TY - JOUR
T1 - Spontaneous asparaginyl deamidation of canine milk lysozyme under mild conditions
AU - Nonaka, Yasuhiro
AU - Aizawa, Tomoyasu
AU - Akieda, Daisuke
AU - Yasui, Masanori
AU - Watanabe, Masahiro
AU - Watanabe, Nobuhisa
AU - Tanaka, Isao
AU - Kamiya, Masakatsu
AU - Mizuguchi, Mineyuki
AU - Demura, Makoto
AU - Kawano, Keiichi
PY - 2008/7
Y1 - 2008/7
N2 - Asparaginyl deamidation is a common form of nonenzymatic degradation of proteins and peptides. As it introduces a negative charge spontaneously and irreversibly, charge heterogeneity can be accumulated in protein solution during purification, preservation, and experiments. In this study, canine milk lysozyme (CML), a useful model for the study of the molten globule state, exhibited charge heterogeneity after sample purification. Four Asn residues in CML deamidated rapidly under mild conditions: pH 8.0 and 30°C. Other than these residues, one Asn residue, which was stable in the native state, was labile to deamidation in the unfolded state. This suggests that the structural formation around Asn can suppress deamidation. Substitutions of these labile Asn residues to Gln residues prevented deamidation effectively. Because the substitutions did not disrupt the structural formation of the native and molten globule states, they will enable more precise analyses for physical and structural studies.
AB - Asparaginyl deamidation is a common form of nonenzymatic degradation of proteins and peptides. As it introduces a negative charge spontaneously and irreversibly, charge heterogeneity can be accumulated in protein solution during purification, preservation, and experiments. In this study, canine milk lysozyme (CML), a useful model for the study of the molten globule state, exhibited charge heterogeneity after sample purification. Four Asn residues in CML deamidated rapidly under mild conditions: pH 8.0 and 30°C. Other than these residues, one Asn residue, which was stable in the native state, was labile to deamidation in the unfolded state. This suggests that the structural formation around Asn can suppress deamidation. Substitutions of these labile Asn residues to Gln residues prevented deamidation effectively. Because the substitutions did not disrupt the structural formation of the native and molten globule states, they will enable more precise analyses for physical and structural studies.
KW - Heterogeneous components
KW - Lysozyme
KW - Non-enzymatic asparaginyl deamidation
KW - Site-directed mutagenesis
KW - Stabilization
KW - Structure formation
UR - http://www.scopus.com/inward/record.url?scp=44949222558&partnerID=8YFLogxK
U2 - 10.1002/prot.21927
DO - 10.1002/prot.21927
M3 - 学術論文
C2 - 18214981
AN - SCOPUS:44949222558
SN - 0887-3585
VL - 72
SP - 313
EP - 322
JO - Proteins: Structure, Function and Genetics
JF - Proteins: Structure, Function and Genetics
IS - 1
ER -