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The Electronic Behavior of Zinc-Finger Protein Binding Sites in the Context of the DNA Extended Ladder Model

机译:DNA扩展梯子模型中锌指蛋白结合位点的电子行为

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Instead of ATCG letter alignments, typically used in bioinformatics, we propose a new alignment method using the probability distribution function of the bottom of the occupied molecular orbital (BOMO), highest occupied molecular orbital (HOMO) and lowest unoccupied orbital (LUMO). We apply the technique {color{red} to transcription} factors with Cys2His2 zinc fingers. These {color{red} transcription} factors search for binding sites, probing for the electronic patterns at the minor and major DNA groves. The eukaryotic Cys2His2 zinc finger proteins bind to DNA ubiquitously at highly conserved domains. They are responsible for gene regulation and the spatial organization of DNA. To study and understand these zinc finger DNA-protein interactions, we use the extended ladder in the DNA model proposed by Zhu, Rasmussen, Balatsky & Bishop (2007) cite{Zhu-2007}. Considering one single spinless electron in each nucleotide $pi$-orbital along a double DNA chain (dDNA), we find a typical pattern for the bottom of BOMO, HOMO and LUMO along the binding sites. We specifically looked at two members of zinc finger protein family: specificity protein 1 (SP1) and early grown response 1 transcription factors (EGR1). When the valence band is filled, we find electrons in the purines along the nucleotide sequence, compatible with the electric charges of the binding amino acids in SP1 and EGR1 zinc finger.
机译:代替通常在生物信息学中使用的ATCG字母比对,我们提出了一种新的比对方法,该方法使用占位分子轨道(BOMO),最高占位分子轨道(HOMO)和最低未占位轨道(LUMO)底部的概率分布函数。我们使用Cys2His2锌指技术将{ color {red}应用于转录}因子。这些{ color {red}转录}因子会搜索结合位点,以探测次要和主要DNA树林的电子模式。真核细胞Cys2His2锌指蛋白在高度保守的结构域无处不在地与DNA结合。他们负责基因调节和DNA的空间组织。为了研究和理解这些锌指DNA-蛋白质的相互作用,我们在Zhu,Rasmussen,Balatsky和Bishop(2007) cite {Zhu-2007}提出的DNA模型中使用了扩展阶梯。考虑到沿双DNA链(dDNA)的每个核苷酸π/ pi-轨道中有一个单个无旋电子,我们发现了沿结合位点的BOMO,HOMO和LUMO底部的典型模式。我们专门研究了锌指蛋白家族的两个成员:特异性蛋白1(SP1)和早期应答1转录因子(EGR1)。当价带充满时,我们沿着核苷酸序列在嘌呤中发现电子,与SP1和EGR1锌指中结合氨基酸的电荷相容。

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