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Identifying Significant Biological Markers in Klotho Gene Variants Across Wide Ranging Taxonomy

机译:在广泛的分类学中识别Klotho基因变异中的重要生物标记

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Biological aging is marked by progressively degenerative physiological change that causes damage to tissues and organs. Errors in biopolymers accumulate over time; mitochondrial dysfunction, telomere attrition, and wider genomic instability lead to an altered state of intercellular communication. In this investigation, my focus will be aimed at examining and identifying specifically critical biomarkers in genetic variants of KLOTHO (a transmembrane protein involved in the genetic regulation of age-related disease) among organisms with varied life spans that range across wide taxonomical rankings. Here, I investigate the correlation between lower and higher frequency a-amino acid compositions in Klotho protein factors within a grouped methodology; as to also include several demonstrative techniques in comparative sequence analysis for inferring relatedness in evolutionary context.
机译:生物衰老的特征是逐渐退化的生理变化,导致组织和器官受损。生物聚合物中的错误会随着时间的推移而累积;线粒体功能障碍,端粒磨损和更广泛的基因组不稳定性会导致细胞间通讯状态的改变。在这项调查中,我的重点将是在生命周期广泛,生物分类学范围广泛的生物体中,检查和鉴定KLOTHO(涉及年龄相关疾病的基因调控的跨膜蛋白)的遗传变异中的关键生物标志物。在这里,我研究了分组方法中较低频率和较高频率的Klotho蛋白因子中的α-氨基酸组成之间的相关性。在比较序列分析中还包括几种证明技术,以推断进化背景下的相关性。

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