TY - JOUR
T1 - In vitro evolutionary thermostabilization of congerin II
T2 - A limited reproduction of natural protein evolution by artificial selection pressure
AU - Shionyu-Mitsuyama, Clara
AU - Ito, Yoshimaro
AU - Konno, Ayumu
AU - Miwa, Yukiko
AU - Ogawa, Tomohisa
AU - Muramoto, Koji
AU - Shirai, Tsuyoshi
N1 - Funding Information:
This work was partly supported by Grants-in-Aid for Scientific Research on Priority Areas (C) from Ministry of Education, Science, Sports and Culture, Japan, and the research grant from the Takeda Science Foundation. We thank Dr Yuji Goto for helpful discussions.
PY - 2005/3/25
Y1 - 2005/3/25
N2 - The thermostability of the conger eel galectin, congerin II, was improved by in vitro evolutionary protein engineering. Two rounds of random PCR mutagenesis and selection experiments increased the congerin II thermostability to a level comparative to its naturally thermostable isoform, congerin I. The crystal structures of the most thermostable double mutant, Y16S/T88I, and the related single mutants, Y16S and T88I, were determined at 2.0 Å, 1.8 Å, and 1.6 Å resolution, respectively. The exclusion of two interior water molecules by the Thr88Ile mutation, and the relief of adjacent conformational stress by the Tyr16Ser mutation were the major contributions to the thermostability. These features in the congerin II mutants are similar to those observed in congerin I. The natural evolution of congerin genes, with the KA/KS ratio of 2.6, was accelerated under natural selection pressures. The thermostabilizing selection pressure artificially applied to congerin II mimicked the implied natural pressure on congerin I. The results showed that the artificial pressure made congerin II partially reproduce the natural evolution of congerin I.
AB - The thermostability of the conger eel galectin, congerin II, was improved by in vitro evolutionary protein engineering. Two rounds of random PCR mutagenesis and selection experiments increased the congerin II thermostability to a level comparative to its naturally thermostable isoform, congerin I. The crystal structures of the most thermostable double mutant, Y16S/T88I, and the related single mutants, Y16S and T88I, were determined at 2.0 Å, 1.8 Å, and 1.6 Å resolution, respectively. The exclusion of two interior water molecules by the Thr88Ile mutation, and the relief of adjacent conformational stress by the Tyr16Ser mutation were the major contributions to the thermostability. These features in the congerin II mutants are similar to those observed in congerin I. The natural evolution of congerin genes, with the KA/KS ratio of 2.6, was accelerated under natural selection pressures. The thermostabilizing selection pressure artificially applied to congerin II mimicked the implied natural pressure on congerin I. The results showed that the artificial pressure made congerin II partially reproduce the natural evolution of congerin I.
KW - Crystal structure
KW - Galectin
KW - Random mutagenesis
KW - Thermostability
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U2 - 10.1016/j.jmb.2005.01.027
DO - 10.1016/j.jmb.2005.01.027
M3 - Article
C2 - 15740748
AN - SCOPUS:14644386787
SN - 0022-2836
VL - 347
SP - 385
EP - 397
JO - Journal of Molecular Biology
JF - Journal of Molecular Biology
IS - 2
ER -