Fernando Himesh, Rodriguez Raphaël, Balasubramanian Shankar
The University Chemical Laboratory, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.
Biochemistry. 2008 Sep 9;47(36):9365-71. doi: 10.1021/bi800983u. Epub 2008 Aug 15.
Particular guanine rich nucleic acid sequences can fold into stable secondary structures called G-quadruplexes. These structures have been identified in various regions of the genome that include the telomeres, gene promoters and UTR regions, raising the possibility that they may be associated with biological function(s). Computational analysis has predicted that intramolecular G-quadruplex forming sequences are prevalent in the human genome, thus raising the desire to differentially recognize genomic G-quadruplexes. We have employed antibody phage display and competitive selection techniques to generate a single-chain antibody that shows >1000-fold discrimination between G-quadruplex and duplex DNA, and furthermore >100-fold discrimination between two related intramolecular parallel DNA G-quadruplexes. The amino acid sequence composition at the antigen binding site shows conservation within the light and heavy chains of the selected scFvs, suggesting sequence requirements for G-quadruplex recognition. Circular dichroism (CD) spectroscopic data showed that the scFv binds to the prefolded G-quadruplex and does not induce G-quadruplex structure formation. This study demonstrates the strongest discrimination that we are aware of between two intramolecular genomic G-quadruplexes.
富含鸟嘌呤的特定核酸序列可以折叠成称为G-四链体的稳定二级结构。这些结构已在基因组的各个区域被鉴定出来,包括端粒、基因启动子和非翻译区,这增加了它们可能与生物学功能相关的可能性。计算分析预测,分子内形成G-四链体的序列在人类基因组中普遍存在,因此人们渴望能够区分基因组中的G-四链体。我们利用抗体噬菌体展示和竞争性筛选技术生成了一种单链抗体,该抗体对G-四链体和双链DNA的区分能力超过1000倍,并且对两种相关的分子内平行DNA G-四链体的区分能力超过100倍。抗原结合位点的氨基酸序列组成在所选单链抗体的轻链和重链中显示出保守性,这表明了识别G-四链体的序列要求。圆二色性(CD)光谱数据表明,单链抗体与预折叠的G-四链体结合,不会诱导G-四链体结构的形成。这项研究证明了我们所知的两种分子内基因组G-四链体之间最强的区分能力。