Cargando…

Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit

Methyl jasmonate (MeJA) has been shown to induce autophagy in various plant stress responses and metabolic pathways. MYC2 is involved in MeJA-mediated postharvest fruit biological metabolism, but it is unclear how it affects MeJA-induced fruit autophagy. In this study, we noticed that silencing SlMY...

Descripción completa

Detalles Bibliográficos
Autores principales: Min, Dedong, Li, Fujun, Ali, Maratab, Liu, Jiong, Fu, Xiaodong, Song, Yanan, Ding, Jun, Li, Xiaoan, Ji, Nana, Zhang, Xinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10031729/
https://www.ncbi.nlm.nih.gov/pubmed/36968182
http://dx.doi.org/10.1093/hr/uhad012
_version_ 1784910668222169088
author Min, Dedong
Li, Fujun
Ali, Maratab
Liu, Jiong
Fu, Xiaodong
Song, Yanan
Ding, Jun
Li, Xiaoan
Ji, Nana
Zhang, Xinhua
author_facet Min, Dedong
Li, Fujun
Ali, Maratab
Liu, Jiong
Fu, Xiaodong
Song, Yanan
Ding, Jun
Li, Xiaoan
Ji, Nana
Zhang, Xinhua
author_sort Min, Dedong
collection PubMed
description Methyl jasmonate (MeJA) has been shown to induce autophagy in various plant stress responses and metabolic pathways. MYC2 is involved in MeJA-mediated postharvest fruit biological metabolism, but it is unclear how it affects MeJA-induced fruit autophagy. In this study, we noticed that silencing SlMYC2 significantly reduced the increase in autophagy-related genes (SlATGs) expression induced by MeJA. SlMYC2 could also bind to the promoters of several SlATGs, including SlATG13a, SlATG13b, SlATG18a, and SlATG18h, and activate their transcript levels. Moreover, SlMsrB5, a methionine sulfoxide reductase, could interact with SlMYC2. Methionine oxidation in SlMYC2 and mimicking sulfoxidation in SlMYC2 by mutation of methionine-542 to glutamine reduced the DNA-binding ability and transcriptional activity of SlMYC2, respectively. SlMsrB5 partially repaired oxidized SlMYC2 and restored its DNA-binding ability. On the other hand, silencing SlMsrB5 inhibited the transcript levels of SlMYC2-targeted genes (SlATG13a, SlATG13b, SlATG18a, and SlATG18h). Similarly, dual-luciferase reporter (DLR) analysis revealed that SlMsrB5–SlMYC2 interaction significantly increased the ability of SlMYC2-mediated transcriptional activation of SlATG13a, SlATG13b, SlATG18a, and SlATG18h. These findings demonstrate that SlMsrB5-mediated cyclic oxidation/reduction of methionine in SlMYC2 influences SlATGs expression. Collectively, these findings reveal the mechanism of SlMYC2 in SlATGs transcriptional regulation, providing insight into the mechanism of MeJA-mediated postharvest fruit quality regulation.
format Online
Article
Text
id pubmed-10031729
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-100317292023-03-23 Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit Min, Dedong Li, Fujun Ali, Maratab Liu, Jiong Fu, Xiaodong Song, Yanan Ding, Jun Li, Xiaoan Ji, Nana Zhang, Xinhua Hortic Res Article Methyl jasmonate (MeJA) has been shown to induce autophagy in various plant stress responses and metabolic pathways. MYC2 is involved in MeJA-mediated postharvest fruit biological metabolism, but it is unclear how it affects MeJA-induced fruit autophagy. In this study, we noticed that silencing SlMYC2 significantly reduced the increase in autophagy-related genes (SlATGs) expression induced by MeJA. SlMYC2 could also bind to the promoters of several SlATGs, including SlATG13a, SlATG13b, SlATG18a, and SlATG18h, and activate their transcript levels. Moreover, SlMsrB5, a methionine sulfoxide reductase, could interact with SlMYC2. Methionine oxidation in SlMYC2 and mimicking sulfoxidation in SlMYC2 by mutation of methionine-542 to glutamine reduced the DNA-binding ability and transcriptional activity of SlMYC2, respectively. SlMsrB5 partially repaired oxidized SlMYC2 and restored its DNA-binding ability. On the other hand, silencing SlMsrB5 inhibited the transcript levels of SlMYC2-targeted genes (SlATG13a, SlATG13b, SlATG18a, and SlATG18h). Similarly, dual-luciferase reporter (DLR) analysis revealed that SlMsrB5–SlMYC2 interaction significantly increased the ability of SlMYC2-mediated transcriptional activation of SlATG13a, SlATG13b, SlATG18a, and SlATG18h. These findings demonstrate that SlMsrB5-mediated cyclic oxidation/reduction of methionine in SlMYC2 influences SlATGs expression. Collectively, these findings reveal the mechanism of SlMYC2 in SlATGs transcriptional regulation, providing insight into the mechanism of MeJA-mediated postharvest fruit quality regulation. Oxford University Press 2023-02-01 /pmc/articles/PMC10031729/ /pubmed/36968182 http://dx.doi.org/10.1093/hr/uhad012 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nanjing Agricultural University. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Min, Dedong
Li, Fujun
Ali, Maratab
Liu, Jiong
Fu, Xiaodong
Song, Yanan
Ding, Jun
Li, Xiaoan
Ji, Nana
Zhang, Xinhua
Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title_full Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title_fullStr Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title_full_unstemmed Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title_short Interaction of methionine sulfoxide reductase B5 with SlMYC2 stimulates the transcription of MeJA-mediated autophagy-related genes in tomato fruit
title_sort interaction of methionine sulfoxide reductase b5 with slmyc2 stimulates the transcription of meja-mediated autophagy-related genes in tomato fruit
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10031729/
https://www.ncbi.nlm.nih.gov/pubmed/36968182
http://dx.doi.org/10.1093/hr/uhad012
work_keys_str_mv AT mindedong interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT lifujun interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT alimaratab interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT liujiong interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT fuxiaodong interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT songyanan interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT dingjun interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT lixiaoan interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT jinana interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit
AT zhangxinhua interactionofmethioninesulfoxidereductaseb5withslmyc2stimulatesthetranscriptionofmejamediatedautophagyrelatedgenesintomatofruit