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Identification of Top-ranked Proteins within a Directional Protein Interaction Network using the PageRank Algorithm: Applications in Humans and Plants

机译:使用PageRank算法识别定向蛋白质相互作用网络中排名最高的蛋白质:在人类和植物中的应用

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Somatic mutation of signal transduction genes or key nodes of the cellular protein network can cause severe diseases in humans but can sometimes genetically improve plants, likely because growth is determinate in animals but indeterminate in plants. This article reviews protein networks; human protein ranking; the mitogen-activated protein kinase (MAPK) and insulin (phospho- inositide 3kinase [PI3K]/phosphatase and tensin homolog [PTEN]/protein kinase B [AKT]) signaling pathways; human diseases caused by somatic mutations to the PI3K/PTEN/ AKT pathway; use of the MAPK pathway in plant molecular breeding; and protein domain evolution. Casitas B-lineage lymphoma (CBL), PTEN, MAPK1 and PIK3CA are among PIK3CA the top-ranked proteins in directional rankings. Eight proteins (ACVR1, CDC42, RAC1, RAF1, RHOA, TGFBR1, TRAF2, and TRAF6) are ranked in the top 50 key players in both signal emission and signal reception and in interaction with many other proteins. Top-ranked proteins likely have major impacts on the network function. Such proteins are targets for drug discovery, because their mutations are implicated in various cancers and overgrowth syndromes. Appropriately managing food intake may help reduce the growth of tumors or malformation of tissues. The role of the protein kinase C/ fatty acid synthase pathway in fat deposition in PTEN/PI3K patients should be investigated. Both the MAPK and insulin signaling pathways exist in plants, and MAPK pathway engineering can improve plant tolerance to biotic and abiotic stresses such as salinity.
机译:信号转导基因或细胞蛋白质网络关键节点的体细胞突变可导致人类严重疾病,但有时可遗传改良植物,这很可能是因为生长在动物中是决定性的,而在植物中是不确定的。本文回顾了蛋白质网络;人类蛋白质排名丝裂原活化蛋白激酶(MAPK)和胰岛素(磷酸肌苷3激酶[PI3K] /磷酸酶和肌腱同源蛋白[PTEN] /蛋白激酶B [AKT])信号通路;由PI3K / PTEN / AKT途径的体细胞突变引起的人类疾病; MAPK途径在植物分子育种中的用途;和蛋白质结构域进化。 Casitas B谱系淋巴瘤(CBL),PTEN,MAPK1和PIK3CA在PIK3CA中是方向性排名中排名最高的蛋白质。八个蛋白质(ACVR1,CDC42,RAC1,RAF1,RHOA,TGFBR1,TRAF2和TRAF6)在信号发射和信号接收以及与许多其他蛋白质的相互作用中均位居前50名关键角色。排名靠前的蛋白质可能会对网络功能产生重大影响。这样的蛋白质是药物发现的靶标,因为它们的突变与多种癌症和过度生长综合症有关。适当管理食物摄入量可能有助于减少肿瘤的生长或组织畸形。应该研究蛋白激酶C /脂肪酸合酶途径在PTEN / PI3K患者脂肪沉积中的作用。 MAPK和胰岛素信号传导途径都存在于植物中,MAPK途径工程可以提高植物对生物和非生物胁迫(如盐度)的耐受性。

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