Transcript analysis of the c-vac region and differential synthesis of the two regulatory gas vesicle proteins GvpD and GvpE in Halobacterium salinarium PHH4
Open Access
- 1 July 1996
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 178 (14) , 4012-4019
- https://doi.org/10.1128/jb.178.14.4012-4019.1996
Abstract
Halobacterium salinarium PHH4 synthesizes gas vesicles in the stationary growth phase by the expression of 14 gyp genes arranged in two clusters. The chromosomal gvpACNO (c-gvpACNO) gene cluster (encoding the major structural gas vesicle protein GvpA and the minor structural protein GvpC was transcribed as three mRNA species starting at one promoter during the stationary phase of growth. The second gene cluster, c-gvpDEFGHIKLM), was transcribed during all stages of growth as a relatively unstable, single mRNA with a maximal length of 6 kb. In addition, a 1.7-kb c-gvpD transcript was synthesized during stationary growth starting at the same promotor as that of the cgvpDEFGHIJKLM mRNA. The expression of the first two genes located in this unit (c-gvpD and c-gvpE) was also monitored by Western blot (immunoblot) analyses using antisera raised against these proteins synthesized in Escherichia coli. While the cGvpD protein was present only during early exponential growth and disappeared during gas vesicle formation, the cGvpE protein was present during cGvpA and gas vesicle synthesis in the early stationary phase of growth. Previous data indicated that cGvpD is involved in repression of gas vesicle formation, whereas cGvpE is a transcriptional activator for the c-gvpA promoter. The appearance of both proteins during the growth cycle is in line with the functions of these proteins in gas vesicle synthesis. The mechanism of the differential translation of cGvpD and cGvpE from the c-gvpDEFGHIJKLM rnRNA still has to be elucidated, but antisense RNAs complementary to the 5' terminus as well as the 3' portion of the c-gvpD mRNA might be involved in this regulation. Such RNAs occurred during early stationary growth when the cGvpD protein level decreased and may possibly inhibit the translation of the c-gvpD mRNA.Keywords
This publication has 33 references indexed in Scilit:
- Complementation studies with the gas vesicle‐encoding p‐vac region of Halobacterium salinarium PHH1 reveal a regulatory role for the p‐gvpDE genesMolecular Microbiology, 1995
- Natronobacterium vacuolata sp. nov., a Haloalkaliphilic Archaeon Isolated from Lake Magadi, KenyaInternational Journal of Systematic and Evolutionary Microbiology, 1993
- Antisense RNA mediates transcriptional processing in an archaebacterium, indicating a novel kind of RNase activityMolecular Microbiology, 1993
- Functional analysis of the gas vesicle gene cluster of the halophilic archaeon Haloferax mediterranei defines the vac‐region boundary and suggests a regulatory role for the gvpD gene or its productMolecular Microbiology, 1992
- Three different but related gene clusters encoding gas vesicles in halophilic archaeaJournal of Molecular Biology, 1992
- A DNA region of 9kbp contains all genes necessary for gas vesicle synthesis in halophilic archaebacteriaMolecular Microbiology, 1991
- Hormogonium Differentiation in the Cyanobacterium Calothrix: A Photoregulated Developmental Process.Plant Cell, 1991
- Hormogonium Differentiation in the Cyanobacterium Calothrix: A Photoregulated Developmental ProcessPlant Cell, 1991
- A plasmid‐encoded gas vesicle protein gene in a halophilic archaebacteriumMolecular Microbiology, 1987
- Transcriptional analysis of the cyanobacterial gvpABC operon in differentiated cells: occurrence of an antisense RNA complementary to three overlapping transcriptsGene, 1987