| Literature DB >> 23419162 |
Kenji Manabe1, Yasushi Kageyama, Takuya Morimoto, Eri Shimizu, Hiroki Takahashi, Shigehiko Kanaya, Katsutoshi Ara, Katsuya Ozaki, Naotake Ogasawara.
Abstract
BACKGROUND: The Bacillus subtilis genome-reduced strain MGB874 exhibits enhanced production of exogenous extracellular enzymes under batch fermentation conditions. We predicted that deletion of the gene for RocG, a bi-functional protein that acts as a glutamate dehydrogenase and an indirect repressor of glutamate synthesis, would improve glutamate metabolism, leading to further increased enzyme production. However, deletion of rocG dramatically decreased production of the alkaline cellulase Egl-237 in strain MGB874 (strain 874∆rocG).Entities:
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Year: 2013 PMID: 23419162 PMCID: PMC3600796 DOI: 10.1186/1475-2859-12-18
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Figure 1Major reactions and regulation involved in glutamate metabolism in Proteins are shown as ovals. RocG, glutamate dehydrogenase; GltAB, glutamate synthase (GOGAT); GlnA, glutamine synthetase (GS). In B. subtilis, glutamate can be degraded by RocG. B. subtilis has a glutamine synthetase-glutamate synthase (GS-GOGAT) pathway for assimilation of ammonia. The RocR and GltC transcription factors positively regulate rocG and gltAB, respectively, and GltC can be inhibited via interaction with RocG. Open and closed gray ovals indicate proteins corresponding to genes that have been deleted or inactivated, respectively, in strain MGB874. Deletion of rocR in strain MGB874 decreases expression of rocG, which leads to an increase in expression of gltAB due to activation of GltC via disinhibition by RocG.
Figure 2Growth characteristics of strains MGB874 and 874ΔrocG producing the alkaline cellulase Egl-237. Strains MGB874 (open circles) or MGB874∆rocG (closed circles) were transformed with pHYS237 for production of alkaline cellulase Egl-237. The strains were cultured in 2xL medium containing 7.5% (w/v) maltose monohydrate by batch fermentation with a 30-L jar fermentor. Cell yield (A), extracellular cellulase activity (B), external pH of the growth media (C) and ammonia concentration in the growth media (D) were measured at the indicated times. Arrows indicate the point at which transcriptome analyses were conducted.
Genes up-regulated in 874ΔrocG cells (top-ranked 20 genes)
| ammonium transporter | ammonium uptake | 208 | 3926 | 18.91 | ||
| co-sigma factor with YvrHa | RNA polymerase sigma factor | 92 | 1266 | 13.78 | YvrH(+) | |
| unknown | unknown | 92 | 1078 | 11.72 | ||
| nitrate reductase (catalytic subunit) | utilization of nitrate | 128 | 1463 | 11.46 | GlnR(−), | |
| asparaginase | asparagine utilization | 202 | 1976 | 9.78 | ||
| transcription activator/ repressor | regulation of nitrogen assimilation | 103 | 981 | 9.56 | ||
| nitrate transporter | nitrate uptake | 227 | 1975 | 8.7 | GlnR(−), | |
| unknown | unknown | 119 | 977 | 8.23 | | |
| unknown | survival of ethanol stress | 158 | 1185 | 7.51 | | |
| nitrate reductase (electron transfer subunit) | utilization of nitrate | 180 | 1346 | 7.49 | GlnR(−), | |
| serine protease Do | protein quality control | 719 | 4742 | 6.6 | CssR(+), HtrA(−) | |
| unknown | unknown | 184 | 1156 | 6.29 | | |
| unknown | unknown | 248 | 1463 | 5.9 | LexA(−) | |
| dipicolinate synthase (subunit B) | dipicolic acid production | 82 | 475 | 5.8 | | |
| nitrogen-regulated PII-like protein | regulation of ammonium uptake | 821 | 4727 | 5.76 | ||
| sugar aminotransferase | synthesis of antibiotic neotrehalosadiamine | 133 | 707 | 5.33 | YhjM(+) | |
| multidrug resistance protein | multidrug resistance | 180 | 949 | 5.28 | | |
| sodium/proton-dependent alanine transporter | uptake of alanine | 327 | 1721 | 5.27 | | |
| unknown | unknown | 247 | 1301 | 5.26 | | |
| unknown | unknown | 146 | 758 | 5.2 | ||
aThe SubtiWiki was used as a reference for the genes, products and functions [21].
bThe average signal intensities of probes in each coding sequence.
cThe ratio of each of the genes was obtained by dividing the average signal intensity in each coding sequence of 874ΔrocG cells by that for MGB874 cells.
dThe Database of Transcriptional Regulation in Bacillus subtilis (DBTBS) was used as a reference [22]. Transcriptional activators or repressors are indicated by a (+) or (−), respectively. TnrA is shown in bold type.
Genes down-regulated in 874ΔrocG cells (bottom-ranked 20 genes)
| unknown | unknown | 4307 | 533 | 0.12 | | |
| unknown | unknown | 1915 | 273 | 0.14 | ||
| unknown | unknown | 1883 | 287 | 0.15 | ||
| isochorismate synthase | biosynthesis of the siderophore bacillibactin | 2560 | 529 | 0.21 | Fur(−) | |
| pectate lyase C | degradation of polygalacturonic acid | 3736 | 808 | 0.22 | ComA(+), | |
| acetolactate synthase (large subunit) | biosynthesis of branched-chain amino acids | 2106 | 459 | 0.22 | CcpA(+), CodY(−), | |
| 3-isopropylmalate dehydrogenase | biosynthesis of leucine | 2072 | 467 | 0.23 | CcpA(+), CodY(−), | |
| unknown | biosynthesis of the siderophore bacillibactin | 2081 | 474 | 0.23 | Fur(−) | |
| phosphoglycerate dehydrogenase | biosynthesis of serine | 2575 | 603 | 0.23 | | |
| 2-isopropylmalate synthase | biosynthesis of leucine | 1680 | 396 | 0.24 | CcpA(+), CodY(−), | |
| isochorismatase | biosynthesis of the siderophore bacillibactin | 1897 | 447 | 0.24 | Fur(−) | |
| 3-isopropylmalate dehydratase (large subunit) | biosynthesis of leucine | 2166 | 516 | 0.24 | CcpA(+), CodY(−), | |
| ketol-acid reductoisomerase (2,3-dihydroxy-3-methylbutanoate, 2-acetolactate) | biosynthesis of branched-chain amino acids | 2981 | 713 | 0.24 | CcpA(+), CodY(−), | |
| putative sodium-dependent transporter | unknown | 1028 | 248 | 0.24 | | |
| unknown | unknown | 737 | 182 | 0.25 | ||
| unknown | unknown | 1035 | 266 | 0.26 | | |
| unknown | unknown | 435 | 119 | 0.27 | DegU(−), YvrH(+) | |
| 2,3-dihydroxybenzoate-AMP ligase (enterobactin synthetase component E | biosynthesis of the siderophore bacillibactin | 1539 | 439 | 0.29 | Fur(−) | |
| 3-isopropylmalate dehydratase (small subunit) | biosynthesis of leucine | 1137 | 327 | 0.29 | CcpA(+), CodY(−), | |
| unknown | unknown | 3785 | 1150 | 0.3 | ||
aThe SubtiWiki was used as a reference for the genes, products and functions [21].
bThe average signal intensities of probes in each coding sequence.
cThe ratio of each of the genes was obtained by dividing the average signal intensity in each coding sequence of 874ΔrocG cells by that for MGB874 cells.
dThe Database of Transcriptional Regulation in Bacillus subtilis (DBTBS) was used as a reference [22]. Transcriptional activators or repressors are indicated by a (+) or (−), respectively. TnrA is shown in bold type.
Figure 3Time course of transcription during growth of strains MGB874 and 874ΔrocG. The strains MGB874 (open circles) and 874∆rocG (closed circles) were transformed with pHYS237. The transformants were cultured using shake-flask fermentation. Transcript levels for htrB, nrgA and gltA were determined by qRT-PCR (primers shown in Additional file 2: Table S1). Transcript levels were normalized to 16S rRNA levels. Error bars represent standard deviations (n=3).
Figure 4Growth characteristics of strains MGB874 and 874ΔrocG producing alkaline cellulase Egl-237. The strains MGB874 (open symbols and dotted lines) and 874∆rocG (closed symbols and solid lines) were transformed with pHYS237, and cultured in 2xL medium containing 12.5% (w/v) maltose monohydrate by the pH-Stat fermentation using 2-L jar fermentor. Fermentation without pH control was done as a reference (A). The pH was adjusted to 7.2 by the automatic addition of 1M NaOH (B) or 10% (w/v) aqueous NH3 (C). Cell yields (circles) and extracellular cellulase activities (triangles) were shown on the left side of the figure. Residual ammonia concentrations (diamonds) and external pHs (crosses) in the growth media were shown on the right side of the figure. Additionally, total amounts of ammonia fed (squares) were also displayed under the NH3-pH auxostat. Arrows indicate the point at which transcriptional analysis was conducted.
Figure 5Transcriptional levels of selected genes in strains MGB874 and 874ΔrocG. The strains MGB874 (A) and 874∆rocG (B) were transformed with pHYS237, and cultured by the pH-Stat fermentation. Fermentation without pH control was done as a reference (a). The pH was adjusted to 7.2 by addition of NaOH (b) or aqueous NH3 (c). RNA was isolated from the cells at the 24 h of the cultivation time (indicated by arrows in Figure 4), and expression level of htrB, nrgA, gltA and citB were determined by qRT-PCR. The transcriptional levels are expressed relative to those of 16S rRNA. Error bars represent standard deviations (n=3).
Bacterial strains and plasmids used in or constructed for this study
| Strain | | |
| | | |
| 168 | [ | |
| 168∆rocG | This study | |
| MGB874 | [ | |
| 874∆rocG | MGB874 ∆ | [ |
| | | |
| HB101 | Takara Bio | |
| Plasmid | | |
| pHY300PLK | Shuttle vector for | Takara Bio |
| pHYS237 | pHY300PLK carrying the gene for alkaline endo-1,4-β-glucanase (Egl-237) from | [ |
†Antibiotic resistance genes are abbreviated as follows: amp, ampicillin; tet, tetracycline; spec, spectinomycin; neo, neomycin.