Stress-Induced Membrane Association of the Streptococcus mutans GTP-Binding Protein, an Essential G Protein, and Investigation of Its Physiological Role by Utilizing an Antisense RNA Strategy
- 1 September 1999
- journal article
- research article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 67 (9) , 4510-4516
- https://doi.org/10.1128/iai.67.9.4510-4516.1999
Abstract
SGP (for Streptococcus GTP-binding protein) is a Streptococcus mutans essential GTPase which has significant sequence identity to the previously identified Escherichia coli Era protein and to numerous other prokaryotic GTPase proteins of unknown function. Recent studies in our laboratory have addressed the possible role of SGP in the stress response of the oral pathogen S. mutans . Here we report that during growth in the early stationary phase, and in response to elevated temperatures or acidic pH, the distribution of SGP between the cytoplasm and the membranes of S. mutans cells varies. Immunoblot analysis of soluble and membrane protein fractions collected from the mid-log and early stationary growth phases of bacterial populations grown at normal temperature (37°C) and at the elevated temperature of 43°C, or at acidic pH, demonstrated that the total amount of SGP increased with the age of the bacterial culture, elevated temperature, or acidic pH. Furthermore, it was established that a substantial amount of SGP is associated with the membrane fraction under stress conditions. In order to investigate the physiological role of SGP, we constructed an S. mutans strain capable of chromosomal sgp antisense RNA expression, which interferes with the normal information processing of the sgp gene. Utilizing this strain, we determined conditions whereby the streptococcal cells can be depleted of SGP, thus avoiding the problem of constructing a conditional lethal system. From the results of measurements of the nucleotide pools extracted from the antisense strain and its isogenic counterpart, we propose that one of the physiological roles of SGP is regulation and modulation of the GTP/GDP ratio under different growth conditions. Moreover, we observed that in SGP-depleted cells the levels of glucan-binding protein A (GbpA) substantially increased, suggesting that GbpA may have stress response-related physiological functions. Finally, the potential applications of the antisense RNA approach that we employed are discussed.Keywords
This publication has 35 references indexed in Scilit:
- Thesgpgene modulates stress responses ofStreptococcus mutans: utilization of an antisense RNA strategy to investigate essential gene functionsFEMS Microbiology Letters, 1998
- The regulation of Streptococcus mutans glucan-binding protein A expressionFEMS Microbiology Letters, 1997
- Characterization of the autophosphorylation of Era, an essential Escherichia coli GTPaseMolecular Microbiology, 1994
- Activation of a Small GTP-Binding Protein by Nucleoside Diphosphate KinaseScience, 1991
- Pleiotropic changes resulting from depletion of Era, an essential GTP‐binding protein in Escherichia coliMolecular Microbiology, 1991
- The GTPase superfamily: conserved structure and molecular mechanismNature, 1991
- Evidence for complex formation between GTP binding protein(Gs) and membrane-associated nucleoside diphosphate kinaseBiochemical and Biophysical Research Communications, 1990
- Direct interaction between membrane-associated nucleoside diphosphate kinase and GTP-binding protein(Gs), and its regulation by hormones and guanine nucleotidesBiochemical and Biophysical Research Communications, 1988
- Occurrence of the Stringent Response in Streptomyces sp. and its Significance for the Initiation of Morphological and Physiological DifferentiationMicrobiology, 1986
- Improved M13 phage cloning vectors and host strains: nucleotide sequences of the M13mpl8 and pUC19 vectorsGene, 1985