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非嵌入型氯丙嗪分子对DNA的光加成作用。

Photoaddition to DNA by nonintercalated chlorpromazine molecules.

作者信息

Kochevar I E, Garcia C, Geacintov N E

机构信息

Wellman Laboratories of Photomedicine, Department of Dermatology, Massachusetts General Hospital, Harvard Medical School, Boston 02114, USA.

出版信息

Photochem Photobiol. 1998 Nov;68(5):692-7.

PMID:9825699
Abstract

Chlorpromazine (CPZ) forms photoadducts with DNA and photosensitizes DNA strand breaks. These reactions may be responsible for the reported photomutagenicity of CPZ and for the well-known cutaneous and ocular phototoxicity associated with this drug. We have investigated whether CPZ molecules that are intercalated between base pairs in double-stranded (ds) DNA are the absorbing species for the photoaddition reaction. Quenching of CPZ fluorescence by ds-DNA gave nonlinear Stern-Volmer plots, indicating that more than one type of complex is formed. Linear dichroism spectra of CPZ in the presence of ds-DNA showed a minimum at 345 nm, indicating that the absorption maxima of intercalation complex(es) are red-shifted compared to the absorption maximum of free CPZ at 307 nm. The sum of the absorption of all CPZ complexes with ds-DNA, obtained from dialysis experiments, was broadened and maximized at about 315 nm, indicating that complexes not involving intercalation dominate the absorption spectrum at lambda < 350 nm. The wavelength dependence for covalent binding of CPZ to DNA was determined by irradiating 3H-CPZ in the presence of ds-DNA at 310, 322, 334, 346, 358 and 370 nm. The resulting spectrum correlated closely with the absorption spectrum of nonintercalated CPZ rather than with the spectrum of intercalated CPZ, indicating that the latter species is not the chromophore for the photoaddition reaction.

摘要

氯丙嗪(CPZ)与DNA形成光加合物并使DNA链断裂产生光致敏作用。这些反应可能是CPZ所报道的光致突变性以及与该药物相关的众所周知的皮肤和眼部光毒性的原因。我们研究了双链(ds)DNA中插入碱基对之间的CPZ分子是否是光加成反应的吸收物种。ds-DNA对CPZ荧光的猝灭给出非线性的斯特恩-沃尔默图,表明形成了不止一种类型的复合物。ds-DNA存在下CPZ的线性二色性光谱在345nm处出现最小值,表明插入复合物的吸收最大值相对于游离CPZ在307nm处的吸收最大值发生了红移。通过透析实验获得的所有CPZ与ds-DNA复合物的吸收总和变宽,并在约315nm处达到最大值,表明在λ<350nm时,不涉及插入的复合物主导吸收光谱。通过在310、322、334、346、358和370nm处照射ds-DNA存在下的3H-CPZ,确定了CPZ与DNA共价结合的波长依赖性。所得光谱与未插入的CPZ的吸收光谱密切相关,而不是与插入的CPZ的光谱相关,表明后一种物种不是光加成反应的发色团。

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