| Literature DB >> 28850573 |
George Korza1, Stephen Abini-Agbomson1, Barbara Setlow1, Aimee Shen2, Peter Setlow1.
Abstract
Dormant spores of Bacillus species lack ATP and NADH and contain notable levels of only a few other common low mol wt energy reserves, including 3-phosphoglyceric acid (3PGA), and glutamic acid. Recently, Bacillus subtilis spores were reported to contain ~ 30 μmol of L-malate/g dry wt, which also could serve as an energy reserve. In present work, L-malate levels were determined in the core of dormant spores of B. subtilis, Bacillus cereus, Bacillus megaterium and Clostridium difficile, using both an enzymatic assay and 13C-NMR on extracts prepared by several different methods. These assays found that levels of L-malate in B. cereus and B. megaterium spores were ≤ 0.5 μmol/g dry wt, and ≤ 1 μmol/g dry wt in B. subtilis spores, and levels of L-lactate and pyruvate in B. megaterium and B. subtilis spores were < 0.5 μmol/g dry wt. Levels of L-malate in C. difficile spores were ≤ 1 μmol/g dry wt, while levels of 3PGA were ~ 7 μmol/g; the latter value was determined by 31P-NMR, and is in between the 3PGA levels in B. megaterium and B. subtilis spores determined previously. 13C-NMR analysis of spore extracts further showed that B. megaterium, B. subtilis and C. difficile contained significant levels of carbonate/bicarbonate in the spore core. Low mol wt carbon-containing small molecules present at > 3 μmol/g dry spores are: i) dipicolinic acid, carbonate/bicarbonate and 3PGA in B. megaterium, B. subtilis and C. difficile; ii) glutamate in B. megaterium and B. subtilis; iii) arginine in B. subtilis; and iv) at least one unidentified compound in all three species.Entities:
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Year: 2017 PMID: 28850573 PMCID: PMC5574573 DOI: 10.1371/journal.pone.0182656
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Levels of organic acids in spores of various Bacillus species as determined by assays on spore extracts *.
| Spores examined | L-Malate | L-Lactate | Pyruvate |
|---|---|---|---|
| μmol/g dry spores | |||
| < 1 (< 1) | nd | nd | |
| < 1 (< 1) | < 1 | < 1 | |
| ≤ 1 (≤ 2) | < 1 | < 1 |
*Spores of various species were extracted by Procedure 1 or 2 and small molecules were quantitated as described in Methods. For enzymatic assays of L-lactate and pyruvate in B. subtilis spores, all extracts were prepared by Procedure 1 but not passed through Chelex, but extracts were Chelex treated prior to 13C-NMR analyses.
1For comparative purposes, spores of Bacillus species have ~ 600 μmol of DPA/g dry spores [1].
2All values for L-malate were determined by enzymatic analyses. Values not in parentheses are from extracts made by Procedure 1, and values in parentheses are from extracts made by Procedure 2 and the supernatant fluid was boiled immediately after centrifugation as described in Methods.
3nd–not determined.
4Values determined by 13C-NMR.
5Data taken from reference 6 in which spores were extracted by a method similar to Procedure 1, and L-lactate and pyruvate were assayed enzymatically[15].
6Values in parentheses were determined by enzymatic assays in this work.
Fig 113C-NMR spectra of small molecules extracted from B. megaterium spores.
Small molecules were extracted from ~ 65 mg dry wt of B. megaterium spores by Procedure 1 and extracts processed, ultimately dissolved in 700 μl D2O plus buffer and 13C-NMR spectra were collected as described in Methods. The various panels are the: A) 13C-NMR spectrum of the extract; B) expanded 13C-NMR spectrum of the extract in the region where peaks from L-malate would be expected; and C) expanded 13C-NMR spectrum of the extract as shown in B, but with 300 nmol L-malate added prior to extraction by Procedure 1. Peaks due to glutamate (Glu), 3PGA (PGA), HCO3-1/CO3-2 (H/C), malate (MA) and DPA are labeled, as is the peak given by an unknown compound (Unk a).
Levels of L-malate, 3PGA and HCO3-1/CO3-2 in spores of various species as determined by 13C-NMR of 1-propanol extracts*.
| Spores extracted | L-Malate | 3PGA | HCO3-1/CO3-2 |
|---|---|---|---|
| μmol/g dry spores | |||
| < 0.5 (< 0.5) | 27 | 95 | |
| < 1 (< 2) | 4 | 55 | |
| < 1 (< 1) | 7 | 12 |
*Spores were extracted by Procedure 1, processed for NMR analyses and assayed for levels of L-malate and HCO3-1/CO3-2 by 13C-NMR and 3PGA by 31P-NMR. Values are all +/- ~ 20%.
1Values in parenthesis were determined by enzymatic assays of the sample analyzed by 13C-NMR.
2Values taken from reference 19, in which values were determined by 31P-NMR.
Fig 213C-NMR spectra of small molecules extracted from B. subtilis spores.
Small molecules were extracted from ~ 130 mg dry spores of B. subtilis by Procedure 1 and extracts were processed, ultimately dissolved in 700 μl D2O plus buffer, and 13C-NMR spectra were collected as described in Methods. The various panels are the: A) 13C-NMR spectra of the extract; B) expanded 13C-NMR spectrum of the extract in the region where L-malate peaks would be expected; and C) expanded 13C-NMR spectrum of the extract shown in B but with 700 nmol of L-malate added prior to extraction by Procedure 1. Peaks due to glutamate (Glu), 3PGA (PGA), HCO3-1/CO3-2 (H/C), L-malate (MA), DPA and arginine (R) are labeled, as is the peak given by an unknown compound (Unk a).
Fig 313C-NMR and 31P-NMR spectra of small molecules extracted from spores of Clostridium difficile.
Spores of C. difficile strain CD630, ~ 35 mg dry wt, were extracted with Procedure 1, the extract processed, ultimately dissolved in 700 μl of D2O plus appropriate buffer, and NMR spectra were collected as described in Methods. The various panels are the: A) 13C-NMR spectrum of the extract; B) expanded 13C-NMR spectrum of the extract in the region where L-malate peaks would be expected; and C) 31P-NMR spectrum of the extract. In panels A,B) peaks due to 3PGA (PGA), HCO3-1/CO3-2 (H/C) and DPA are labeled, as is a peak given by an unknown compound (Unk a). In panel C) the identified peaks are PGA, AMP and inorganic phosphate (Pi). The TMP peak in panel C is from 175 nmol of thymidine-monophosphate added as a standard.