Subcellular Localization of Disease-Associated Proteins in Psoriasis

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Abstract

Psoriasis is an autoimmune, persisting, inflammatory disorder that extremely affects the skin and joints of the system. In spite of the field under investigation across the globe roots toward the origin and the molecular pathophysiology of the disease, yet, the mechanism is vaguely presumed. The pathology has its basis in the underlying genes, the protein interactomes, and the metabolic pathways. Subcellular localization of the proteins (Sl) imparts geometrical details of proteins in a cell. In Sl, Proteins conjoin with suitable proteins to assemble into active complexes in signaling routes and metabolic pathways. Variations in the disease set of genes modify the production of gene outcomes as well alters the choosing steps of appropriate Sl, which interrupts the vital roles of the proteins. Proteins related to the disease are predominantly accumulated in typical Sl, which is why apt recognition of protein Sl guides to track down disease bound proteins and the interdependence between them. To do so, in the current investigation, the GOnet tool has been utilized to identify Sl of the proteins by the input of genes and by modeling and visualizing collaborative graphs in conjunction with GO terms and genes. The results obtained displays that the Psoriasis proteins have been localized in respective cellular compartments such as Golgi apparatus, cytoplasm, nucleolus, mitochondria, peroxisomes cytoskeleton, cytoplasm, endosomes, endoplasmic reticulum, extracellular region, nucleoplasm, cilium, vacuole, protein-containing complex, and nuclear chromosome. Further exploration of subcellular localization followed by protein-protein interaction and molecular pathway analyses may be the bedrock to a deeper insight towards disease development and molecular centered relations alongside multimorbidity interactions in Psoriasis.
银屑病疾病相关蛋白的亚细胞定位
牛皮癣是一种自身免疫,持续,炎症性疾病,严重影响皮肤和关节系统。尽管在全球范围内对该疾病的起源和分子病理生理进行了深入的研究,但其机制尚不明确。病理有其基础的潜在基因,蛋白质相互作用组,和代谢途径。蛋白质的亚细胞定位(Sl)赋予细胞中蛋白质的几何细节。在Sl中,蛋白质与合适的蛋白质结合,在信号通路和代谢途径中组装成活性复合物。疾病基因组的变异改变了基因结果的产生,也改变了适当Sl的选择步骤,从而中断了蛋白质的重要作用。与疾病相关的蛋白质主要在典型的Sl中积累,这就是为什么对蛋白质Sl的适当识别指导追踪疾病结合蛋白及其之间的相互依赖性。为了做到这一点,在目前的研究中,GOnet工具已被用于通过基因的输入,并通过与GO术语和基因一起建模和可视化协作图来识别蛋白质的Sl。结果表明,银屑病蛋白定位于高尔基体、细胞质、核仁、线粒体、过氧化物酶体、细胞骨架、细胞质、核内体、内质网、胞外区、核质、纤毛、液泡、含蛋白复合物和核染色体等细胞区。进一步探索亚细胞定位,随后进行蛋白-蛋白相互作用和分子途径分析,可能是更深入了解银屑病疾病发展和分子中心关系以及多种疾病相互作用的基础。
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