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March 5, 2026Nature Communications1 citationsOpen Access

A single mutation in nonstructural protein 1 is critical for the adaptive evolution of influenza B virus

PJPengtao JiaoXJXiaoxiao JiaXBXiaoyuan Bai

Key Points

  • The study aims to uncover the evolutionary mechanisms behind influenza B virus adaptation to host environments.
  • Analyzed recent and earlier strains of influenza B virus for replication efficiency and immune evasion.
  • Investigated the interaction of nonstructural protein 1 (NS1) with mitochondrial proteins TUFM and LC3B.
  • Performed sequence analyses to identify mutations in NS1 over the past two decades.
  • Conducted experiments on a rescued IBV strain with the NS1-L247F mutation to assess its effects.
  • Recent IBV strains show increased replication efficiency and better innate immune evasion compared to earlier strains.
  • Mutations in NS1 enhance its interaction with LC3B, leading to mitophagy and MAVS degradation.
  • The NS1-L247F mutation resulted in weakened NS1-LC3B binding, reduced mitophagy, and lower replication rates.

Abstract

Influenza B virus (IBV) has circulated in the human population for a long time, yet the evolutionary mechanisms responsible for host adaptation remain poorly understood. Here we show that recent IBV strains exhibit an enhanced ability to evade the innate immune response and an increased replication efficiency compared with earlier strains. Our data indicate that the nonstructural protein 1 (NS1) of recent IBV strains interacts with TUFM and LC3B to induce mitophagy, leading to degradation of MAVS, suppression of interferon production and enhanced viral replication. In contrast, NS1 of earlier strains displays minimal ability to trigger mitophagy-mediated MAVS degradation. Sequence analyses show that, over the past two decades, IBV has acquired a phenylalanine (F)-to-leucine (L) substitution at residue 247 of NS1, altering its interaction with LC3B. A rescued recent IBV strain carrying the NS1-L247F mutation exhibits diminished NS1-LC3B binding, impaired mitophagy, and attenuated replication. Our study shows that adaptive evolution involving a single mutation in NS1 enables mitophagy-mediated innate immune evasion, contributing to IBV adaptation to the host.

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Cite This Study

Jiao et al. (2026) studied this question.

synapsesocial.com/papers/69a91cf1d6127c7a504bfdd1https://doi.org/10.1038/s41467-026-70211-x
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