TY - JOUR
T1 - Characteristics of serine acetyltransferase from escherichia coli deleting different lengths of amino acid residues from the C-terminus
AU - Mino, Koshiki
AU - Hiraoka, Kenji
AU - Imamura, Koreyoshi
AU - Sakiyama, Takaharu
AU - Eisaki, Naoki
AU - Matsuyama, Asahi
AU - Nakanishi, Kazuhiro
PY - 2000/1/1
Y1 - 2000/1/1
N2 - Some properties of serine acetyltransferases (SATs) from Escherichia coli, deleting 10-25 amino acid residues from the C-terminus (SATΔC10-ΔC25) were investigated. The specific activity depended only slightly on the length of the C-terminal region deleted. Although the sensitivity of SATΔC10 to inhibition by L-cysteine was similar to that for the wild-type SAT, it became less with further increases in the length of the amino acid residues deleted. SATΔC10 was inactivated on cooling to 0°C and dissociated into dimers or trimers in the same manner as the wild-type SAT, but Met-256-Ile mutant SAT as well as SATΔC14, SATΔC20, and SATΔC25 were stable. Since SATΔC10, SATΔC14, and SATΔC25 did not form a complex with O-acetylserine sulfhydrylase-A (OASS-A) in a way similar to SATΔC20, it was indicated that 10 amino acid residues or fewer from the C-terminus of the wild-type SAT are responsible for the complex formation with OASS-A. The C-terminal peptide of the 10 amino acid residues interacted competitively with OASS-A with respect to OAS although its affinity was much lower than that for the wild-type SAT.
AB - Some properties of serine acetyltransferases (SATs) from Escherichia coli, deleting 10-25 amino acid residues from the C-terminus (SATΔC10-ΔC25) were investigated. The specific activity depended only slightly on the length of the C-terminal region deleted. Although the sensitivity of SATΔC10 to inhibition by L-cysteine was similar to that for the wild-type SAT, it became less with further increases in the length of the amino acid residues deleted. SATΔC10 was inactivated on cooling to 0°C and dissociated into dimers or trimers in the same manner as the wild-type SAT, but Met-256-Ile mutant SAT as well as SATΔC14, SATΔC20, and SATΔC25 were stable. Since SATΔC10, SATΔC14, and SATΔC25 did not form a complex with O-acetylserine sulfhydrylase-A (OASS-A) in a way similar to SATΔC20, it was indicated that 10 amino acid residues or fewer from the C-terminus of the wild-type SAT are responsible for the complex formation with OASS-A. The C-terminal peptide of the 10 amino acid residues interacted competitively with OASS-A with respect to OAS although its affinity was much lower than that for the wild-type SAT.
KW - C-terminal region
KW - Cold inactivation
KW - Cysteine synthetase
KW - O-acetylserine sulfhydrylase
KW - Serine acetyltransferase
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U2 - 10.1271/bbb.64.1874
DO - 10.1271/bbb.64.1874
M3 - Article
C2 - 11055390
AN - SCOPUS:0034278207
SN - 0916-8451
VL - 64
SP - 1874
EP - 1880
JO - Bioscience, Biotechnology and Biochemistry
JF - Bioscience, Biotechnology and Biochemistry
IS - 9
ER -