CHRÁST, Lukáš, K. TRATSIAK, Joan PLANAS IGLESIAS, Lukáš DANIEL, T. PRUDNIKOVA, Jan BREZOVSKÝ, David BEDNÁŘ, I.K. SMATANOVA, Radka CHALOUPKOVÁ a Jiří DAMBORSKÝ. Deciphering the Structural Basis of High Thermostability of Dehalogenase from Psychrophilic Bacterium Marinobacter sp. ELB17. Microorganisms. Basel: MDPI, 2019, roč. 7, č. 11, s. 1-20. ISSN 2076-2607. Dostupné z: https://dx.doi.org/10.3390/microorganisms7110498. |
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@article{1640679, author = {Chrást, Lukáš and Tratsiak, K. and Planas Iglesias, Joan and Daniel, Lukáš and Prudnikova, T. and Brezovský, Jan and Bednář, David and Smatanova, I.K. and Chaloupková, Radka and Damborský, Jiří}, article_location = {Basel}, article_number = {11}, doi = {http://dx.doi.org/10.3390/microorganisms7110498}, keywords = {haloalkane dehalogenase; thermostability; psychrophile; access tunnel; dimer; catalytic pentad; enantiselectivity}, language = {eng}, issn = {2076-2607}, journal = {Microorganisms}, title = {Deciphering the Structural Basis of High Thermostability of Dehalogenase from Psychrophilic Bacterium Marinobacter sp. ELB17}, url = {https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920932/}, volume = {7}, year = {2019} }
TY - JOUR ID - 1640679 AU - Chrást, Lukáš - Tratsiak, K. - Planas Iglesias, Joan - Daniel, Lukáš - Prudnikova, T. - Brezovský, Jan - Bednář, David - Smatanova, I.K. - Chaloupková, Radka - Damborský, Jiří PY - 2019 TI - Deciphering the Structural Basis of High Thermostability of Dehalogenase from Psychrophilic Bacterium Marinobacter sp. ELB17 JF - Microorganisms VL - 7 IS - 11 SP - 1-20 EP - 1-20 PB - MDPI SN - 20762607 KW - haloalkane dehalogenase KW - thermostability KW - psychrophile KW - access tunnel KW - dimer KW - catalytic pentad KW - enantiselectivity UR - https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920932/ L2 - https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6920932/ N2 - Haloalkane dehalogenases are enzymes with a broad application potential in biocatalysis, bioremediation, biosensing and cell imaging. The new haloalkane dehalogenase DmxA originating from the psychrophilic bacterium Marinobacter sp. ELB17 surprisingly possesses the highest thermal stability (apparent melting temperature T-m,T-app = 65.9 degrees C) of all biochemically characterized wild type haloalkane dehalogenases belonging to subfamily II. The enzyme was successfully expressed and its crystal structure was solved at 1.45 angstrom resolution. DmxA structure contains several features distinct from known members of haloalkane dehalogenase family: (i) a unique composition of catalytic residues; (ii) a dimeric state mediated by a disulfide bridge; and (iii) narrow tunnels connecting the enzyme active site with the surrounding solvent. The importance of narrow tunnels in such paradoxically high stability of DmxA enzyme was confirmed by computational protein design and mutagenesis experiments. ER -
CHRÁST, Lukáš, K. TRATSIAK, Joan PLANAS IGLESIAS, Lukáš DANIEL, T. PRUDNIKOVA, Jan BREZOVSKÝ, David BEDNÁŘ, I.K. SMATANOVA, Radka CHALOUPKOVÁ a Jiří DAMBORSKÝ. Deciphering the Structural Basis of High Thermostability of Dehalogenase from Psychrophilic Bacterium Marinobacter sp. ELB17. \textit{Microorganisms}. Basel: MDPI, 2019, roč.~7, č.~11, s.~1-20. ISSN~2076-2607. Dostupné z: https://dx.doi.org/10.3390/microorganisms7110498.
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