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a-环对灵菌红素氧化还原和核酸酶性质的影响:联吡咯部分在氧化性DNA裂解中的重要性。

Influence of the a-ring on the redox and nuclease properties of the prodigiosins: importance of the bipyrrole moiety in oxidative DNA cleavage.

作者信息

Melvin Matt S, Calcutt M Wade, Noftle Ronald E, Manderville Richard A

机构信息

Department of Chemistry, Wake Forest University, Winston-Salem, North Carolina 27109-7486, USA.

出版信息

Chem Res Toxicol. 2002 May;15(5):742-8. doi: 10.1021/tx025508p.

Abstract

Prodigiosin (Prod, 1) is the parent member of a class of polypyrrole natural products that exhibit promising immunosuppressive and cytotoxic activity. They can facilitate copper-promoted oxidative double-strand (ds) DNA cleavage through reductive activation of Cu(II). This is triggered by oxidation of the electron-rich Prod molecule and may provide a basis for the cytotoxicity of the prodigiosins. To gain an understanding of this activity, we prepared several Prod analogues with various A-ring systems to examine their electrochemical properties in acetonitrile (MeCN) as a means to establish a basis for structure-reactivity relationships in copper-promoted nuclease activity. The intact bipyrrole (BP) chromophore is critical for the copper-mediated nuclease properties of the Prods. In fact, simple BP systems are shown to facilitate oxidative single-strand (ss) DNA cleavage. Replacement of the Prod A-pyrrole ring with alternative arenes (phenyl, furan-2-yl, or thiophen-2-yl) inhibits DNA strand scission and raises the half-peak oxidation potential (E(p/2)) of the Prod free base [E(p/2) = 0.44 V vs saturated calomel electrode (SCE) in MeCN] by ca. 200 mV. The same effect was achieved through attachment of an electron-withdrawing group (acetyl) at the 5'-position of the A-pyrrole ring. The structural modifications that inhibit DNA cleavage correlate with known structure-reactivity relationships of Prods against leukemia and melanoma cancer cells. The implications of our findings with regard to the cytotoxicity of the Prods are discussed.

摘要

灵菌红素(Prod,1)是一类聚吡咯天然产物的母体成员,这类天然产物具有良好的免疫抑制和细胞毒性活性。它们可以通过铜(II)的还原活化促进铜介导的氧化双链(ds)DNA裂解。这是由富电子的灵菌红素分子的氧化引发的,可能为灵菌红素的细胞毒性提供基础。为了理解这种活性,我们制备了几种具有不同A环系统的灵菌红素类似物,以研究它们在乙腈(MeCN)中的电化学性质,以此作为建立铜促进的核酸酶活性结构-反应性关系基础的一种手段。完整的联吡咯(BP)发色团对于灵菌红素的铜介导核酸酶性质至关重要。事实上,简单的BP系统被证明可促进氧化单链(ss)DNA裂解。用其他芳烃(苯基、呋喃-2-基或噻吩-2-基)取代灵菌红素的A-吡咯环会抑制DNA链断裂,并使灵菌红素游离碱的半峰氧化电位(E(p/2))[在MeCN中相对于饱和甘汞电极(SCE),E(p/2) = 0.44 V]升高约200 mV。通过在A-吡咯环的5'-位连接一个吸电子基团(乙酰基)也能达到同样的效果。抑制DNA裂解的结构修饰与灵菌红素对白血病和黑色素瘤癌细胞的已知结构-反应性关系相关。我们讨论了这些发现对灵菌红素细胞毒性的影响。

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