Biochemical characterization of a regulatory cascade controlling transcription of the Pseudomonas aeruginosa type III secretion system

被引:29
作者
Zheng, Zhida
Chen, Guozhou
Joshi, Shreyas
Brutinel, Evan D.
Yahr, Timothy L.
Chen, Lingling
机构
[1] Indiana Univ, Dept Biol, Bloomington, IN 47405 USA
[2] Indiana Univ, Interdisciplinary Biochem Program, Bloomington, IN 47405 USA
[3] Univ Iowa, Dept Microbiol, Iowa City, IA 52242 USA
关键词
D O I
10.1074/jbc.M611664200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Many Gram-negative pathogens utilize type III secretion systems (T3SS) to translocate effector proteins into eukaryotic host cells. Expression of T3SS genes is highly regulated and is often coupled to type III secretory activity. Transcription of the Pseudomonas aeruginosa T3SS genes is coupled to secretion by a cascade of interacting regulatory proteins (ExsA, ExsD, ExsC, and ExsE). ExsA is an activator of type III gene transcription, ExsD binds ExsA to inhibit: transcription, ExsC inhibits ExsD activity, and ExsE inhibits ExsC activity. The entire process is coupled to secretion by virtue of the fact that ExsE is a secreted substrate of the T3SS. Changes in the intracellular concentration of ExsE are thought to govern formation of the ExsC-ExsE, ExsC-ExsD, and ExsD-ExsA complexes. Whereas formation of the ExsC-ExsE complex allows ExsD to bind ExsA and transcription of the T3SS is repressed, formation of the ExsC-ExsD complex sequesters ExsD from ExsA and transcription of the T3SS is induced. In this study, we characterized the self-association states of ExsC, ExsD, and ExsE and the binding interactions of ExsC with ExsE and ExsD. ExsC exists as a homodimer and binds one molecule of ExsE substrate. Dimeric ExsC also interacts directly with ExsD to form a heterotetrameric complex. The difference in binding affinities between the ExsC-ExsE (K-d 1nm) and ExsC-ExsD (K-d 18 nm) complexes supports a model in which ExsC preferentially binds cytoplasmic ExsE, resulting in the inhibition of T3SS gene transcription.
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收藏
页码:6136 / 6142
页数:7
相关论文
共 24 条
[1]   Pseudomonas aeruginosa ExoS and ExoT [J].
Barbieri, JT ;
Sun, J .
REVIEWS OF PHYSIOLOGY, BIOCHEMICAL AND PHARMACOLOGY, VOL 152, 2005, 152 :79-92
[2]   Structure of the Yersinia type III secretory system chaperone SycE [J].
Birtalan, S ;
Ghosh, P .
NATURE STRUCTURAL BIOLOGY, 2001, 8 (11) :974-978
[3]   Three-dimensional secretion signals in chaperone-effector complexes of bacterial pathogens [J].
Birtalan, SC ;
Phillips, RM ;
Ghosh, P .
MOLECULAR CELL, 2002, 9 (05) :971-980
[4]   A novel anti-anti-activator mechanism regulates expression of the Pseudomonas aeruginosa type III secretion system [J].
Dasgupta, N ;
Lykken, GL ;
Wolfgang, MC ;
Yahr, TL .
MOLECULAR MICROBIOLOGY, 2004, 53 (01) :297-308
[5]   The multitalented type III chaperones: all you can do with 15 kDa [J].
Feldman, MF ;
Cornelis, GR .
FEMS MICROBIOLOGY LETTERS, 2003, 219 (02) :151-158
[6]   The exoenzyme S regulon of Pseudomonas aeruginosa [J].
Frank, DW .
MOLECULAR MICROBIOLOGY, 1997, 26 (04) :621-629
[7]   CLONING AND SEQUENCE-ANALYSIS OF A TRANSREGULATORY LOCUS REQUIRED FOR EXOENZYME-S SYNTHESIS IN PSEUDOMONAS-AERUGINOSA [J].
FRANK, DW ;
IGLEWSKI, BH .
JOURNAL OF BACTERIOLOGY, 1991, 173 (20) :6460-6468
[8]   Identification of a specific chaperone for SptP, a substrate of the centisome 63 type III secretion system of Salmonella typhimurium [J].
Fu, YX ;
Galán, JE .
JOURNAL OF BACTERIOLOGY, 1998, 180 (13) :3393-3399
[9]   Process of protein transport by the type III secretion system [J].
Ghosh, P .
MICROBIOLOGY AND MOLECULAR BIOLOGY REVIEWS, 2004, 68 (04) :771-+
[10]   SIZE EXCLUSION CHROMATOGRAPHY AND UNIVERSAL CALIBRATION OF GEL COLUMNS [J].
LEMAIRE, M ;
VIEL, A ;
MOLLER, JV .
ANALYTICAL BIOCHEMISTRY, 1989, 177 (01) :50-56