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Mycobacterium tuberculosis DinG Is a Structure-specific Helicase That Unwinds G4 DNA

机译:结核分枝杆菌叮叮当体是一种特定于结构的螺旋酶,可展示G4 DNA

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The significance of G-quadruplexes and the helicases that resolve G4 structures in prokaryotes is poorly understood. The Mycobacterium tuberculosis genome is GC-rich and contains >10,000 sequences that have the potential to form G4 structures. In Escherichia coli, RecQ helicase unwinds G4 structures. However, RecQ is absent in M. tuberculosis, and the helicase that participates in G4 resolution in M. tuberculosis is obscure. Here, we show that M. tuberculosis DinG (MtDinG) exhibits high affinity for ssDNA and ssDNA translocation with a 5′ → 3′ polarity. Interestingly, MtDinG unwinds overhangs, flap structures, and forked duplexes but fails to unwind linear duplex DNA. Our data with DNase I footprinting provide mechanistic insights and suggest that MtDinG is a 5′ → 3′ polarity helicase. Notably, in contrast to E. coli DinG, MtDinG catalyzes unwinding of replication fork and Holliday junction structures. Strikingly, we find that MtDinG resolves intermolecular G4 structures. These data suggest that MtDinG is a multifunctional structure-specific helicase that unwinds model structures of DNA replication, repair, and recombination as well as G4 structures. We finally demonstrate that promoter sequences of M. tuberculosis PE_PGRS2, mce1R, and moeB1 genes contain G4 structures, implying that G4 structures may regulate gene expression in M. tuberculosis. We discuss these data and implicate targeting G4 structures and DinG helicase in M. tuberculosis could be a novel therapeutic strategy for culminating the infection with this pathogen.
机译:G-quadruplees和解析原核生物中G4结构的螺旋酶的意义尚不清楚。结核分枝杆菌基因组是GC的,含有> 10,000个序列,其具有形成G4结构的潜力。在大肠杆菌中,RECQ Helicase展开G4结构。然而,RECQ不存在于核核化,以及参与M.Tuberculosis的G4分辨率的螺旋酶是模糊的。在这里,我们表明肺结核丁(MTDing)对SSDNA和SSDNA易位具有高的亲和力,具有5'→3'极性。有趣的是,MTDID突出了悬垂,襟翼结构和分叉双工,但不能放松线性双相DNA。我们具有DNASE I的数据脚印提供机械洞察力,并表明MTDIND是5'→3'极性螺旋酶。值得注意的是,与大肠杆菌丁相反,MTDING催化了复制叉和Holliday结结构的展开。令人惊讶的是,我们发现MTDING解析了分子间G4结构。这些数据表明MTDING是一种多功能结构特异性螺旋酶,可解放DNA复制,修复和重组的模型结构以及G4结构。我们终于证明了M.结核病PE_PGRS2,MCE1R和MOEB1基因的启动子序列含有G4结构,这意味着G4结构可以调节在肺结核中的基因表达。我们讨论这些数据并暗示靶向G4结构和丁螺旋酶在M.结核病可能是一种新的治疗策略,用于促进该病原体感染。

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