首页> 外文期刊>Journal of the American Chemical Society >EFFICIENT CLEAVAGE OF DNA BY IRON(III) TRIAZACYCLONONANE DERIVATIVES
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EFFICIENT CLEAVAGE OF DNA BY IRON(III) TRIAZACYCLONONANE DERIVATIVES

机译:铁(III)三氮杂苯并呋喃酮衍生物对DNA的有效切割

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Compounds based on (1,4,7-trimethyl-1,4,7-triazacyclononane)iron(III) chloride have been synthesized. Exceedingly low concentrations (approximately 0.5 mu M) of these reagents are required to effect single-stranded oxidative cleavage of plasmid DNA at physiological pH and temperature. Approximately 3 breaks per plasmid per micromolar of reagent occur in 1 h at 37 degrees C. The addition of dithiothreitol dramatically increased the effectiveness of these compounds; only 0.05 mu M of reagent was required for DNA cleavage. When psoralen (a DNA photocross-linking agent) was attached to the iron complex, irradiation further increased the cleavage efficiency. The DNA cleaving abilities rival those of the cytotoxic antitumor drug bleomycin. Unlike bleomycin, the synthetic agents cut DNA with little sequence specificity. The lability of the chloride ligands, the hard acid character of iron(III), and the absence of base specificity in the DNA cleaving reaction suggest that a cationic iron species binds to the phosphate backbone of DNA. The reaction's dependence on reductants and dissolved oxygen suggests that it proceeds by a redox mechanism. Crystals of (1,4,7-trimethyl-1,4,7-triazacyclononane)FeCl3) (L'FeCl3) belong to the monoclinic space group P2(1)/c, with a = 12.321(2)Angstrom, b = 7.3220(10) Angstrom, c = 15.903(3) Angstrom, V = 1434.7(5) Angstrom(3), and Z = 4 at 293 K. Refinement of 145 least squares parameters for 2613 independent reflections with F > 4.0 sigma(F) converged to R = 3.43% and R(W) = 6.45%. The coordination geometry around iron(III) approximates a trigonally distorted octahedron. The N-Fe-N bond angles (77.8 degrees-78.8 degrees) are compressed, while the Cl-Fe-Cl angles (96.7 degrees-97.0 degrees) are expanded from the octahedral value. [References: 67]
机译:已经合成了基于(1,4,7-三甲基-1,4,7-三氮杂环壬烷)氯化铁(III)的化合物。为了在生理pH和温度下进行质粒DNA的单链氧化裂解,需要这些试剂的浓度极低(约0.5μM)。在37摄氏度下1小时内,每质粒每微摩尔试剂大约发生3次断裂。二硫苏糖醇的添加显着提高了这些化合物的效力。进行DNA切割仅需要0.05μM的试剂。当补骨脂素(一种DNA光交联剂)附着在铁络合物上时,辐照进一步提高了裂解效率。 DNA裂解能力可与细胞毒性抗肿瘤药博来霉素媲美。与博来霉素不同,合成试剂切割的DNA具有很少的序列特异性。氯化物配体的不稳定性,铁(III)的硬酸特性以及DNA裂解反应中没有碱基特异性表明,阳离子铁与DNA的磷酸骨架结合。该反应对还原剂和溶解氧的依赖性表明它是通过氧化还原机理进行的。 (1,4,7-三甲基-1,4,7-三氮杂环壬烷)FeCl3)(L'FeCl3)晶体属于单斜空间群P2(1)/ c,a = 12.321(2)埃,b = 7.3220(10)埃,c = 15.903(3)埃,V = 1434.7(5)埃(3),Z = 4(在293 K处)。对于F> 4.0 sigma(F)的2613个独立反射优化了145个最小二乘参数)收敛到R = 3.43%和R(W)= 6.45%。铁(III)周围的配位几何近似于三角变形的八面体。 N-Fe-N键角(77.8度至78.8度)被压缩,而Cl-Fe-Cl角(96.7度至97.0度)从八面体值扩展。 [参考:67]

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