Structural MitoLab, Structural Biology Unit, Molecular Biology Institute of Barcelona (CSIC), Barcelona, 08028, Spain.
Department of Chemical Engineering and Analytical Chemistry, University of Barcelona, Barcelona, 08028, Spain.
Sci Rep. 2017 Mar 9;7:43992. doi: 10.1038/srep43992.
The ability of the guanine-rich strand of the human mitochondrial DNA (mtDNA) to form G-quadruplex structures (G4s) has been recently highlighted, suggesting potential functions in mtDNA replication initiation and mtDNA stability. G4 structures in mtDNA raise the question of their recognition by factors associated with the mitochondrial nucleoid. The mitochondrial transcription factor A (TFAM), a high-mobility group (HMG)-box protein, is the major binding protein of human mtDNA and plays a critical role in its expression and maintenance. HMG-box proteins are pleiotropic sensors of DNA structural alterations. Thus, we investigated and uncovered a surprising ability of TFAM to bind to DNA or RNA G4 with great versatility, showing an affinity similar than to double-stranded DNA. The recognition of G4s by endogenous TFAM was detected in mitochondrial extracts by pull-down experiments using a G4-DNA from the mtDNA conserved sequence block II (CSBII). Biochemical characterization shows that TFAM binding to G4 depends on both the G-quartets core and flanking single-stranded overhangs. Additionally, it shows a structure-specific binding mode that differs from B-DNA, including G4-dependent TFAM multimerization. These TFAM-G4 interactions suggest functional recognition of G4s in the mitochondria.
富含鸟嘌呤的人类线粒体 DNA(mtDNA)链形成 G-四链体结构(G4s)的能力最近受到了关注,这表明其可能在 mtDNA 复制起始和 mtDNA 稳定性方面具有功能。mtDNA 中的 G4 结构提出了一个问题,即它们是否被与线粒体核小体相关的因素识别。线粒体转录因子 A(TFAM)是一种高迁移率族(HMG)-框蛋白,是人类 mtDNA 的主要结合蛋白,在其表达和维持中起着关键作用。HMG 框蛋白是 DNA 结构改变的多效传感器。因此,我们研究并揭示了 TFAM 令人惊讶的能力,即能够非常灵活地结合 DNA 或 RNA G4,其亲和力与双链 DNA 相似。通过使用来自 mtDNA 保守序列块 II(CSBII)的 G4-DNA 在线粒体提取物中进行下拉实验,检测到内源性 TFAM 对 G4 的识别。生化特性表明,TFAM 与 G4 的结合取决于四联体核心和侧翼单链突出。此外,它显示出与 B-DNA 不同的结构特异性结合模式,包括 G4 依赖性 TFAM 多聚化。这些 TFAM-G4 相互作用表明 G4 在线粒体中具有功能识别。