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Selenium to selenoproteins – role in COVID-19

机译:Selenium到Selenoproteins - 在Covid-19中的作用

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摘要

The disruption of antioxidant defense has been demonstrated in severe acute respiratory syndrome due to SARS-CoV infection. Selenium plays a major role in decreasing the ROS produced in response to various viral infections. Selenoprotein enzymes are essential in combating oxidative stress caused due to excessive generation of ROS. Selenium also has a role in inhibiting the activation of NF-κB, thus alleviating inflammation. In viral infections, selenoproteins have also been found to inhibit type I interferon responses, modulate T cell proliferation and oxidative burst in macrophages, and inhibit viral transcriptional activators. Potential virally encoded selenoproteins have been identified by computational analysis in different viral genomes like HIV-1, Japanese encephalitis virus (JEV), and hepatitis C virus. This review discusses the role and the possible mechanisms of selenium, selenoproteins, and virally encoded selenoproteins in the pathogenicity of viral infections. Identification of potential selenoproteins in the COVID 19 genome by computational tools will give insights further into their role in the pathogenesis of viral infections.
机译:由于SARS-COV感染,严重急性呼吸道综合征已经证明了抗氧化防御的破坏。硒在减少响应各种病毒感染时产生的ROS发挥着重要作用。 Selenoprotein酶在对抗由于过量产生ROS而引起的氧化应激是必要的。硒还具有抑制NF-κB活化的作用,从而减轻炎症。在病毒感染中,还发现硒代蛋白抑制I型干扰素反应,调节巨噬细胞中的T细胞增殖和氧化爆发,并抑制病毒转录活化剂。潜在的病毒编码硒蛋白已通过HIV-1,日本脑炎病毒(JEV)和丙型肝炎病毒等不同病毒基因组中的计算分析鉴定。本综述讨论了硒,硒蛋白和病毒编码的硒蛋白在病毒感染的致病性中的作用和可能的机制。通过计算工具鉴定Covid 19基因组中的潜在硒蛋白将在病毒感染的发病机制中进一步发挥洞察。

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