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Applications of bioinformatics tools to combat the antibiotic resistance

机译:生物信息学工具在抗击抗生素耐药性中的应用

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Antibiotic drug resistance is a serious concern world wide. Antibiotics impose selective pressure in spread of resistance genes through exchange of genetic material among bacterial isolates. Addition and excessive use of antibacterial compounds has changed in the microbial populations of the soil, water and our own micro biota. Antibiotic resistance makes us helpless. Now it is the need of era to develop new classes of drugs. But the field of Bioinformatics revolutionize and fascinating the world of science and technology. Now a day's homology modeling technique used to generate 3D structures to evaluate or justify our desirable results. Bioinformatics change the face of molecular studies as to determine the protein structure, gene structure or sequence, molecular markers and relate them to other previously known structures. Bio informatics studies have provided fundamental ways of modeling a biological living cell system and docking proteins that enabled scientists to discover effective drug strategies to combat the diversifying problem of antibiotic resistance among the common casuals of infectious diseases. The field of bioinformatics has involved most pressing task such as the analysis and interpretation of various types of data that includes nucleotide and amino acid sequences, protein domains, protein structures and clear the behavior of protein-ligand interaction at molecular level. The criteria of analyzing the biological annotations or data is referred to as homology modeling or computational biology.
机译:抗生素耐药性是世界范围内严重关注的问题。抗生素通过细菌分离株之间遗传物质的交换,在抗性基因的传播中施加选择性压力。抗菌化合物的添加和过度使用已经改变了土壤,水和我们自己的微生物群中的微生物种群。抗生素耐药性使我们无奈。现在,时代需要开发新种类的药物。但是,生物信息学领域引起了科学界的革命,并引人入胜。现在,一天的同源性建模技术用于生成3D结构,以评估或证明我们理想的结果。生物信息学改变了分子研究的面貌,以确定蛋白质的结构,基因的结构或序列,分子标记,并将它们与其他先前已知的结构联系起来。生物信息学研究提供了对生物活细胞系统和蛋白对接进行建模的基本方法,使科学家能够发现有效的药物策略,以应对普通传染病患者中抗生素耐药性的多样化问题。生物信息学领域涉及最紧迫的任务,例如分析和解释各种类型的数据,包括核苷酸和氨基酸序列,蛋白质结构域,蛋白质结构以及在分子水平上明确蛋白质-配体相互作用的行为。分析生物学注释或数据的标准称为同源性建模或计算生物学。

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