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一种与腺苷 - 腺苷DNA错配结合的庞大铑配合物:金属插入结合模式的总体结构。

A bulky rhodium complex bound to an adenosine-adenosine DNA mismatch: general architecture of the metalloinsertion binding mode.

作者信息

Zeglis Brian M, Pierre Valérie C, Kaiser Jens T, Barton Jacqueline K

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.

出版信息

Biochemistry. 2009 May 26;48(20):4247-53. doi: 10.1021/bi900194e.

Abstract

Two crystal structures of Delta-Rh(bpy)(2)(chrysi)(3+) (chrysi is 5,6-chrysenequinone diimine) bound to the oligonucleotide duplex 5'-CGGAAATTACCG-3' containing two adenosine-adenosine mismatches (italics) through metalloinsertion were determined. Diffraction quality crystals with two different space groups (P3(2)21 and P4(3)2(1)2) were obtained under very similar crystallization conditions. In both structures, the bulky rhodium complex inserts into the two mismatched sites from the minor groove side, ejecting the mismatched bases into the major groove. The conformational changes are localized to the mismatched site; the metal complex replaces the mismatched base pair without an increase in base pair rise. The expansive metal complex is accommodated in the duplex by a slight opening in the phosphodiester backbone; all sugars retain a C2'-endo puckering, and flanking base pairs neither stretch nor shear. The structures differ, however, in that in one of the structures, an additional metal complex is bound by intercalation from the major groove at the central 5'-AT-3' step. We conclude that this additional metal complex is intercalated into this central step because of crystal packing forces. The structures described here of Delta-Rh(bpy)(2)(chrysi)(3+) bound to thermodynamically destabilized AA mismatches share critical features with binding by metalloinsertion in two other oligonucleotides containing different single-base mismatches. These results underscore the generality of metalloinsertion as a new mode of noncovalent binding by small molecules with a DNA duplex.

摘要

测定了通过金属插入作用与含有两个腺苷 - 腺苷错配(斜体)的寡核苷酸双链体5'-CGGAAATTACCG-3'结合的Δ-Rh(bpy)(2)(chrysi)(3+)(chrysi为5,6 - 苯并菲醌二亚胺)的两种晶体结构。在非常相似的结晶条件下获得了具有两种不同空间群(P3(2)21和P4(3)2(1)2)的衍射质量晶体。在这两种结构中,庞大的铑配合物从小沟侧插入到两个错配位点,将错配碱基排入大沟。构象变化局限于错配位点;金属配合物取代错配碱基对而碱基对上升没有增加。膨胀的金属配合物通过磷酸二酯主链的轻微开口容纳在双链体中;所有糖都保持C2'-内式褶皱,侧翼碱基对既不伸展也不剪切。然而,这两种结构的不同之处在于,在其中一种结构中,一个额外的金属配合物通过从大沟在中央5'-AT-3'步处插入而结合。我们得出结论,这个额外的金属配合物由于晶体堆积力而插入到这个中央步中。这里描述的与热力学不稳定的AA错配结合的Δ-Rh(bpy)(2)(chrysi)(3+)的结构与通过金属插入作用与另外两种含有不同单碱基错配的寡核苷酸结合具有关键特征。这些结果强调了金属插入作为小分子与DNA双链体非共价结合新模式的普遍性。

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