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G4-iM研磨器:当大小和频率至关重要时。G-四链体、i-基序及高阶结构搜索与分析工具。

G4-iM Grinder: when size and frequency matter. G-Quadruplex, i-Motif and higher order structure search and analysis tool.

作者信息

Belmonte-Reche Efres, Morales Juan Carlos

机构信息

Department of Biochemistry and Molecular Pharmacology, Instituto de Parasitología y Biomedicina López Neyra, CSIC, PTS Granada, Avda. del Conocimiento, 17, 18016 Armilla, Granada, Spain.

Life Sciences Department, International Iberian Nanotechnology Laboratory, Av. Mestre José Veiga, 4715-330 Braga, Portugal.

出版信息

NAR Genom Bioinform. 2019 Sep 30;2(1):lqz005. doi: 10.1093/nargab/lqz005. eCollection 2020 Mar.

Abstract

We present G4-iM Grinder, a system for the localization, characterization and selection of potential G4s, i-Motifs and higher order structures. A robust and highly adaptable search engine identifies all structures that fit the user's quadruplex definitions. Their biological relevance, formation probability and presence of known-to-form structures are then used as filters. The outcome is an efficient methodology that helps select the best candidates for a subsequent analysis or a macroscopic genomic quadruplex assessment. As proof of the analytical capabilities of G4-iM Grinder, the human genome was analyzed for potential G4s and i-Motifs. Many known-to-form structures were identified. New candidates were selected considering their score and appearance frequency. We also focused on locating Potential Higher Order Quadruplex Sequences (PHOQS). We developed a new methodology to predict the most probable subunits of these assemblies and applied it to a PHOQS candidate. Taking the human average density as reference, we examined the genomes of several etiological causes of disease. This first of its class comparative study found many organisms to be very dense in these potential quadruplexes. Many presented already known-to-form-G4s and i-Motifs. These findings suggest the potential quadruplexes have as therapeutic targets for these diseases that currently kill millions worldwide.

摘要

我们展示了G4-iM Grinder,这是一种用于定位、表征和选择潜在G4结构、i-基序及更高阶结构的系统。一个强大且高度适应性的搜索引擎可识别所有符合用户四链体定义的结构。然后,将它们的生物学相关性、形成概率以及已知形成结构的存在情况用作筛选标准。其结果是一种有效的方法,有助于为后续分析或宏观基因组四链体评估选择最佳候选对象。作为G4-iM Grinder分析能力的证明,我们对人类基因组进行了潜在G4结构和i-基序的分析。识别出了许多已知形成的结构。根据得分和出现频率选择了新的候选对象。我们还专注于定位潜在的高阶四链体序列(PHOQS)。我们开发了一种新方法来预测这些组装体最可能的亚基,并将其应用于一个PHOQS候选对象。以人类平均密度为参考,我们研究了几种疾病病因的基因组。这项同类研究中的首次比较研究发现,许多生物体中这些潜在的四链体非常密集。许多生物体中已经存在已知形成G4结构和i-基序。这些发现表明,这些潜在的四链体有可能成为目前在全球导致数百万人死亡的这些疾病的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3787/7671307/8d105ea2eaae/lqz005fig1.jpg

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