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DNA双链中一个含五个腺嘌呤的凸起环的溶液结构。

Solution structure of a five-adenine bulge loop within a DNA duplex.

作者信息

Dornberger U, Hillisch A, Gollmick F A, Fritzsche H, Diekmann S

机构信息

Institut für Molekularbiologie, Friedrich-Schiller-Universität, Winzerlaer Strasse 10, D-07745 Jena and Institut für molekulare Biotechnologie, Beutenbergstrasse 11, D-07745 Jena, Germany.

出版信息

Biochemistry. 1999 Sep 28;38(39):12860-8. doi: 10.1021/bi9906874.

Abstract

The three-dimensional solution structure of a DNA molecule of the sequence 5'-d(GCATCGAAAAAGCTACG)-3' paired with 5'-d(CGTAGCCGATGC)-3' containing a five-adenine bulge loop (dA(5)-bulge) between two double helical stems was determined by 2D (1)H and (31)P NMR, infrared, and Raman spectroscopy. The DNA in both stems adopt a classical B-form double helical structure with Watson-Crick base pairing and C2'-endo sugar conformation. In addition, the two dG/dC base pairs framing the dA(5)-bulge loop are formed and are stable at least up to 30 degrees C. The five adenine bases of the bulge loop are localized at intrahelical positions within the double helical stems. Stacking on the double helical stem is continued for the first four 5'-adenines in the bulge loop. The total rise (the height) of these four stacked adenines roughly equals the diameter of the double helical stem. The stacking interactions are broken between the last of these four 5'-adenines and the fifth loop adenine at the 3'-end. This 3'-adenine partially stacks on the other stem. The angle between the base planes of the two nonstacking adenines (A10 and A11) in the bulge loop reflects the kinking angle of the global DNA structure. The neighboring cytosines opposite the dA(5)-bulge (being parts of the bulge flanking base pairs) do not stack on one another. This disruption of stacking is characterized by a partial shearing of these bases, such that certain sequential NOEs for this base step are preserved. In the base step opposite the loop, an extraordinary hydrogen bond is observed between the phosphate backbone of the 5'-dC and the amino proton of the 3'-dC in about two-thirds of the conformers. This hydrogen bond probably contributes to stabilizing the global DNA structure. The dA(5)-bulge induces a local kink into the DNA molecule of about 73 degrees (+/-11 degrees ). This kinking angle and the mutual orientation of the two double helical stems agree well with results from fluorescence resonance energy transfer measurements of single- and double-bulge DNA molecules.

摘要

通过二维(1)H和(31)P核磁共振、红外光谱和拉曼光谱,确定了序列为5'-d(GCATCGAAAAAGCTACG)-3'与5'-d(CGTAGCCGATGC)-3'配对的DNA分子的三维溶液结构,该分子在两个双螺旋茎之间含有一个五个腺嘌呤的凸起环(dA(5)-凸起)。两个茎中的DNA均采用经典的B型双螺旋结构,具有沃森-克里克碱基对和C2'-内向糖构象。此外,构成dA(5)-凸起环的两个dG/dC碱基对形成且至少在30摄氏度时稳定。凸起环的五个腺嘌呤碱基位于双螺旋茎内的螺旋内位置。凸起环中前四个5'-腺嘌呤继续与双螺旋茎堆积。这四个堆积腺嘌呤的总上升高度(高度)大致等于双螺旋茎的直径。这四个5'-腺嘌呤中的最后一个与3'-端的第五个环腺嘌呤之间的堆积相互作用被打破。这个3'-腺嘌呤部分地与另一个茎堆积。凸起环中两个非堆积腺嘌呤(A10和A11)的碱基平面之间的角度反映了整体DNA结构的扭结角度。与dA(5)-凸起相对的相邻胞嘧啶(是凸起侧翼碱基对的一部分)彼此不堆积。这种堆积的破坏表现为这些碱基的部分剪切,使得该碱基步的某些顺序NOE得以保留。在与环相对的碱基步中,在大约三分之二的构象中,观察到5'-dC的磷酸骨架与3'-dC的氨基质子之间存在异常氢键。这种氢键可能有助于稳定整体DNA结构。dA(5)-凸起在DNA分子中诱导了约73度(±11度)的局部扭结。这个扭结角度以及两个双螺旋茎的相互取向与单凸起和双凸起DNA分子的荧光共振能量转移测量结果非常吻合。

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