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Comparative modeling of DNA and RNA polymerases from Moniliophthora perniciosa mitochondrial plasmid

机译:多年生念珠菌线粒体质粒DNA和RNA聚合酶的比较模型

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摘要

BackgroundThe filamentous fungus Moniliophthora perniciosa (Stahel) Aime & Phillips-Mora is a hemibiotrophic Basidiomycota that causes witches' broom disease of cocoa (Theobroma cacao L.). This disease has resulted in a severe decrease in Brazilian cocoa production, which changed the position of Brazil in the market from the second largest cocoa exporter to a cocoa importer. Fungal mitochondrial plasmids are usually invertrons encoding DNA and RNA polymerases. Plasmid insertions into host mitochondrial genomes are probably associated with modifications in host generation time, which can be involved in fungal aging. This association suggests activity of polymerases, and these can be used as new targets for drugs against mitochondrial activity of fungi, more specifically against witches' broom disease. Sequencing and modeling: DNA and RNA polymerases of M. perniciosa mitochondrial plasmid were completely sequenced and their models were carried out by Comparative Homology approach. The sequences of DNA and RNA polymerase showed 25% of identity to 1XHX and 1ARO (pdb code) using BLASTp, which were used as templates. The models were constructed using Swiss PDB-Viewer and refined with a set of Molecular Mechanics (MM) and Molecular Dynamics (MD) in water carried out with AMBER 8.0, both working under the ff99 force fields, respectively. Ramachandran plots were generated by Procheck 3.0 and exhibited models with 97% and 98% for DNA and RNA polymerases, respectively. MD simulations in water showed models with thermodynamic stability after 2000 ps and 300 K of simulation.
机译:背景丝状真菌百年青虫(Stahel)Aime&Phillips-Mora是一种半生营养的担子菌,可引起女巫的可可帚状疾病(可可树)。这种疾病导致巴西可可豆产量严重下降,这使巴西在市场上的地位从第二大可可豆出口国变为可可粉进口商。真菌线粒体质粒通常是编码DNA和RNA聚合酶的内转子。质粒插入宿主线粒体基因组可能与宿主产生时间的修饰有关,这可能与真菌衰老有关。这种联系暗示着聚合酶的活性,这些可以用作抗真菌线粒体活性药物的新靶标,更具体地说,可以抗巫婆的扫帚病。测序与建模:对多年生支原体线粒体质粒的DNA和RNA聚合酶进行了完全测序,并通过比较同源性方法建立了它们的模型。使用BLASTp作为模板,DNA和RNA聚合酶序列与1XHX和1ARO(pdb代码)具有25%的同一性。这些模型是使用Swiss PDB-Viewer构建的,并使用AMBER 8.0在水中分别使用了一组分子力学(MM)和分子动力学(MD)进行了完善,这两个模型分别在ff99力场下工作。 Ramachandran图是由Procheck 3.0生成的,其模型分别具有97%和98%的DNA和RNA聚合酶。在水中的MD模拟显示了在2000 ps和300 K模拟后具有热力学稳定性的模型。

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