CtsR, the Master Regulator of Stress-Response in Oenococcus oeni, Is a Heat Sensor Interacting With CIpL1

被引:14
|
作者
Darsonval, Maud [1 ]
Frederique Julliat [1 ]
Msadek, Tarek [2 ,3 ]
Alexandre, Herve [1 ,4 ]
Grandvalet, Cosette [1 ,5 ]
机构
[1] Univ Bourgogne Franche Comte, AgroSup Dijon, UMR A 02 102 Proc Alimentaires & Microbiol, Dijon, France
[2] Inst Pasteur, Unite Biol Batteries Pathogenes Gram Positif, Paris, France
[3] CNRS ERL 6002, Paris, France
[4] Inst Univ Vigne & Vin Jules Guyot, Dijon, France
[5] AgroSup Dijon, Inst Natl Super Sci Agron Alimentat & Envirorm, Dijon, France
来源
关键词
Oenococcus oeni; stress response; CtsR; RNA silencing; heterologous expression system; two-hybrid system; BACTERIAL 2-HYBRID SYSTEM; LACTIC-ACID BACTERIA; BACILLUS-SUBTILIS; MEMBRANE-FLUIDITY; LEUCONOSTOC-OENOS; GENE-EXPRESSION; SHOCK-PROTEIN; COMPETENCE DEVELOPMENT; LACTOCOCCUS-LACTIS; SIGNALING CASCADE;
D O I
10.3389/fmicb.2018.03135
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Oenococcus oeni is a lactic acid bacterium responsible for malolactic fermentation of wine. While many stress response mechanisms implemented by O. oeni during wine adaptation have been described, little is known about their regulation. CtsR is the only regulator of stress response genes identified to date in O. oeni. Extensively characterized in Bacillus subtilis, the CtsR repressor is active as a dimer at 37 degrees C and degraded at higher temperatures by a proteolytic mechanism involving two adapter proteins, McsA and McsB, together with the CIpCP complex. The O. oeni genome does not encode orthologs of these adapter proteins and the regulation of CtsR activity remains unknown. In this study, we investigate CtsR function in O. oeni by using antisense RNA silencing in vivo to modulate ctsR gene expression. Inhibition of ctsR gene expression by asRNA leads to a significant loss in cultivability after heat shock (58%) and acid shock (59%) highlighting the key role of CtsR in the O. oeni stress response. Regulation of CtsR activity was studied using a heterologous expression system to demonstrate that O. oeni CtsR controls expression and stress induction of the O. oeni hsp18 gene when produced in a ctsR-deficient B. subtilis strain. Under heat stress conditions, O. oeni CtsR acts as a temperature sensor and is inactivated at growth temperatures above 33 degrees C. Finally, using an E. coli bacterial two-hybrid system, we showed that CtsR and CIpL1 interact, suggesting a key role for CIpL1 in controlling CtsR activity in O. oeni.
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页数:14
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