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基于聚合酶链式反应(PCR)开发含修饰碱基的DNA底物:一种用于研究外环基团在小沟结合药物和蛋白质的化学及结构识别中作用的高效系统。

PCR-based development of DNA substrates containing modified bases: an efficient system for investigating the role of the exocyclic groups in chemical and structural recognition by minor groove binding drugs and proteins.

作者信息

Bailly C, Payet D, Travers A A, Waring M J

机构信息

Department of Pharmacology, University of Cambridge, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 26;93(24):13623-8. doi: 10.1073/pnas.93.24.13623.

Abstract

DNA molecules containing inosine in place of guanosine and/or 2,6-diaminopurine in place of adenine have been synthesized and tested as substrates for binding of sequence-selective ligands, both small and large. Footprinting patterns reveal that the binding sites for AT- or GC-specific antibiotics (distamycin or mithramycin, respectively) are completely changed in the modified DNAs, as expected for direct sequence readout involving contact with the purine 2-amino group. However, we also find large changes in the binding of HMG-D, a member of the HMG-1 family of chromosomal proteins, pointing to an indirect influence of the exocyclic amino group on ligand binding via an effect on the deformability of the double helix. This interpretation is confirmed by the finding that deoxyuridine-containing poly- and oligonucleotides, which lack the exocyclic methyl group of thymidine in the major groove, interact 5-10 times more strongly with HMG-D than do their counterparts containing natural nucleotides.

摘要

已经合成了含有肌苷取代鸟苷和/或2,6 -二氨基嘌呤取代腺嘌呤的DNA分子,并将其作为大小不同的序列选择性配体结合的底物进行了测试。足迹图谱显示,对于AT特异性或GC特异性抗生素(分别为distamycin或mithramycin),其结合位点在修饰的DNA中完全改变,正如涉及与嘌呤2 -氨基基团接触的直接序列读出所预期的那样。然而,我们还发现HMG - D(一种染色体蛋白HMG - 1家族的成员)的结合有很大变化,这表明环外氨基通过对双螺旋可变形性的影响对配体结合产生间接影响。这一解释得到了以下发现的证实:在大沟中缺乏胸腺嘧啶环外甲基的含脱氧尿苷的多核苷酸和寡核苷酸与HMG - D的相互作用比含有天然核苷酸的对应物强5 - 10倍。

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