| Literature DB >> 22013889 |
Diana I Paredes1, Kyle Watters, Derek J Pitman, Christopher Bystroff, Jonathan S Dordick.
Abstract
BACKGROUND: Psychrophiles, cold-adapted organisms, have adapted to live at low temperatures by using a variety of mechanisms. Their enzymes are active at cold temperatures by being structurally more flexible than mesophilic enzymes. Even though, there are some indications of the possible structural mechanisms by which psychrophilic enzymes are catalytic active at cold temperatures, there is not a generalized structural property common to all psychrophilic enzymes.Entities:
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Year: 2011 PMID: 22013889 PMCID: PMC3224250 DOI: 10.1186/1472-6807-11-42
Source DB: PubMed Journal: BMC Struct Biol ISSN: 1472-6807
List of homologous enzymes used in this study
| Psychrophilic Protein | Mesophilic Protein | |||||||
|---|---|---|---|---|---|---|---|---|
| 1a0j | 1.7 | 4 | 1sgt | 1.7 | 33 | Serine Protease | ||
| 5 | 2.16 | 10 | 1qrp | 1.96 | 59 | Aspartyl Protease | ||
| 1aqh | 2 | 4 | 1pif | 2.3 | 46 | Hydrolase | ||
| 1a59 | 2.09 | 5 | 1k3p | 2.2 | 30 | Citrate Synthase | ||
| 1b8p | 1.9 | 4 | 5mdh | 2.4 | 50 | Oxidoreductase | ||
| 1dxy | 1.9 | 15 | 1 × dw | 1.98 | 33 | Oxidoreductase | ||
| 1elt | 1.61 | 4 | 1eai | 2.4 | 68 | Serine Protease | ||
| 1g9k | 1.96 | 10 | 1kap | 1.64 | 50 | Hydrolase | ||
| 1gco | 1.7 | 10 | 2uvd | 2.4 | 38 | Oxidoreductase | ||
| 1k7h | 1.92 | 5 | 1zeb | 1.9 | 41 | Hydrolase | ||
| 1kfw | 1.74 | 5 | litx | 1.1 | 33 | Hydrolase | ||
| 1n × q | 1.79 | 15 | lnff | 1.8 | 40 | Oxidoreductase | ||
| 1okb | 1.9 | 10 | 1akz | 1.57 | 76 | Hydrolase Fumarate | ||
| 1qjd | 1.8 | 20 | 1d4d | 2.5 | 61 | Reductase | ||
| 1s3g | 2.25 | 15 | 2ori | 1.8 | 68 | Transferase | ||
| 1sh7 | 1.84 | 19 | 1mee | 2 | 39 | Hydrolase | ||
| 1tvn | 1.4 | 20 | 1egz | 2.3 | 63 | Hydrolase | ||
| 2b6n | 1.8 | 4 | 1ndu | 1.6 | 37 | Hydrolase | ||
| 2gko | 1.4 | 5 | 1wsd | 1.5 | 45 | Hydrolase | ||
| 2v27 | 1.5 | 10 | 1ltu | 1.74 | 34 | Oxidoreductase | ||
Dataset of 20 psychrophilic/mesophilic protein pairs, PDB code, species name, and structure resolution are provided.
Figure 1ΔB'-value of each secondary structure. Psychrophiles have greater atom flexibility in strands and 5-turns secondary structure (p < 0.001) compared to mesophilic proteins. * indicates outliers.
Figure 2Average size of cavities in psychrophilic proteins subtracted from the average sizes of the mesophilic cavities. Positive ΔCavity Size indicates higher average cavity size in psychrophilic proteins at the indicated probe sizes. Red stars indicate statistically significant differences in average cavity size (p < 0.01). * indicates outliers.
Figure 3Difference in frequency of each amino acid type on the inner cavity surface between psychrophilic and the mesophilic paired proteins. Psychrophilic enzymes have a larger number of acidic side chains on the inner surface of a cavity (p < 0.01). Mesophilic enzymes have a larger number of hydrophobic residues (p < 0.01).