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Regulation of fungal raw-starch-degrading enzyme production depends on transcription factor phosphorylation and recruitment of the Mediator complex
Filamentous fungus can produce raw-starch-degrading enzyme (RSDE) that efficiently degrades raw starch below starch gelatinization temperature. Employment of RSDE in starch processing can save energy. A key putative transcription factor PoxRsrA (production of r aw- s tarch-degrading enzyme r egulati...
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Published in: | Communications biology 2023-10, Vol.6 (1), p.1032-1032, Article 1032 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | Filamentous fungus can produce raw-starch-degrading enzyme (RSDE) that efficiently degrades raw starch below starch gelatinization temperature. Employment of RSDE in starch processing can save energy. A key putative transcription factor PoxRsrA (production of
r
aw-
s
tarch-degrading enzyme
r
egulation in
P
enicillium
ox
alicum
) was identified to regulate RSDE production in
P. oxalicum
; however, its regulatory mechanism remains unclear. Here we show that PoxRsrA
1434–1730
was the transcriptional activation domain, with essential residues, D1508, W1509 and M1510. SANT (
S
WI3,
A
DA2,
N
-CoR and
T
FIIIB)-like domain 1 (SANT1) bound to DNA at the sequence 5′-RHCDDGGD-3′ in the promoter regions of genes encoding major amylases, with an essential residue, R866. SANT2 interacted with a putative 3-hydroxyisobutyryl-CoA hydrolase, which suppressed phosphorylation at tyrosines Y1127 and Y1170 of PoxRsrA
901–1360
, thereby inhibiting RSDE biosynthesis. PoxRsrA
1135–1439
regulated mycelial sporulation by interacting with Mediator subunit Med6, whereas PoxRsrA
1440–1794
regulated RSDE biosynthesis by binding to Med31. Overexpression of
PoxRsrA
increased sporulation and RSDE production. These findings provide insights into the regulatory mechanisms of fungal RSDE biosynthesis.
Transcription factor PoxRsrA of
Penicillium oxalicum
is a nuclear protein containing two SANT domains with different functions, and regulates raw-starch-degrading enzyme production. |
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ISSN: | 2399-3642 2399-3642 |
DOI: | 10.1038/s42003-023-05404-x |