Related Experiment Video
Updated: Jan 20, 2026
DNA Helicases and Their Application in Therapy
Viperin catalyzes methionine oxidation to promote protein expression and function of helicases
Lei Bai1, Jiazhen Dong2, Zhenqiu Liu3
1State Key Laboratory of Virology, College of Life Sciences, Medical Research Institute, Wuhan University, Wuhan 430072, P.R. China.
Abstract:
Helicases play pivotal roles in fundamental biological processes, and posttranslational modifications regulate the localization, function, and stability of helicases. Here, we report that methionine oxidation of representative helicases, including DNA and RNA helicases of viral (ORF44 of KSHV) and cellular (MCM7 and RIG-I) origin, promotes their expression and functions. Cellular viperin, a major antiviral interferon-stimulated gene whose functions beyond host defense remain largely unknown, catalyzes the methionine oxidation of these helicases. Moreover, biochemical studies entailing loss-of-function mutations of helicases and a pharmacological inhibitor interfering with lipid metabolism and, hence, decreasing viperin activity indicate that methionine oxidation potently increases the stability and enzyme activity of these helicases that are critical for DNA replication and immune activation. Our work uncovers a pivotal role of viperin in catalyzing the methionine oxidation of helicases that are implicated in diverse fundamental biological processes.
Related Concept Videos
DNA Helicases
04:10Helicase Activity Measurement of a Target Protein Using Biotin-Labeled RNA Duplexes
Mechanical Protein Functions
09:03Characterizing Cellular Proteins with In-cell Fast Photochemical Oxidation of Proteins
08:09Methionine Functionalized Biocompatible Block Copolymers for Targeted Plasmid DNA Delivery
15:02Analysis of the Development of a Morphological Phenotype as a Function of Protein Concentration in Budding Yeast

