Bacterial signal transduction by cyclic Di-GMP and other nucleotide second messengers
File(s)Hengge et al._101925_1_merged_1432051500[1].pdf (11.21 MB)
Accepted version
Author(s)
Hengge, R
Gruendling, A
Jenal, U
Ryan, R
Yildiz, F
Type
Journal Article
Abstract
The first International Symposium on c-Di-GMP Signaling in Bacteria (22 to 25 March 2015, Harnack-Haus, Berlin, Germany) brought together 131 molecular microbiologists from 17 countries to discuss recent progress in our knowledge of bacterial nucleotide second messenger signaling. While the focus was on signal input, synthesis, degradation, and the striking diversity of the modes of action of the current second messenger paradigm, i.e., cyclic di-GMP (c-di-GMP), “classics” like cAMP and (p)ppGpp were also presented, in novel facets, and more recent “newcomers,” such as c-di-AMP and c-AMP-GMP, made an impressive appearance. A number of clear trends emerged during the 30 talks, on the 71 posters, and in the lively discussions, including (i) c-di-GMP control of the activities of various ATPases and phosphorylation cascades, (ii) extensive cross talk between c-di-GMP and other nucleotide second messenger signaling pathways, and (iii) a stunning number of novel effectors for nucleotide second messengers that surprisingly include some long-known master regulators of developmental pathways. Overall, the conference made it amply clear that second messenger signaling is currently one of the most dynamic fields within molecular microbiology, with major impacts in research fields ranging from human health to microbial ecology.
Date Issued
2015-06-08
Date Acceptance
2015-06-08
Citation
Journal of Bacteriology, 2015, 198 (1), pp.15-26
ISSN
1098-5530
Publisher
American Society for Microbiology
Start Page
15
End Page
26
Journal / Book Title
Journal of Bacteriology
Volume
198
Issue
1
Copyright Statement
© 2015, American Society for Microbiology. All Rights Reserved.
Subjects
Science & Technology
Life Sciences & Biomedicine
Microbiology
RADIAL CAPILLARY ACTION
PSEUDOMONAS-AERUGINOSA
ESCHERICHIA-COLI
BACILLUS-SUBTILIS
ADENINE RIBONUCLEOTIDE
CATABOLITE REPRESSION
MOLECULAR-MECHANISMS
STOCHASTIC INDUCTION
TRANSCRIPTION FACTOR
BIOFILM FORMATION
Publication Status
Published