Oscar Rodríguez-Lima, Juan Rodrigo Salazar, Laura A Velázquez-Villegas, María Fernanda Pérez-Téllez, Alonso Méndez-Pérez, Lucía Jiménez, Ricardo Miranda-Blancas, Elisa Heredia-Gómez, Marco A Loza-Mejía, Abraham Landa
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To investigate the molecular determinants of DNA recognition, selectivity, and binding affinity, we performed molecular docking and molecular dynamics simulations for both TsTBPs with various TATA-box sequences. Our results reveal that TsTBP1 exhibits higher affinity for <i>T. solium</i> TATA-box sequences compared to the consensus AdML TATA-box (TATAAAAG), largely due to the specific interaction of critical phenylalanine residues with the DNA minor groove, which induces DNA bending and stabilizes the TBP-DNA complex. Furthermore, analysis of the Buckle parameter indicates that these Phe residues are the principal contributors to DNA distortion. 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引用次数: 0
摘要
TATA-box binding protein (TBP)是转录因子TFIID的核心亚基,在识别蛋白质编码基因中的TATA-box,促进转录起始前复合物的组装中起着关键作用。在猪带绦虫中,以前只报道过一种TBP亚型(TsTBP1)。在这里,我们利用分子生物学和生物信息学方法的结合,鉴定和表征了第二种异构体TsTBP2。TsTBP2与TsTBP1具有42%的同源性,在囊虫期和成虫期表现出不同的表达模式。为了研究DNA识别、选择性和结合亲和力的分子决定因素,我们对具有不同TATA-box序列的两种tstbp进行了分子对接和分子动力学模拟。我们的研究结果表明,TsTBP1对T. solium TATA-box序列具有更高的亲和力,与共识的AdML TATA-box (TATAAAAG)相比,这主要是由于关键苯丙氨酸残基与DNA次要凹槽的特异性相互作用,诱导DNA弯曲并稳定TBP-DNA复合物。此外,对Buckle参数的分析表明,这些Phe残基是DNA畸变的主要贡献者。据我们所知,这项研究首次分析了TBP在昆虫中的选择性和亲和力,为T. solium转录调控的分子机制提供了见解。
Analysis of the interaction of TATA-box binding protein 1 and 2 from Taenia solium to TATA-box: structural factors related to selectivity and affinity.
TATA-box binding protein (TBP) is a core subunit of the transcription factor TFIID and plays a pivotal role in recognizing the TATA-box in protein-coding genes, facilitating the assembly of the transcription preinitiation complex. In Taenia solium, only one TBP isoform (TsTBP1) has been previously reported. Here, we identify and characterize a second isoform, TsTBP2, using a combination of molecular biology and bioinformatics approaches. TsTBP2 shares 42% primary sequence identity with TsTBP1 and exhibits distinct expression patterns between cysticerci and adult stages. To investigate the molecular determinants of DNA recognition, selectivity, and binding affinity, we performed molecular docking and molecular dynamics simulations for both TsTBPs with various TATA-box sequences. Our results reveal that TsTBP1 exhibits higher affinity for T. solium TATA-box sequences compared to the consensus AdML TATA-box (TATAAAAG), largely due to the specific interaction of critical phenylalanine residues with the DNA minor groove, which induces DNA bending and stabilizes the TBP-DNA complex. Furthermore, analysis of the Buckle parameter indicates that these Phe residues are the principal contributors to DNA distortion. To our knowledge, this study represents the first analysis of TBP selectivity and affinity in cestodes, providing insights into the molecular mechanisms underlying transcriptional regulation in T. solium.