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网络理论分析 JAK/STAT 通路,并外推至包括 COVID-19 在内的药物和病毒。

Network theoretic analysis of JAK/STAT pathway and extrapolation to drugs and viruses including COVID-19.

机构信息

Department of Mathematics, Ramakrishna Mission Vivekananda Educational and Research Institute, Belur, India.

Department of Rheumatology, All India Institute of Medical Sciences, New Delhi, India.

出版信息

Sci Rep. 2021 Jan 28;11(1):2512. doi: 10.1038/s41598-021-82139-x.

Abstract

Whenever some phenomenon can be represented as a graph or a network it seems pertinent to explore how much the mathematical properties of that network impact the phenomenon. In this study we explore the same philosophy in the context of immunology. Our objective was to assess the correlation of "size" (number of edges and minimum vertex cover) of the JAK/STAT network with treatment effect in rheumatoid arthritis (RA), phenotype of viral infection and effect of immunosuppressive agents on a system infected with the coronavirus. We extracted the JAK/STAT pathway from Kyoto Encyclopedia of Genes and Genomes (KEGG, hsa04630). The effects of the following drugs, and their combinations, commonly used in RA were tested: methotrexate, prednisolone, rituximab, tocilizumab, tofacitinib and baricitinib. Following viral systems were also tested for their ability to evade the JAK/STAT pathway: Measles, Influenza A, West Nile virus, Japanese B virus, Yellow Fever virus, respiratory syncytial virus, Kaposi's sarcoma virus, Hepatitis B and C virus, cytomegalovirus, Hendra and Nipah virus and Coronavirus. Good correlation of edges and minimum vertex cover with clinical efficacy were observed (for edge, rho =  - 0.815, R = 0.676, p = 0.007, for vertex cover rho =  - 0.793, R = 0.635, p = 0.011). In the viral systems both edges and vertex cover were associated with acuteness of viral infections. In the JAK/STAT system already infected with coronavirus, maximum reduction in size was achieved with baricitinib. To conclude, algebraic and combinatorial invariant of a network may explain its biological behaviour. At least theoretically, baricitinib may be an attractive target for treatment of coronavirus infection.

摘要

每当某个现象可以表示为图表或网络时,似乎都值得探究网络的数学特性对该现象的影响有多大。在这项研究中,我们在免疫学背景下探索了同样的哲学。我们的目标是评估 JAK/STAT 网络的“大小”(边数和最小顶点覆盖数)与类风湿关节炎 (RA) 的治疗效果、病毒感染的表型以及免疫抑制剂对感染冠状病毒的系统的影响之间的相关性。我们从京都基因与基因组百科全书 (KEGG,hsa04630) 中提取了 JAK/STAT 通路。测试了以下药物及其组合在 RA 中的常用效果:甲氨蝶呤、泼尼松、利妥昔单抗、托珠单抗、托法替尼和巴瑞替尼。还测试了以下病毒系统逃避 JAK/STAT 通路的能力:麻疹、甲型流感、西尼罗河病毒、乙型日本脑炎病毒、黄热病病毒、呼吸道合胞病毒、卡波济氏肉瘤病毒、乙型肝炎和丙型肝炎病毒、巨细胞病毒、亨德拉病毒和尼帕病毒以及冠状病毒。观察到边数和最小顶点覆盖数与临床疗效之间存在良好的相关性(边数,rho = -0.815,R = 0.676,p = 0.007,顶点覆盖数 rho = -0.793,R = 0.635,p = 0.011)。在病毒系统中,边数和顶点覆盖数都与病毒感染的急性程度有关。在已经感染冠状病毒的 JAK/STAT 系统中,巴瑞替尼可使网络规模最大程度减小。总之,网络的代数和组合不变量可以解释其生物学行为。至少从理论上讲,巴瑞替尼可能是治疗冠状病毒感染的一个有吸引力的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/438a/7844052/def223cc94b9/41598_2021_82139_Fig1_HTML.jpg

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