TY - JOUR
T1 - Effect of amino acid residues at the cleavable site of substrates on the remarkable activation of thermolysin by salts
AU - Inouye, Kuniyo
AU - Lee, Soo Bok
AU - Tonomura, Ben'ichiro
PY - 1996/4/1
Y1 - 1996/4/1
N2 - The activity of thermolysin in the hydrolysis of N-[3-(2-furyl)acryloyl]-glycyl-L-leucine amide and N-carbobenzoxy-L-aspartyl-L-phenylalanine methyl ester is remarkably enhanced in the presence of high concentrations (1-5 M) of neutral salts. In this study, the effect of salts on such activity has been examined using a series of substrates, furylacryloyl dipeptide amides, which have various hydrophobic amino acids at the cleavable bond. Although the enzyme activity varies widely depending on the substrate employed, the degree of activation at a given concentration of NaCl is considerably similar. This indicates that the degree of activation is not dependent on the hydrophobicity of the amino acid side chains at the scissile bond of the substrates. The molecular activity, k(cat), and Michaelis constant, K(m), were evaluated separately for substrates N-[3-(2-furyl)acryloyl]L-leucyl-L-alanine amide and N-[3-(2-furyl)acryloyl]-L-phenyl-alanyl-L-alanine amide, and the activation was found to be brought about only by an increase in k(cat). The effectiveness of monovalent cations on the increase of k(cat) was determined to follow the order of Na+ > K+ > Li+.
AB - The activity of thermolysin in the hydrolysis of N-[3-(2-furyl)acryloyl]-glycyl-L-leucine amide and N-carbobenzoxy-L-aspartyl-L-phenylalanine methyl ester is remarkably enhanced in the presence of high concentrations (1-5 M) of neutral salts. In this study, the effect of salts on such activity has been examined using a series of substrates, furylacryloyl dipeptide amides, which have various hydrophobic amino acids at the cleavable bond. Although the enzyme activity varies widely depending on the substrate employed, the degree of activation at a given concentration of NaCl is considerably similar. This indicates that the degree of activation is not dependent on the hydrophobicity of the amino acid side chains at the scissile bond of the substrates. The molecular activity, k(cat), and Michaelis constant, K(m), were evaluated separately for substrates N-[3-(2-furyl)acryloyl]L-leucyl-L-alanine amide and N-[3-(2-furyl)acryloyl]-L-phenyl-alanyl-L-alanine amide, and the activation was found to be brought about only by an increase in k(cat). The effectiveness of monovalent cations on the increase of k(cat) was determined to follow the order of Na+ > K+ > Li+.
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U2 - 10.1042/bj3150133
DO - 10.1042/bj3150133
M3 - Article
C2 - 8670097
AN - SCOPUS:0029863639
SN - 0264-6021
VL - 315
SP - 133
EP - 138
JO - Biochemical Journal
JF - Biochemical Journal
IS - 1
ER -