Javascript must be enabled to continue!
Selenium, Selenoproteins and Viral Infection
View through CrossRef
Reactive oxygen species (ROS) are frequently produced during viral infections. Generation of these ROS can be both beneficial and detrimental for many cellular functions. When overwhelming the antioxidant defense system, the excess of ROS induces oxidative stress. Viral infections lead to diseases characterized by a broad spectrum of clinical symptoms, with oxidative stress being one of their hallmarks. In many cases, ROS can, in turn, enhance viral replication leading to an amplification loop. Another important parameter for viral replication and pathogenicity is the nutritional status of the host. Viral infection simultaneously increases the demand for micronutrients and causes their loss, which leads to a deficiency that can be compensated by micronutrient supplementation. Among the nutrients implicated in viral infection, selenium (Se) has an important role in antioxidant defense, redox signaling and redox homeostasis. Most of biological activities of selenium is performed through its incorporation as a rare amino acid selenocysteine in the essential family of selenoproteins. Selenium deficiency, which is the main regulator of selenoprotein expression, has been associated with the pathogenicity of several viruses. In addition, several selenoprotein members, including glutathione peroxidases (GPX), thioredoxin reductases (TXNRD) seemed important in different models of viral replication. Finally, the formal identification of viral selenoproteins in the genome of molluscum contagiosum and fowlpox viruses demonstrated the importance of selenoproteins in viral cycle.
Title: Selenium, Selenoproteins and Viral Infection
Description:
Reactive oxygen species (ROS) are frequently produced during viral infections.
Generation of these ROS can be both beneficial and detrimental for many cellular functions.
When overwhelming the antioxidant defense system, the excess of ROS induces oxidative stress.
Viral infections lead to diseases characterized by a broad spectrum of clinical symptoms, with oxidative stress being one of their hallmarks.
In many cases, ROS can, in turn, enhance viral replication leading to an amplification loop.
Another important parameter for viral replication and pathogenicity is the nutritional status of the host.
Viral infection simultaneously increases the demand for micronutrients and causes their loss, which leads to a deficiency that can be compensated by micronutrient supplementation.
Among the nutrients implicated in viral infection, selenium (Se) has an important role in antioxidant defense, redox signaling and redox homeostasis.
Most of biological activities of selenium is performed through its incorporation as a rare amino acid selenocysteine in the essential family of selenoproteins.
Selenium deficiency, which is the main regulator of selenoprotein expression, has been associated with the pathogenicity of several viruses.
In addition, several selenoprotein members, including glutathione peroxidases (GPX), thioredoxin reductases (TXNRD) seemed important in different models of viral replication.
Finally, the formal identification of viral selenoproteins in the genome of molluscum contagiosum and fowlpox viruses demonstrated the importance of selenoproteins in viral cycle.
Related Results
Evaluation of selenium bioavailability in natural selenium-rich soil by gradient diffusion film technology and chemical extraction method: a case study in Yanqi Basin, Northwest China
Evaluation of selenium bioavailability in natural selenium-rich soil by gradient diffusion film technology and chemical extraction method: a case study in Yanqi Basin, Northwest China
Abstract
Effective selenium is an important indicator for evaluating the supply capacity of selenium to plants in soil. The chemical extraction method and soil solution met...
Distribution of Selenium in Soils and Human Health
Distribution of Selenium in Soils and Human Health
Selenium (Se) is essential as well as a toxic element for humans and animals if it exceeds a certain limit. Soil selenium plays an important role through the food chain. Total sele...
An Overview of the Antioxidant and Anti-Inflammatory Activity of Selenium
An Overview of the Antioxidant and Anti-Inflammatory Activity of Selenium
Selenium, whose name comes from the Greek word for “Selene,” has been a topic of interest as a micronutrient ever since it was described in 1817 as a by-product of sulfuric acid ma...
Selenium, selenoproteins and human health: a review
Selenium, selenoproteins and human health: a review
Abstract
Selenium is of fundamental importance to human health. It is an
essential component of several major metabolic pathways, includ...
Selenoproteins and their emerging roles in signaling pathways
Selenoproteins and their emerging roles in signaling pathways
The functional activity of selenoproteins has a wide range of effects on complex pathogenetic processes, including teratogenesis, immuno-inflammatory, neurodegenerative. Being acti...
The Response of Hypericum Perfpratum L. to the Application of Selenium and Nano-selenium
The Response of Hypericum Perfpratum L. to the Application of Selenium and Nano-selenium
Abstract
Background: In terms of medicinal and therapeutic properties, H. perforatum is the important species. However, Selenium has been applied as an alleviation strategy...
Production of selenium-enriched milk and dairy products
Production of selenium-enriched milk and dairy products
Abstract
Until the middle of the last century, selenium was considered to be toxic, but recently it turned out to be a micronutrient with important physiological ef...
The effect of oral selenium supplementation on human sperm motility
The effect of oral selenium supplementation on human sperm motility
Objectives
To determine whether the decline in selenium intake and selenium status in men in the West of Scotland might be a contributory factor to male subfer...

