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Shiitake, Hua Gu · 2023 · Research Article

High relevance

HOG1 Mitogen-Activated Protein Kinase Pathway-Related Autophagy Induced by H2O2 in Lentinula edodes Mycelia.

Lentinula edodes

Immune supportGut & microbiome
SpeciesShiitake, Hua Gu
JournalJournal of fungi (Basel, Switzerland)
Year2023

Key points

  • Mycelial ageing is associated with ROS and autophagy in Lentinula edodes
  • This study induced autophagy in L. edodes mycelia through exogenous H 2 O 2 treatment
  • Results showed that 100 μM H 2 O 2 treatment for 24 h significantly inhibited mycelial growth
  • RNA and protein levels of LeATG8 increased in the H 2 O 2 -treated mycelia
  • Using fluorescent labelling, we observed for the first time the classic ring structure of autophagosomes in a mushroom, while 3D imaging suggested that these autophagosomes surrounded the nuclei to degrade them at specific growth stages
  • Furthermore, LeATG8 expression was suppressed when LeHOG1 phosphorylation was inhibited

Metadata-grounded summary

Citation abstract

Mycelial ageing is associated with ROS and autophagy in Lentinula edodes. However, the underlying cellular and molecular mechanisms between ROS and autophagy remain obscure. This study induced autophagy in L. edodes mycelia through exogenous H 2 O 2 treatment. Results showed that 100 μM H 2 O 2 treatment for 24 h significantly inhibited mycelial growth. H 2 O 2 caused the depolarisation of MMP and accumulation of TUNEL-positive nuclei, which was similar to the ageing phenotype of L. edodes mycelia. Transcriptome analysis showed that differentially expressed genes were enriched in the mitophagic, autophagic, and MAPK pathways. LeAtg8 and LeHog1 were selected as hub genes. RNA and protein levels of LeATG8 increased in the H 2 O 2 -treated mycelia. Using fluorescent labelling, we observed for the first time the classic ring structure of autophagosomes in a mushroom, while 3D imaging suggested that these autophagosomes surrounded the nuclei to degrade them at specific growth stages. Phospho-LeHOG1 protein can translocate from the cytoplasm to the nucleus to regulate mycelial cells, resisting ROS-induced oxidative stress. Furthermore, LeATG8 expression was suppressed when LeHOG1 phosphorylation was inhibited. These results suggest that the LeATG8-dependent autophagy in L. edodes mycelial is closely associated with the activity or even phosphorylation of LeHOG1.

Citation

Yan D, Fan Y, Song S, Guo Y, Liu Y, Xu X, et al. (2023). HOG1 Mitogen-Activated Protein Kinase Pathway-Related Autophagy Induced by H2O2 in Lentinula edodes Mycelia. Journal of fungi (Basel, Switzerland) https://doi.org/10.3390/jof9040413 PMID: 37108868

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