J Bacteriol. 1989 March; 171(3): 1362-1371
The Bacillus subtilis spo0B stage 0 sporulation operon encodes an essential GTP-binding protein.
K Trach and
J A Hoch
Department of Basic and Clinical Research, Research Institute of Scripps Clinic, La Jolla, California 92037.
ABSTRACT
Transcription of the spo0B gene and genes downstream of it was investigated by S1 nuclease protection experiments. The spo0B gene was transcribed from a single promoter, and this transcript extended through a gene, obg, coding for a 47,668 Mr protein. Transcription of this operon ended in a stem-loop structure. The sequence of the deduced obg protein contained a region with homology to known GTP-binding proteins in the nucleotide-binding regions. The amino-terminal portion of this protein showed homology to mammalian collagen, suggesting a structural role. The purified obg protein was shown to bind [alpha-32P]GTP in vitro. Several attempts to inactivate the obg gene were unsuccessful, indicating that the obg gene product was essential for growth. The possible function of this protein and its relationship to RAS-like proteins and sporulation was discussed. Immediately downstream of the obg gene were two genes involved in phenylalanine biosynthesis, pheB and pheA. The pheA gene coded for monofunctional prephenate dehydratase, on the basis of the high homology of the deduced amino acid sequence to prephenate dehydratases of bacterial origin. The sequence of the pheB gene product was not homologous to chorismate mutase, and its function remains unknown. Transcription of the phe genes was shown to begin at the stem-loop structure between obg and pheB. The possibility was entertained that phe gene transcription arises from processing or antitermination of the spo0B transcript.
J Bacteriol. 1989 March; 171(3): 1362-1371
This article has been cited by other articles:
-
Koller-Eichhorn, R., Marquardt, T., Gail, R., Wittinghofer, A., Kostrewa, D., Kutay, U., Kambach, C.
(2007). Human OLA1 Defines an ATPase Subfamily in the Obg Family of GTP-binding Proteins. J. Biol. Chem.
282: 19928-19937
[Abstract]
[Full Text]
-
Raskin, D. M., Judson, N., Mekalanos, J. J.
(2007). Regulation of the stringent response is the essential function of the conserved bacterial G protein CgtA in Vibrio cholerae. Proc. Natl. Acad. Sci. USA
104: 4636-4641
[Abstract]
[Full Text]
-
Jiang, M., Datta, K., Walker, A., Strahler, J., Bagamasbad, P., Andrews, P. C., Maddock, J. R.
(2006). The Escherichia coli GTPase CgtAE Is Involved in Late Steps of Large Ribosome Assembly.. J. Bacteriol.
188: 6757-6770
[Abstract]
[Full Text]
-
Sikora, A. E., Zielke, R., Datta, K., Maddock, J. R.
(2006). The Vibrio harveyi GTPase CgtAV Is Essential and Is Associated with the 50S Ribosomal Subunit. J. Bacteriol.
188: 1205-1210
[Abstract]
[Full Text]
-
Sato, A., Kobayashi, G., Hayashi, H., Yoshida, H., Wada, A., Maeda, M., Hiraga, S., Takeyasu, K., Wada, C.
(2005). The GTP binding protein Obg homolog ObgE is involved in ribosome maturation. GENES CELLS
10: 393-408
[Abstract]
[Full Text]
-
Chen, C.-C., Yudkin, M. D., Delumeau, O.
(2004). Phosphorylation and RsbX-Dependent Dephosphorylation of RsbR in the RsbR-RsbS Complex of Bacillus subtilis. J. Bacteriol.
186: 6830-6836
[Abstract]
[Full Text]
-
Wout, P., Pu, K., Sullivan, S. M., Reese, V., Zhou, S., Lin, B., Maddock, J. R.
(2004). The Escherichia coli GTPase CgtAE Cofractionates with the 50S Ribosomal Subunit and Interacts with SpoT, a ppGpp Synthetase/Hydrolase. J. Bacteriol.
186: 5249-5257
[Abstract]
[Full Text]
-
Lin, B., Thayer, D. A., Maddock, J. R.
(2004). The Caulobacter crescentus CgtAC Protein Cosediments with the Free 50S Ribosomal Subunit. J. Bacteriol.
186: 481-489
[Abstract]
[Full Text]
-
Jensen, B. C., Wang, Q., Kifer, C. T., Parsons, M.
(2003). The NOG1 GTP-binding Protein Is Required for Biogenesis of the 60 S Ribosomal Subunit. J. Biol. Chem.
278: 32204-32211
[Abstract]
[Full Text]
-
Liu, D., Golden, J. W.
(2002). hetL Overexpression Stimulates Heterocyst Formation in Anabaena sp. Strain PCC 7120. J. Bacteriol.
184: 6873-6881
[Abstract]
[Full Text]
-
Minkovsky, N., Zarimani, A., Chary, V. K., Johnstone, B. H., Powell, B. S., Torrance, P. D., Court, D. L., Simons, R. W., Piggot, P. J.
(2002). Bex, the Bacillus subtilis Homolog of the Essential Escherichia coli GTPase Era, Is Required for Normal Cell Division and Spore Formation. J. Bacteriol.
184: 6389-6394
[Abstract]
[Full Text]
-
Li, X., Guan, M.-X.
(2002). A Human Mitochondrial GTP Binding Protein Related to tRNA Modification May Modulate Phenotypic Expression of the Deafness-Associated Mitochondrial 12S rRNA Mutation. Mol. Cell. Biol.
22: 7701-7711
[Abstract]
[Full Text]
-
Tan, J., Jakob, U., Bardwell, J. C. A.
(2002). Overexpression of Two Different GTPases Rescues a Null Mutation in a Heat-Induced rRNA Methyltransferase. J. Bacteriol.
184: 2692-2698
[Abstract]
[Full Text]
-
Wang, L., Fabret, C., Kanamaru, K., Stephenson, K., Dartois, V., Perego, M., Hoch, J. A.
(2001). Dissection of the Functional and Structural Domains of Phosphorelay Histidine Kinase A of Bacillus subtilis. J. Bacteriol.
183: 2795-2802
[Abstract]
[Full Text]
-
Ratnayake-Lecamwasam, M., Serror, P., Wong, K.-W., Sonenshein, A. L.
(2001). Bacillus subtilis CodY represses early-stationary-phase genes by sensing GTP levels. Genes Dev.
15: 1093-1103
[Abstract]
[Full Text]
-
Zielke, R., Wegrzyn, G.
(2001). A Vibrio harveyi insertional mutant in the cgtA (obg, yhbZ) gene, whose homologues are present in diverse organisms ranging from bacteria to humans and are essential genes in many bacterial species. Microbiology
147: 183-191
[Abstract]
[Full Text]
-
Prágai, Z., Harwood, C. R.
(2000). YsxC, a Putative GTP-Binding Protein Essential for Growth of Bacillus subtilis 168. J. Bacteriol.
182: 6819-6823
[Abstract]
[Full Text]
-
Scott, J. M., Ju, J., Mitchell, T., Haldenwang, W. G.
(2000). The Bacillus subtilis GTP Binding Protein Obg and Regulators of the sigma B Stress Response Transcription Factor Cofractionate with Ribosomes. J. Bacteriol.
182: 2771-2777
[Abstract]
[Full Text]
-
Scott, J. M., Mitchell, T., Haldenwang, W. G.
(2000). Stress Triggers a Process That Limits Activation of the Bacillus subtilis Stress Transcription Factor sigma B. J. Bacteriol.
182: 1452-1456
[Abstract]
[Full Text]
-
Lin, B., Covalle, K. L., Maddock, J. R.
(1999). The Caulobacter crescentus CgtA Protein Displays Unusual Guanine Nucleotide Binding and Exchange Properties. J. Bacteriol.
181: 5825-5832
[Abstract]
[Full Text]
-
Scott, J. M., Haldenwang, W. G.
(1999). Obg, an Essential GTP Binding Protein of Bacillus subtilis, Is Necessary for Stress Activation of Transcription Factor sigma B. J. Bacteriol.
181: 4653-4660
[Abstract]
[Full Text]
-
Tzeng, Y.-L., Zhou, X. Z., Hoch, J. A.
(1998). Phosphorylation of the Spo0B Response Regulator Phosphotransferase of the Phosphorelay Initiating Development in Bacillus subtilis. J. Biol. Chem.
273: 23849-23855
[Abstract]
[Full Text]
-
Hartzell, P. L.
(1997). Complementation of sporulation and motility defects in a prokaryote by a eukaryotic GTPase. Proc. Natl. Acad. Sci. USA
94: 9881-9886
[Abstract]
[Full Text]
-
Arvidson, C. G., So, M.
(1995). The Neisseria Transcriptional Regulator PilA Has a GTPase Activity. J. Biol. Chem.
270: 26045-26048
[Abstract]
[Full Text]
Copyright © 1989 by the American Society for Microbiology. All rights reserved.