| Literature DB >> 25880855 |
Xiaoting Ye1, Kana Morikawa2, Shih-Hsin Ho3, Michihiro Araki4, Keiji Nishida5, Tomohisa Hasunuma6, Kiyotaka Y Hara7, Akihiko Kondo8.
Abstract
BACKGROUND: Measurement of mitochondrial ATP synthesis is a critical way to compare cellular energetic performance. However, fractionation of mitochondria requires large amounts of cells, lengthy purification procedures, and an extreme caution to avoid damaging intact mitochondria, making it the highest barrier to high-throughput studies of mitochondrial function. To evaluate 45 genes involved in oxidative phosphorylation in Saccharomyces cerevisiae, we aimed to develop a simple and rapid method to measure mitochondrial ATP synthesis.Entities:
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Year: 2015 PMID: 25880855 PMCID: PMC4409779 DOI: 10.1186/s12934-015-0239-z
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Figure 1Schematic illustration of the MASH method. (A) S. cerevisiae cells were lysed with zymolyase at 37°C for 1 h to obtain protoplasts. (B) The protoplasts were subjected to low-speed centrifugation (2,500 × g) with 1.2 M sorbitol. (C) Crude mitochondria were obtained by high-speed centrifugation (20,000 × g) with 0.7 M sorbitol. Large circles stand for nuclei, cell debris, and unbroken cells. The small closed-circles stand for the crude mitochondria, the large open-circles stand for microsomes.
Figure 2The effect of inhibitors on mitochondrial ATP synthesis in S. cerevisiae. Inhibitors of the mitochondrial respiratory chain: antimycin A, CCCP, and DCCD. To confirm the functionality of mitochondria, 0.1 mM antimycin A, 0.5 mM CCCP, and 0.1 mM DCCD were incubated with the crude mitochondria for 5 min before being subjected to ATP assay. The activities were shown in the relative values (%) compared with the value without inhibitor of respiratory chain as the control.
Relative ATP specific activity of gene deletion mutants related to either mitochondrial ATP synthesis or mitochondrial fatty acid synthesis
|
|
|
|
|
|---|---|---|---|
| Parental strain (BY4741) | - | 100 | 0.416 |
| NADH dehydrogenase (Complex I) |
| 36 ± 4 | 0.189 |
|
| 31 ± 20 | 0.187 | |
| Succinate dehydrogenase/Fumarate reductase (Complex II) |
| 44 ± 18 | 0.189 |
|
| 53 ± 41 | 0.187 | |
|
| 67 ± 33 | 0.167 | |
|
| 33 ± 11 | 0.181 | |
|
| 104 ± 39 | 0.285 | |
|
| 56 ± 31 | 0.185 | |
|
| 61 ± 16 | 0.207 | |
| Electron transferring-flavoprotein dehydrogenase |
| 56 ± 9 | 0.195 |
| Cytochrome |
| 38 ± 10 | 0.179 |
|
| 37 ± 7 | 0.179 | |
|
| 34 ± 21 | 0.201 | |
|
| 22 ± 26 | 0.191 | |
|
| 72 ± 20 | 0.187 | |
|
| 40 ± 9 | 0.180 | |
|
| n.d. | 0.177 | |
|
| n.d. | 0.191 | |
|
| n.d. | 0.201 | |
|
| 15 ± 10 | 0.173 | |
|
| 29 ± 11 | 0.203 | |
|
| 65 ± 25 | 0.197 | |
|
| 35 ± 13 | 0.200 | |
|
| 27 ± 14 | 0.190 | |
| Cytochrome |
| 44 ± 16 | 0.187 |
|
| 25 ± 6 | 0.167 | |
|
| 37 ± 11 | 0.191 | |
|
| 20 ± 9 | 0.193 | |
|
| 62 ± 41 | 0.175 | |
|
| n.d. | 0.176 | |
|
| 30 ± 10 | 0.182 | |
| ATP synthase (Complex V) |
| 32 ± 12 | 0.177 |
|
| 18 ± 5 | 0.234 | |
|
| 52 ± 28 | 0.179 | |
|
| 52 ± 29 | 0.187 | |
|
| 17 ± 8 | 0.189 | |
|
| 40 ± 16 | 0.168 | |
|
| 98 ± 73 | 0.206 | |
|
| 24 ± 16 | 0.197 | |
|
| 38 ± 4 | 0.187 | |
|
| 43 ± 14 | 0.175 | |
|
| 43 ± 17 | 0.171 | |
|
| 53 ± 10 | 0.190 | |
| ADP/ATP translocator |
| 59 ± 7 | 0.178 |
|
| 53 ± 24 | 0.208 |
aRelative ATP specific activity of the mutant strains was expressed as a percentage of the specific activity of the parental strain.
bThe protein concentration of the crude mitochondria solution was determined using the Bradford method [25].
All experiments were conducted at least in triplicate. Values are means ± SD.
Figure 3Distribution of relative protein concentration and relative ATP synthetic activity of crude mitochondria solutions from gene deletion mutants related to mitochondrial ATP synthesis. The relative protein concentrations of the crude mitochondria solutions were determined using the Bradford method. Relative ATP synthetic activity was normalized by each protein concentration of the mutant strains. These values are expressed as a percentage of its activity of the parental strain. The relative ATP synthetic activities under detectable level were plotted at “zero”. All experiments were conducted at least in triplicate and values are represented as means.