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放线菌素D与d(AACCAXYG)序列基序的结合性质。

The nature of actinomycin D binding to d(AACCAXYG) sequence motifs.

作者信息

Chen Fu-Ming, Sha Feng, Chin Ko-Hsin, Chou Shan-Ho

机构信息

Department of Chemistry, Tennessee State University, Nashville, TN 37209-1561, USA.

出版信息

Nucleic Acids Res. 2004 Jan 9;32(1):271-7. doi: 10.1093/nar/gkh178. Print 2004.

Abstract

Earlier studies by others had indicated that actinomycin D (ACTD) binds well to d(AACCATAG) and the end sequence TAG-3' is essential for its strong binding. In an effort to verify these assertions and to uncover other possible strong ACTD binding sequences as well as to elucidate the nature of their binding, systematic studies have been carried out with oligomers of d(AACCAXYG) sequence motifs, where X and Y can be any DNA base. The results indicate that in addition to TAG-3', oligomers ending with XAG-3' and XCG-3' all provide binding constants > or =1 x 10(7) M(-1) and even sequences ending with XTG-3' and XGG-3' exhibit binding affinities in the range 1-8 x 10(6) M(-1). The nature of the strong ACTD affinity of the sequences d(A1A2C3C4A5X6Y7G8) was delineated via comparative binding studies of d(AACCAAAG), d(AGCCAAAG) and their base substituted derivatives. Two binding modes are proposed to coexist, with the major component consisting of the 3'-terminus G base folding back to base pair with C4 and the ACTD inserting at A2C3C4 by looping out the C3 while both faces of the chromophore are stacked by A and G bases, respectively. The minor mode is for the G to base pair with C3 and to have the same A/chromophore/G stacking but without a looped out base. These assertions are supported by induced circular dichroic and fluorescence spectral measurements.

摘要

其他人早期的研究表明,放线菌素D(ACTD)与d(AACCATAG)结合良好,并且末端序列TAG-3'对其强结合至关重要。为了验证这些论断,揭示其他可能的ACTD强结合序列,并阐明其结合性质,我们对d(AACCAXYG)序列基序的寡聚物进行了系统研究,其中X和Y可以是任何DNA碱基。结果表明,除了TAG-3'之外,以XAG-3'和XCG-3'结尾的寡聚物都提供了大于或等于1×10⁷ M⁻¹的结合常数,甚至以XTG-3'和XGG-3'结尾的序列也表现出1 - 8×10⁶ M⁻¹范围内的结合亲和力。通过对d(AACCAAAG)、d(AGCCAAAG)及其碱基取代衍生物的比较结合研究,确定了序列d(A₁A₂C₃C₄A₅X₆Y₇G₈)对ACTD的强亲和力性质。提出两种结合模式共存,主要成分是3'-末端的G碱基折回与C4形成碱基对,ACTD通过环出C3插入A₂C₃C₄,同时发色团的两个面分别被A和G碱基堆积。次要模式是G与C3形成碱基对,并具有相同的A/发色团/G堆积,但没有环出的碱基。这些论断得到了诱导圆二色性和荧光光谱测量的支持。

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