Interactome analysis of transcriptional coactivator multiprotein bridging factor 1 unveils a yeast AP-1-like transcription factor involved in oxidation tolerance of mycopathogen Beauveria bassiana
Oxidation tolerance is an important determinant to predict the virulence and biocontrol potential of Beauveria bassiana , a well-known entomopathogenic fungus. As a transcriptional coactivator, multiprotein bridging factor 1 mediates the activity of transcription factor in diverse physiological proc...
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Veröffentlicht in: | Current genetics 2018-02, Vol.64 (1), p.275-284 |
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Sprache: | eng |
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Zusammenfassung: | Oxidation tolerance is an important determinant to predict the virulence and biocontrol potential of
Beauveria bassiana
, a well-known entomopathogenic fungus. As a transcriptional coactivator, multiprotein bridging factor 1 mediates the activity of transcription factor in diverse physiological processes, and its homolog in
B. bassiana
(
BbMBF1
) contributes to fungal oxidation tolerance. In this study, the BbMBF1-interactomes under oxidative stress and normal growth condition were deciphered by mass spectrometry integrated with the immunoprecipitation. BbMBF1p factor has a broad interaction with proteins that are involved in various cellular processes, and this interaction is dynamically regulated by oxidative stress. Importantly, a
B. bassiana
homolog of yeast AP-1-like transcription factor (
BbAP
-
1
) was specifically associated with the BbMBF1-interactome under oxidation and significantly contributed to fungal oxidation tolerance. In addition, qPCR analysis revealed that several antioxidant genes are jointly controlled by
BbAP
-
1
and
BbMBF1
. Conclusively, it is proposed that BbMBF1p protein mediates BbAP-1p factor to transcribe the downstream antioxidant genes in
B. bassiana
under oxidative stress. This study demonstrates for the first time a proteomic view of the MBF1-interactome in fungi, and presents an initial framework to probe the transcriptional mechanism involved in fungal response to oxidation, which will provide a new strategy to improve the biocontrol efficacy of
B. bassiana
. |
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ISSN: | 0172-8083 1432-0983 |
DOI: | 10.1007/s00294-017-0741-4 |