.1080/07391102.1993.10508723.
We have built computer models of triple helical structures with a third poly(dT) strand Hoogsteen base paired to the major groove of a poly(dA).poly(dT) Watson-Crick (WC) base-paired duplex in the canonical A-DNA as well as B-DNA. For the A-DNA form, the sugar-phosphate backbone of the third strand intertwines and clashes with the poly(dA) strand requiring a radical alteration of the duplex to access the hydrogen bonding sites in the major groove. In contrast, when the duplex was in the canonical B-DNA form, the third strand was readily accommodated in the major groove without perturbing the duplex. The triple helical model, with the duplex in the B-DNA form, was equilibrated for 400ps using molecular dynamics simulations including water molecules and counter-ions. During the entire simulations, the deoxyriboses of the adenine strand oscillate between the S-type and E-type conformations. However, 30% of the sugars of the thymine strands-II & III switch to the N-type conformation early in the simulations but return to the S-type conformation after 200ps. In the equilibrium structure, the WC duplex portion of the triplex is unique and its geometry differs from both the A- or B-DNA. the deoxyriboses of the three strands predominantly exhibit S-type conformation. Besides the sugar pucker, the major groove width and the base-tilt are analogous to B-DNA, while the X-displacement and helical twist resemble A-DNA, giving a unique structure to the triplex and the Watson & Crick and Hoogsteen duplexes.
我们构建了三螺旋结构的计算机模型,其中第三条聚(dT)链通过Hoogsteen碱基对与聚(dA)·聚(dT)沃森-克里克(WC)碱基配对双链体的大沟结合,该双链体处于标准A-DNA以及B-DNA构象。对于A-DNA形式,第三条链的糖-磷酸骨架相互缠绕并与聚(dA)链发生碰撞,这需要对双链体进行根本性改变才能接近大沟中的氢键位点。相比之下,当双链体处于标准B-DNA形式时,第三条链很容易容纳在大沟中而不会干扰双链体。使用包括水分子和抗衡离子的分子动力学模拟,对双链体处于B-DNA形式的三螺旋模型进行了400皮秒的平衡。在整个模拟过程中,腺嘌呤链的脱氧核糖在S型和E型构象之间振荡。然而,胸腺嘧啶链-II和III中30%的糖在模拟早期切换到N型构象,但在200皮秒后又回到S型构象。在平衡结构中,三链体的WC双链体部分是独特的,其几何形状不同于A-DNA或B-DNA。三条链的脱氧核糖主要呈现S型构象。除了糖的皱折外,大沟宽度和碱基倾斜类似于B-DNA,而X位移和螺旋扭转类似于A-DNA,赋予三链体以及沃森-克里克和Hoogsteen双链体独特的结构。