Computational Insights into the Structural Dynamics of MDA5 Variants Associated with Aicardi-Goutières Syndrome and Singleton-Merten Syndrome

Biomolecules. 2021 Aug 21;11(8):1251. doi: 10.3390/biom11081251.

Abstract

Melanoma differentiation-associated protein 5 (MDA5) is a crucial RIG-I-like receptor RNA helicase enzyme encoded by IFIH1 in humans. Single nucleotide polymorphisms in the IFIH1 results in fatal genetic disorders such as Aicardi-Goutières syndrome and Singleton-Merten syndrome, and in increased risk of type I diabetes in humans. In this study, we chose four different amino acid substitutions of the MDA5 protein responsible for genetic disorders: MDA5L372F, MDA5A452T, MDA5R779H, and MDA5R822Q and analyzed their structural and functional relationships using molecular dynamic simulations. Our results suggest that the mutated complexes are relatively more stable than the wild-type MDA5. The radius of gyration, interaction energies, and intra-hydrogen bond analysis indicated the stability of mutated complexes over the wild type, especially MDA5L372F and MDA5R822Q. The dominant motions exhibited by the wild-type and mutant complexes varied significantly. Moreover, the betweenness centrality of the wild-type and mutant complexes showed shared residues for intra-signal propagation. The observed results indicate that the mutations lead to a gain of function, as reported in previous studies, due to increased interaction energies and stability between RNA and MDA5 in mutated complexes. These findings are expected to deepen our understanding of MDA5 variants and may assist in the development of relevant therapeutics against the disorders.

Keywords: Aicardi–Goutières syndrome; IFIH1; Singleton–Merten syndrome; melanoma differentiation-associated protein 5; molecular dynamic simulation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aortic Diseases / genetics*
  • Autoimmune Diseases of the Nervous System / genetics*
  • Computational Biology
  • Dental Enamel Hypoplasia / genetics*
  • Humans
  • Hydrogen Bonding
  • Interferon-Induced Helicase, IFIH1 / genetics*
  • Interferon-Induced Helicase, IFIH1 / physiology
  • Metacarpus / abnormalities*
  • Molecular Conformation
  • Molecular Dynamics Simulation
  • Muscular Diseases / genetics*
  • Mutant Proteins / genetics
  • Mutation*
  • Mutation, Missense
  • Nervous System Malformations / genetics*
  • Odontodysplasia / genetics*
  • Osteoporosis / genetics*
  • Phenotype
  • Principal Component Analysis
  • RNA / metabolism
  • Thermodynamics
  • Vascular Calcification / genetics*

Substances

  • Mutant Proteins
  • RNA
  • IFIH1 protein, human
  • Interferon-Induced Helicase, IFIH1

Supplementary concepts

  • Aicardi-Goutieres syndrome
  • Singleton Merten syndrome