The RNA binding protein CsrA controls cyclic di-GMP metabolism by directly regulating the expression of GGDEF proteins

被引:141
作者
Jonas, Kristina [1 ,2 ]
Edwards, Adrianne N. [3 ]
Simm, Roger [2 ]
Romeo, Tony [3 ,4 ]
Romling, Ute [2 ]
Melefors, Ojar [1 ,2 ]
机构
[1] Swedish Inst Infect Dis Control, SE-17182 Solna, Sweden
[2] Karolinska Inst, Dept Microbiol Tumor & Cell Biol, SE-17177 Stockholm, Sweden
[3] Emory Univ, Sch Med, Dept Microbiol & Immunol, Atlanta, GA 30322 USA
[4] Univ Florida, Dept Microbiol & Cell Sci, Gainesville, FL 32611 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1111/j.1365-2958.2008.06411.x
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
The carbon storage regulator CsrA is an RNA binding protein that controls carbon metabolism, biofilm formation and motility in various eubacteria. Nevertheless, in Escherichia coli only five target mRNAs have been shown to be directly regulated by CsrA at the post-transcriptional level. Here we identified two new direct targets for CsrA, ycdT and ydeH, both of which encode proteins with GGDEF domains. A csrA mutation caused mRNA levels of ycdT and ydeH to increase more than 10-fold. RNA mobility shift assays confirmed the direct and specific binding of CsrA to the mRNA leaders of ydeH and ycdT. Overexpression of ycdT and ydeH resulted in a more than 20-fold increase in the cellular concentration of the second messenger cyclic di-GMP (c-di-GMP), implying that both proteins possess diguanylate cyclase activity. Phenotypic characterization revealed that both proteins are involved in the regulation of motility in a c-di-GMP-dependent manner. CsrA was also found to regulate the expression of five additional GGDEF/EAL proteins and a csrA mutation led to modestly increased cellular levels of c-di-GMP. All together, these data demonstrate a global role for CsrA in the regulation of c-di-GMP metabolism by regulating the expression of GGDEF proteins at the post-transcriptional level.
引用
收藏
页码:236 / 257
页数:22
相关论文
共 74 条
[1]   Cell cycle-dependent degradation of a flagellar motor component requires a novel-type response regulator [J].
Aldridge, P ;
Jenal, U .
MOLECULAR MICROBIOLOGY, 1999, 32 (02) :379-391
[2]   Regulation of Salmonella enterica serovar typhimurium invasion genes by csrA [J].
Altier, C ;
Suyemoto, M ;
Lawhon, SD .
INFECTION AND IMMUNITY, 2000, 68 (12) :6790-6797
[3]  
Ausmees N, 2001, FEMS MICROBIOL LETT, V204, P163, DOI 10.1111/j.1574-6968.2001.tb10880.x
[4]  
BABITZKE P, 1994, J BIOL CHEM, V269, P16597
[5]   CsrB sRNA family: sequestration of RNA-binding regulatory proteins [J].
Babitzke, Paul ;
Romeo, Tony .
CURRENT OPINION IN MICROBIOLOGY, 2007, 10 (02) :156-163
[6]   CsrA inhibits translation initiation of Escherichia coli hfq by binding to a single site overlapping the Shine-Dalgarno sequence [J].
Baker, Carol S. ;
Eoery, Lel A. ;
Yakhnin, Helen ;
Mercante, Jeffrey ;
Romeo, Tony ;
Babitzke, Paul .
JOURNAL OF BACTERIOLOGY, 2007, 189 (15) :5472-5481
[7]   CsrA regulates glycogen biosynthesis by preventing translation of glgC in Escherichia coli [J].
Baker, CS ;
Morozov, I ;
Suzuki, K ;
Romeo, T ;
Babitzke, P .
MOLECULAR MICROBIOLOGY, 2002, 44 (06) :1599-1610
[8]   Global regulation of virulence and the stress response by CsrA in the highly adapted human gastric pathogen Helicobacter pylori [J].
Barnard, FM ;
Loughlin, MF ;
Fainberg, HP ;
Messenger, MP ;
Ussery, DW ;
Williams, P ;
Jenks, PJ .
MOLECULAR MICROBIOLOGY, 2004, 51 (01) :15-32
[9]   Insights into Yersinia pestis biofilm development:: topology and co-interaction of Hms inner membrane proteins involved in exopolysaccharide production [J].
Bobrov, Alexander G. ;
Kirillina, Olga ;
Forman, Stanislav ;
Mack, Dietrich ;
Perry, Robert D. .
ENVIRONMENTAL MICROBIOLOGY, 2008, 10 (06) :1419-1432
[10]   Structural basis of activity and allosteric control of diguanylate cyclase [J].
Chan, C ;
Paul, R ;
Samoray, D ;
Amiot, NC ;
Giese, B ;
Jenal, U ;
Schirmer, T .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (49) :17084-17089