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锌指蛋白Spl的一些突变肽所揭示的独特磷酸骨架接触:蛋白质诱导的弯曲对DNA识别的影响

Distinct phosphate backbone contacts revealed by some mutant peptides of zinc finger protein Spl: effect of protein-induced bending on DNA recognition.

作者信息

Nagaoka M, Sugiura Y

机构信息

Institute for Chemical Research, Kyoto University, Japan.

出版信息

Biochemistry. 1996 Jul 2;35(26):8761-8. doi: 10.1021/bi952530r.

Abstract

By using some mutant peptides of transcription factor Spl, phosphate backbone contacts with the DNA binding protein containing three zinc fingers have been investigated by alkylation interference, circular permutation, DNase I footprinting, and methylation protection methods. The ethylation interference analyses of Spl(R565S) and Spl(K595S) mutants demonstrate that arginine at 565 position and lysine at 595 position interact with the phosphate between G(3) and G(4) and with the phosphate between G(9) and G(10) in GC-box DNA, respectively. On the basis of the experimental results for Spl(K535G), Sp1(537-623), and Sp1(530-623), lysine and glutamine at 535 and 536 positions have been clarified to be in contacts with phosphate between G(7) and G(8) and with phosphate outside GC-box, respectively. In particular, glutamine at the N-terminal side of zinc finger 1 is a key amino acid residue to induce DNA bending and also participates in total base specificity of Sp1. The present study strongly indicates that (1) each zinc finger is not independent for the DNA interaction with Sp1 and (2) DNA base recognition of the zinc finger protein is influenced by local conformational change of DNA induced by the protein binding.

摘要

通过使用转录因子Spl的一些突变肽,利用烷基化干扰、环形置换、DNase I足迹法和甲基化保护法,对含三个锌指的DNA结合蛋白与磷酸骨架的相互作用进行了研究。对Spl(R565S)和Spl(K595S)突变体的乙基化干扰分析表明,565位的精氨酸和595位的赖氨酸分别与GC盒DNA中G(3)和G(4)之间的磷酸以及G(9)和G(10)之间的磷酸相互作用。基于对Spl(K535G)、Sp1(537 - 623)和Sp1(530 - 623)的实验结果,已明确535位的赖氨酸和536位的谷氨酰胺分别与G(7)和G(8)之间的磷酸以及GC盒外的磷酸相互作用。特别是,锌指1 N端侧的谷氨酰胺是诱导DNA弯曲的关键氨基酸残基,并且还参与Spl的总碱基特异性。本研究有力地表明:(1) 每个锌指对于Spl与DNA的相互作用并非独立;(2) 锌指蛋白的DNA碱基识别受蛋白结合诱导的DNA局部构象变化影响。

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