Strong preference of BRCA1 protein to topologically constrained non-B DNA structures

IF 2.946 Q3 Biochemistry, Genetics and Molecular Biology BMC Molecular Biology Pub Date : 2016-06-08 DOI:10.1186/s12867-016-0068-6
Václav Brázda, Lucia Hároníková, Jack C. C. Liao, Helena Fridrichová, Eva B. Jagelská
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引用次数: 13

Abstract

The breast and ovarian cancer susceptibility gene BRCA1 encodes a multifunctional tumor suppressor protein BRCA1, which is involved in regulating cellular processes such as cell cycle, transcription, DNA repair, DNA damage response and chromatin remodeling. BRCA1 protein, located primarily in cell nuclei, interacts with multiple proteins and various DNA targets. It has been demonstrated that BRCA1 protein binds to damaged DNA and plays a role in the transcriptional regulation of downstream target genes. As a key protein in the repair of DNA double-strand breaks, the BRCA1-DNA binding properties, however, have not been reported in detail.

In this study, we provided detailed analyses of BRCA1 protein (DNA-binding domain, amino acid residues 444–1057) binding to topologically constrained non-B DNA structures (e.g. cruciform, triplex and quadruplex). Using electrophoretic retardation assay, atomic force microscopy and DNA binding competition assay, we showed the greatest preference of the BRCA1 DNA-binding domain to cruciform structure, followed by DNA quadruplex, with the weakest affinity to double stranded B-DNA and single stranded DNA. While preference of the BRCA1 protein to cruciform structures has been reported previously, our observations demonstrated for the first time a preferential binding of the BRCA1 protein also to triplex and quadruplex DNAs, including its visualization by atomic force microscopy.

Our discovery highlights a direct BRCA1 protein interaction with DNA. When compared to double stranded DNA, such a strong preference of the BRCA1 protein to cruciform and quadruplex structures suggests its importance in biology and may thus shed insight into the role of these interactions in cell regulation and maintenance.

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BRCA1蛋白对拓扑受限的非b DNA结构的强烈偏好
乳腺癌和卵巢癌易感基因BRCA1编码一种多功能肿瘤抑制蛋白BRCA1,参与调控细胞周期、转录、DNA修复、DNA损伤反应和染色质重塑等细胞过程。BRCA1蛋白主要位于细胞核中,与多种蛋白和多种DNA靶点相互作用。研究表明,BRCA1蛋白与受损DNA结合,并在下游靶基因的转录调控中发挥作用。作为DNA双链断裂修复的关键蛋白,BRCA1-DNA的结合特性尚未有详细报道。在本研究中,我们详细分析了BRCA1蛋白(DNA结合域,氨基酸残基444-1057)与拓扑受限的非b DNA结构(如十字、三联体和四联体)结合的情况。通过电泳延迟实验、原子力显微镜和DNA结合竞争实验,我们发现BRCA1 DNA结合域最倾向于十字形结构,其次是DNA四重结构,与双链b DNA和单链DNA的亲和力最弱。虽然BRCA1蛋白对十字形结构的偏好已经被报道过,但我们的观察首次证明了BRCA1蛋白对三重和四重dna的偏好结合,包括通过原子力显微镜观察它。我们的发现强调了BRCA1蛋白与DNA的直接相互作用。与双链DNA相比,BRCA1蛋白对十字形和四重结构的强烈偏好表明其在生物学中的重要性,并可能因此深入了解这些相互作用在细胞调节和维持中的作用。
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来源期刊
BMC Molecular Biology
BMC Molecular Biology 生物-生化与分子生物学
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: BMC Molecular Biology is an open access journal publishing original peer-reviewed research articles in all aspects of DNA and RNA in a cellular context, encompassing investigations of chromatin, replication, recombination, mutation, repair, transcription, translation and RNA processing and function.
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