首页> 美国卫生研究院文献>Nucleic Acids Research >Crystal structure of 9-amino-N-2-(4-morpholinyl)ethyl-4-acridinecarboxamide bound to d(CGTACG)2: implications for structure–activity relationships of acridinecarboxamide topoisomerase poisons
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Crystal structure of 9-amino-N-2-(4-morpholinyl)ethyl-4-acridinecarboxamide bound to d(CGTACG)2: implications for structure–activity relationships of acridinecarboxamide topoisomerase poisons

机译:与d(CGTACG)2结合的9-氨基-N- 2-(4-吗啉基)乙基 -4-ac啶羧酰胺的晶体结构:对cr啶羧酰胺拓扑异构酶毒物的构效关系的影响

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摘要

The structure of the complex formed between d(CGTACG)2 and 9-amino-N-[2-(4-morpholinyl)ethyl]-4-acridinecarboxamide, an inactive derivative of the antitumour agents N-[2-(dimethylamino)ethyl]acridine-4-carboxamide (DACA) and 9-amino-DACA, has been solved to a resolution of 1.8 Å using X-ray crystallography. The complex crystallises in the space group P64 and the final structure has an overall R factor of 21.9%. A drug molecule intercalates between each of the CpG dinucleotide steps with its side chain lying in the major groove, and its protonated morpholino nitrogen partially occupying positions close to the N7 and O6 atoms of guanine G2. The morpholino group is disordered, the major conformer adopting a twisted boat conformation that makes van der Waals contact with the O4 oxygen of thymine T3. A water molecule forms bridging hydrogen bonds between the 4-carboxamide NH and the phosphate group of guanine G2. Sugar rings are found in alternating C3′-exo/C2′-endo conformations except for cytosine C1 which is C3′-endo. Intercalation perturbs helix winding throughout the hexanucleotide compared with B-DNA, steps 1 and 2 being unwound by 10 and 8°, respectively, while the central TpA step is overwound by 11°. An additional drug molecule lies at the end of each DNA helix linking it to the next duplex to form a continuously stacked structure. The protonated morpholino nitrogen of this ‘end-stacked’ drug hydrogen bonds to the N7 atom of guanine G6, and its conformationally disordered morpholino ring forms a C–H···O hydrogen bond with the guanine O6 oxygen. In both drug molecules the 4-carboxamide group is internally hydrogen bonded to the protonated N10 atom of the acridine ring. We discuss our findings with respect to the potential role played by the interaction of the drug side chain and the topoisomerase II protein in the poisoning of topoisomerase activity by the acridinecarboxamides.
机译:d(CGTACG)2与9-氨基-N- [2-(4-吗啉基)乙基] -4-ac啶羧酰胺(一种抗肿瘤剂N- [2-(二甲基氨基)乙基)的失活衍生物形成的络合物的结构使用X射线晶体学分析已确定] ac啶-4-甲酰胺(DACA)和9-氨基-DACA的分辨率为1.8。该复合物在空间群P64中结晶,最终结构的总R因子为21.9%。药物分子插在每个CpG二核苷酸步骤之间,其侧链位于主要凹槽中,质子化的吗啉代氮部分占据接近鸟嘌呤G2的N7和O6原子的位置。吗啉代基团是无序的,主要构象异构体采用扭曲的船形构象,使范德华斯与胸腺嘧啶T3的O4氧接触。水分子在4-羧酰胺NH和鸟嘌呤G2的磷酸基团之间形成桥连氢键。除了胞嘧啶C1是C3'-endo外,糖环还以交替的C3'-exo / C2'-endo构象存在。与B-DNA相比,插层干扰了整个六核苷酸的螺旋缠绕,步骤1和步骤2分别解开了10和8°,而中心TpA步骤被解开了11°。每个DNA螺旋的末端都有一个附加的药物分子,将其与下一个双链体相连,形成一个连续堆叠的结构。该“末端堆积”药物氢的质子化吗啉代氮与鸟嘌呤G6的N7原子键合,其构象无序的吗啉代环与鸟嘌呤O6氧形成C–H···O氢键。在两个药物分子中,4-羧酰胺基团内部氢键合到a啶环的质子化N10原子上。我们讨论有关药物侧链和拓扑异构酶II蛋白相互作用在played啶羧酰胺对拓扑异构酶活性中毒中发挥的潜在作用的发现。

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