Difference between revisions of "Part:BBa K3468064:Experience"
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The thermal stability improvement result was obtained by the evaluation of I-Mutant website, and the thermal stability improvement result of -1.2251 was also obtained by the FoldX evaluation. | The thermal stability improvement result was obtained by the evaluation of I-Mutant website, and the thermal stability improvement result of -1.2251 was also obtained by the FoldX evaluation. | ||
− | [[File:R260F222.png|400px|thumb|left|Fig. | + | [[File:R260F222.png|400px|thumb|left|Fig.2 R260F in PyMOL]] |
− | [[File:R260F.png|400px|thumb|left|Fig. | + | [[File:R260F.png|400px|thumb|left|Fig.3 the result of R260F in I-Mutant]] |
References | References |
Revision as of 06:52, 25 October 2020
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Applications of BBa_K3468064
The thermal stability improvement result was obtained by the evaluation of I-Mutant website, and the thermal stability improvement result of -1.2251 was also obtained by the FoldX evaluation.
References
[1]Burley SK, Petsko GA. Aromatic-aromatic interaction: a mechanism of protein structure stabilization. Science. 1985 Jul 5;229(4708):23-8.
[2]Chatterjee KS, Tripathi V, Das R. A conserved and buried edge-to-face aromatic interaction in small ubiquitin-like modifier (SUMO) has a role in SUMO stability and function. J Biol Chem. 2019 Apr 26;294(17):6772-6784.
[3]Chrtis C, Jaffe R, Maigret B et al. , 1996. Benzene Dimer: A good model for π-π interactions in proteins a comparison between the benzene and the toluene dimers in the gas phase and in an aqueous solution [J] J. Am. Chem. Soc, 118: 11217-11224.
[4]Weber DS, Warren JJ. A survey of methionine-aromatic interaction geometries in the oxidoreductase class of enzymes: What could Met-aromatic interactions be doing near metal sites? J Inorg Biochem. 2018 Sep;186:34-41.
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UNIQ02ca7625f936ef6e-partinfo-00000000-QINU UNIQ02ca7625f936ef6e-partinfo-00000001-QINU