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首页> 外文期刊>Biochemistry >New complex of post-activated neocarzinostatin chromophore with DNA: bulge DNA binding from the minor groove.
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New complex of post-activated neocarzinostatin chromophore with DNA: bulge DNA binding from the minor groove.

机译:新激活的新carcarinostatin发色团与DNA的新复合物:小沟中凸起的DNA结合。

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Neocarzinostatin (NCS-chrom), a natural enediyne antitumor antibiotic, undergoes either thiol-dependent or thiol-independent activation, resulting in distinctly different DNA cleavage patterns. Structures of two different post-activated NCS-chrom complexes with DNA have been reported, revealing strikingly different binding modes that can be directly related to the specificity of DNA chain cleavage caused by NCS-chrom. The third structure described herein is based on recent studies demonstrating that glutathione (GSH) activated NCS-chrom efficiently cleaves DNA at specific single-base sites in sequences containing a putative single-base bulge. In this structure, the GSH post-activated NCS-chrom (NCSi-glu) binds to a decamer DNA, d(GCCAGAGAGC), from the minor groove. This binding triggers a conformational switch in DNA from a loose duplex in the free form to a single-strand, tightly folded hairpin containing a bulge adenosine embedded between a three base pair stem. The naphthoate aromatic moiety of NCSi-glu intercalates into a GG step flanked by the bulge site, and its substituent groups, the 2-N-methylfucosamine carbohydrate ring and the tetrahydroindacene, form a complementary minor groove binding surface, mostly interacting with the GCC strand in the duplex stem of DNA. The bulge site is stabilized by the interactions involving NCSi-glu naphthoate and GSH tripeptide. The positioning of NCSi-glu is such that only single-chain cleavage via hydrogen abstraction at the 5'-position of the third base C (which is opposite to the putative bulge base) in GCC is possible, explaining the observed single-base cleavage specificity. The reported structure of the NCSi-glu-bulge DNA complex reveals a third binding mode of the antibiotic and represents a new family of minor groove bulge DNA recognition structures. We predict analogue structures of NCSi-R (R = glu or other substituent groups) may be versatile probes for detecting the existence of various structures of nucleic acids. The NMR structure of this complex, in combination with the previously reported NCSi-gb-bulge DNA complex, offers models for specific recognition of DNA bulges of various sizes through binding to either the minor or the major groove and for single-chain cleavage of bulge DNA sequences.
机译:天然的烯二炔抗肿瘤抗生素新卡他汀(NCS-chrom)经历了硫醇依赖性或硫醇依赖性激活,从而导致DNA裂解模式明显不同。已经报道了两种不同的具有DNA的NCS-chrom活化后复合物的结构,揭示了显着不同的结合模式,这些结合模式直接与NCS-chrom引起的DNA链断裂的特异性有关。本文所述的第三种结构基于最近的研究,表明谷胱甘肽(GSH)激活的NCS-chrom有效地在包含推定的单碱基凸起的序列中的特定单碱基位点切割DNA。在这种结构中,GSH后活化的NCS-chrom(NCSi-glu)从小沟与decamer DNA d(GCCAGAGAGC)结合。这种结合触发了DNA的构象转换,从游离形式的松散双链体转变为单链紧密折叠的发夹,该发夹包含嵌入在三个碱基对茎之间的凸起的腺苷。 NCSi-glu的萘甲酸芳族部分插入到GG台阶中,该GG台阶的侧面为凸出位点,其取代基,2-N-甲基岩藻糖胺碳水化合物环和四氢茚并五烯形成互补的小沟结合表面,主要与GCC链相互作用在DNA的双链体中。凸起位点通过涉及NCSi-萘酚葡萄糖和GSH三肽的相互作用而稳定。 NCSi-glu的位置使得只有通过GCC中第三碱基C(与假定的凸起碱基相反)的5'-位通过氢提取进行单链裂解,这解释了观察到的单碱基裂解特异性。报道的NCSi-glu-凸起DNA复合物的结构揭示了抗生素的第三种结合模式,代表了新的小沟凸起DNA识别结构家族。我们预测NCSi-R的类似结构(R = glu或其他取代基)可能是用于检测核酸各种结构的通用探针。该复合物的NMR结构与先前报道的NCSi-gb-凸出DNA复合物相结合,提供了模型,可通过结合到主沟或主沟上来特异性识别各种大小的DNA凸出,并用于单链裂解DNA序列。

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