| Literature DB >> 31922714 |
Klaudia I Kocurek1, Jana Havlikova1, Emma Buchan1, Andrew Tanner1, Robin C May2, Helen J Cooper1.
Abstract
Yeasts constitute an oft-neglected class of pathogens among which the resistance to first-line treatments, attributed in part to mutations in efflux pumps, is rapidly emerging. Their thick, chitin-reinforced cell walls render cell lysis difficult, complicating their analysis and identification by methods routinely used for bacteria, including matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS). Liquid extraction surface analysis mass spectrometry (LESA-MS) has previously been applied to the analysis of intact proteins from Gram-positive and Gram-negative bacterial colonies sampled directly on solid nutrient media. To date, a similar analysis of yeast colonies has not proved possible. Here we demonstrate the rapid release of intact yeast proteins for LESA-MS by electroporation using a home-built high-voltage device designed to lyse cells grown in colonies on agar media. Detection and identification of previously inaccessible proteins from baker's yeast Saccharomyces cerevisiae, as well as two clinically relevant yeast species (Candida glabrata and Cryptococcus neoformans), is shown. The electroporation approach also has the potential to be translated to other mass spectrometric analysis techniques, including MALDI and various ambient ionization methods.Entities:
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Year: 2020 PMID: 31922714 PMCID: PMC7145282 DOI: 10.1021/acs.analchem.9b04365
Source DB: PubMed Journal: Anal Chem ISSN: 0003-2700 Impact factor: 6.986
Figure 1Overview of the electroporator and the electroporation process. a. The final device used in the study. The electrode assembly is seen on the left. b. Colony undergoing electroporation immediately following insertion of the electrodes; c. Following approximately seven pulses. d. Following delivery of 15 pulses over 15 s. e. Immediately following withdrawal of the electrodes.
Proteins Identified in Yeast by Electroporation-LESA-MS
| charge | MWobs | UniProt accession no. | ID | |||
|---|---|---|---|---|---|---|
| 690.95 | 9 | 6248.52 | 8.6 × 10–19 | 6.8 × 10–05 | P04650 | L39 |
| 870.01 | 10 | 8690.05 | 9.1 × 10–23 | 2.0 × 10–17 | P49167 | L38 |
| 997.40 | 7 | 6974.73 | 8.1 × 10–14 | 2.4 × 10–08 | A5Z2X5 | YPR010C-A |
| 1004.56 | 5 | 5017.78 | 3.5 × 10–60 | 1.0 × 10–51 | P02994 | EF1A |
| 1042.05 | 12 | 12 492.50 | 3.1 × 10–33 | 8.9 × 10–28 | Q08245 | ZEO1 |
| 1046.52 | 7 | 7318.62 | 7.2 × 10–71 | 2.1 × 10–62 | Q12497 | FMP16 |
| 1069.78 | 5 | 5343.88 | 9.2 × 10–52 | 2.7 × 10–43 | P38325 | OM14 |
| 1086.59 | 6 | 7339.83 | 1.7 × 10–10 | 6.8 × 10–05 | P0C5N0 | YFR010W-A |
| 1161.28 | 10 | 11 596.63 | 1.8 × 10–93 | 4.7 × 10–88 | P22943 | HSP12 |
| 1255.85 | 7 | 8778.89 | 2.4 × 10–38 | 3.2 × 10–37 | P50263 | SIP18 |
| 691.74 | 9 | 6213.58 | 1.7 × 10–20 | 7.1 × 10–16 | B4UN51 | L39-like protein |
| 733.03 | 9 | 6584.26 | 2.9 × 10–9 | 1.2 × 10–4 | Q6FWE3 | S29 |
| 739.59 | 12 | 8858.06 | 1.8 × 10–14 | 7.7 × 10–10 | Q6FXW9 | L38-like protein |
| 888.64 | 11 | 9758.93 | 1.7 × 10–37 | 7.2 × 10–33 | Q6FMF8 | S21 |
| 919.39 | 15 | 13 775.74 | 6.6 × 10–15 | 2.8 × 10–10 | Q6FWM7 | Histone H2A.1 |
| 955.38 | 7 | 6680.59 | 1.5 × 10–34 | 9.5 × 10–24 | Q6FWE8 | COX7A |
| 1155.65 | 6 | 6923.84 | 1.8 × 10–13 | 2.8 × 10–08 | B4UN07 | COX7 |
| 1233.26 | 9 | 11 084.22 | 1.4 × 10–110 | 4.7 × 10–106 | Q6FPF6 | HSP12 |
| 1347.83 | 8 | 10 774.66 | 4.1 × 10–7 | 1.7 × 10–02 | B4UN11 | HMG box protein |
| 1380.09 | 8 | 11 032.68 | 7.1 × 10–38 | 7.0 × 10–35 | Q6FND5 | Thioredoxin |
| 692.85 | 9 | 6226.61 | 9.2 × 10–24 | 3.3 × 10–19 | J9VPZ8 | L39 |
| 741.42 | 5 | 3702.06 | 4.7 × 10–19 | 4.7 × 10–19 | J9VMZ0 | Histone H3 (C-term.) |
| 877.05 | 9 | 7879.36 | 6.8 × 10–18 | 2.2 × 10–13 | J9VPT7 | S28 |
| 878.94 | 11 | 9657.23 | 9.4 × 10–14 | 3.4 × 10–09 | J9VK09 | F-type ATPase F |
| 901.65 | 7 | 6304.49 | 2.0 × 10–41 | 7.3 × 10–37 | J9VVE3 | COX7A |
| 960.35 | 9 | 8629.04 | 1.8 × 10–29 | 5.8 × 10–25 | J9VUT1 | CNAG_03143 |
| 968.97 | 7 | 6775.73 | 4.8 × 10–38 | 1.7 × 10–33 | J9VST2 | L29 |
| 1042.22 | 7 | 7285.49 | 1.5 × 10–54 | 4.8 × 10–50 | J9VJQ8 | CNAG_01446 |
| 1072.57 | 5 | 5357.80 | 3.6 × 10–73 | 1.3 × 10–65 | J9W384 | COX7C (C-term.) |
| 1741.87 | 4 | 6960.46 | 6.8 × 10–32 | 2.2 × 10–27 | J9VYN0 | CNAG_04105 |
Figure 2Representative mass spectra acquired by LESA MS following electroporation of colonies at optimized parameters. a. S. cerevisiae, b. C. glabrata, c. C. neoformans. Protein peaks (charge states 4+ and above) are marked with dots.