» Articles » PMID: 23893734

An RpoS-dependent SRNA Regulates the Expression of a Chaperone Involved in Protein Folding

Overview
Journal RNA
Specialty Molecular Biology
Date 2013 Jul 30
PMID 23893734
Citations 23
Authors
Affiliations
Soon will be listed here.
Abstract

Small noncoding RNAs (sRNAs) are usually expressed in the cell to face a variety of stresses. In this report we disclose the first target for SraL (also known as RyjA), a sRNA present in many bacteria, which is highly induced in stationary phase. We also demonstrate that this sRNA is directly transcribed by the major stress σ factor σ(S) (RpoS) in Salmonella enterica serovar Typhimurium. We show that SraL sRNA down-regulates the expression of the chaperone Trigger Factor (TF), encoded by the tig gene. TF is one of the three major chaperones that cooperate in the folding of the newly synthesized cytosolic proteins and is the only ribosome-associated chaperone known in bacteria. By use of bioinformatic tools and mutagenesis experiments, SraL was shown to directly interact with the 5' UTR of the tig mRNA a few nucleotides upstream of the Shine-Dalgarno region. Namely, point mutations in the sRNA (SraL*) abolished the repression of tig mRNA and could only down-regulate a tig transcript target with the respective compensatory mutations. We have also validated in vitro that SraL forms a stable duplex with the tig mRNA. This work constitutes the first report of a small RNA affecting protein folding. Taking into account that both SraL and TF are very well conserved in enterobacteria, this work will have important repercussions in the field.

Citing Articles

A paradox of bacterial persistence and antibiotic resistance: chloramphenicol acetyl transferase as a double barrel shot gun.

Alves da Silva A, Silva I, Arraiano C Microlife. 2023; 4:uqad034.

PMID: 37781689 PMC: 10540939. DOI: 10.1093/femsml/uqad034.


FinO/ProQ-family proteins: an evolutionary perspective.

Liao Z, Smirnov A Biosci Rep. 2023; 43(3).

PMID: 36787218 PMC: 9977716. DOI: 10.1042/BSR20220313.


In vivo targets of Salmonella FinO include a FinP-like small RNA controlling copy number of a cohabitating plasmid.

El Mouali Y, Gerovac M, Mineikaite R, Vogel J Nucleic Acids Res. 2021; 49(9):5319-5335.

PMID: 33939833 PMC: 8136791. DOI: 10.1093/nar/gkab281.


Systems Analyses Reveal the Resilience of Escherichia coli Physiology during Accumulation and Export of the Nonnative Organic Acid Citramalate.

Webb J, Springthorpe V, Rossoni L, Minde D, Langer S, Walker H mSystems. 2019; 4(4).

PMID: 31186337 PMC: 6561320. DOI: 10.1128/mSystems.00187-19.


SraL sRNA interaction regulates the terminator by preventing premature transcription termination of mRNA.

Silva I, Barahona S, Eyraud A, Lalaouna D, Figueroa-Bossi N, Masse E Proc Natl Acad Sci U S A. 2019; 116(8):3042-3051.

PMID: 30718400 PMC: 6386699. DOI: 10.1073/pnas.1811589116.


References
1.
Valent Q, Kendall D, High S, Kusters R, Oudega B, Luirink J . Early events in preprotein recognition in E. coli: interaction of SRP and trigger factor with nascent polypeptides. EMBO J. 1995; 14(22):5494-505. PMC: 394663. DOI: 10.1002/j.1460-2075.1995.tb00236.x. View

2.
Raffaelle M, Kanin E, Vogt J, Burgess R, Ansari A . Holoenzyme switching and stochastic release of sigma factors from RNA polymerase in vivo. Mol Cell. 2005; 20(3):357-66. DOI: 10.1016/j.molcel.2005.10.011. View

3.
SCHMIEGER H . The fate of the bacterial chromosome in P22-infected cells of Salmonella typhimurium. Mol Gen Genet. 1971; 110(3):238-44. DOI: 10.1007/BF00337836. View

4.
Teter S, Houry W, Ang D, Tradler T, Rockabrand D, Fischer G . Polypeptide flux through bacterial Hsp70: DnaK cooperates with trigger factor in chaperoning nascent chains. Cell. 1999; 97(6):755-65. DOI: 10.1016/s0092-8674(00)80787-4. View

5.
Garcia-Del Portillo F, Calvo E, DOrazio V, Pucciarelli M . Association of ActA to peptidoglycan revealed by cell wall proteomics of intracellular Listeria monocytogenes. J Biol Chem. 2011; 286(40):34675-89. PMC: 3186376. DOI: 10.1074/jbc.M111.230441. View