IDENTIFICATION AND SPECTRAL CHARACTERIZATION OF THE EXTERNAL ALDIMINE OF THE O-ACETYLSERINE SULFHYDRYLASE REACTION

被引:68
|
作者
SCHNACKERZ, KD
TAI, CH
SIMMONS, JW
JACOBSON, TM
RAO, GSJ
COOK, PF
机构
[1] UNIV N TEXAS, HLTH SCI CTR, DEPT BIOCHEM & MOLEC BIOL, FT WORTH, TX 76107 USA
[2] UNIV WURZBURG, THEODOR BOVERI INST BIOWISSENSCH BIOZENTRUM, D-97074 WURZBURG, GERMANY
关键词
D O I
10.1021/bi00038a008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The O-acetylserine sulfhydrylase (OASS) reaction has been studied using a number of spectral probes including UV-visible, fluorescence, circular dichroism, and P-31 NMR spectroscopy. The addition of L-cysteine, L-alanine, and glycine to OASS results in a shift in lambda(max) of 412 nm for the internal Schiff base to 418 nm resulting from the formation of the external Schiff base. The addition of L-serine or O-methyl-D,L-serine gives decreases of the absorbance of unliganded enzyme at 412 nm of about 50% and 20%, respectively, concomitant with an increase in the absorbance at 320 nm and a shift in the lambda(max) of the remaining visible absorbance to 418 nm. The spectral shifts observed in the presence of L-serine are suggestive of establishing an equilibrium between different forms of external Schiff base. The concentration dependence of the changes at 440 (L-cysteine) and 320 nm (L-serine) provides an estimate of the dissociation constant for the external aldimine, The pH dependence of the dissociation constant suggests the alpha-amine of the amino acid must be unprotonated for nucleophilic attack at C4' of PLP, and an enzyme side chain must be unprotonated to hydrogen-bond the thiol or hydroxyl side chain of the amino acid. When L-cysteine is the amino acid, the thiol side chain must be protonated to hydrogen-bond to the unprotonated enzyme side chain. The P-31 NMR chemical shift is increased from 5.2 ppm for unliganded enzyme to 5.3 ppm in the presence of L-cysteine, signaling a tighter interaction at the 5'-phosphate upon formation of the external Schiff base, The P-31 NMR chemical shift is decreased to 4.4 ppm in the presence of L-serine, suggesting a looser binding of the 5'-phosphate compared to free enzyme or the external Schiff base with L-cysteine. However, the line width in the latter case is very bread at about 50 Hz, suggesting the presence of more than one species. The spectrum in the presence of L-serine gives a change in the chemical shift to higher field as the temperature decreases. Addition of L-cysteine or L-serine significantly changes the far-UV CD spectrum, likely reflecting the closing of the active site. In addition, an induced dichroism of the PLP cofactor is observed in the visible region of the CD spectrum. Free enzyme gives a positive Cotton effect at 412 nm, while in the presence of L-cysteine or glycine the positive Cotton effect shifts to 418 nm with the same intensity as that observed for free enzyme, The visible CD in the presence of L-serine exhibits positive Cotton effects at 320 and 418 nm, while formation of the alpha-aminoacrylate intermediate results in a band with a negative Cotton effect centered at 470 nm.
引用
收藏
页码:12152 / 12160
页数:9
相关论文
共 50 条
  • [31] O-ACETYLSERINE AND O-ACETYLHOMOSERINE SULFHYDRYLASE OF YEAST - STUDIES WITH METHIONINE AUXOTROPHS
    YAMAGATA, S
    TAKESHIMA, K
    NAIKI, N
    JOURNAL OF BIOCHEMISTRY, 1975, 77 (05): : 1029 - 1036
  • [32] Structure of the O-acetylserine sulfhydrylase isoenzyme CysM from Escherichia coli
    Claus, MT
    Zocher, GE
    Maier, THP
    Schulz, GE
    BIOCHEMISTRY, 2005, 44 (24) : 8620 - 8626
  • [33] Role of Histidine-152 in cofactor orientation in the PLP-dependent O-acetylserine sulfhydrylase reaction
    Tai, Chia-Hui
    Rabeh, Wael M.
    Guan, Rong
    Schnackerz, Klaus D.
    Cook, Paul F.
    ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2008, 472 (02) : 115 - 125
  • [34] Substrate analogs as structural probes of the external Shiff base of O-acetylserine sulfhydrylase:: An implication for the closed conformation.
    Hwang, CC
    Jenn, T
    Gani, D
    Cook, PF
    FASEB JOURNAL, 1997, 11 (09): : A894 - A894
  • [35] Isozyme-Specific Ligands for O-acetylserine sulfhydrylase, a Novel Antibiotic Target
    Spyrakis, Francesca
    Singh, Ratna
    Cozzini, Pietro
    Campanini, Barbara
    Salsi, Enea
    Felici, Paolo
    Raboni, Samanta
    Benedetti, Paolo
    Cruciani, Gabriele
    Kellogg, Glen E.
    Cook, Paul F.
    Mozzarelli, Andrea
    PLOS ONE, 2013, 8 (10):
  • [36] Role of pyridoxal 5′-phosphate in the structural stabilization of O-acetylserine sulfhydrylase
    Bettati, S
    Benci, S
    Campanini, B
    Raboni, S
    Chirico, G
    Beretta, S
    Schnackerz, KD
    Hazlett, TL
    Gratton, E
    Mozzarelli, A
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (51) : 40244 - 40251
  • [37] Characterization of a novel thermostable O-acetylserine sulfhydrylase from Aeropyrum pernix K1
    Mino, K
    Ishikawa, K
    JOURNAL OF BACTERIOLOGY, 2003, 185 (07) : 2277 - 2284
  • [38] Three-dimensional structure of O-acetylserine sulfhydrylase from Salmonella typhimurium
    Burkhard, P
    Rao, GSJ
    Hohenester, E
    Schnackerz, KD
    Cook, PF
    Jansonius, JN
    JOURNAL OF MOLECULAR BIOLOGY, 1998, 283 (01) : 121 - 133
  • [39] CLONING OF THE ESCHERICHIA-COLI O-ACETYLSERINE SULFHYDRYLASE GENE - ABILITY OF THE CLONE TO PRODUCE A MUTAGENIC PRODUCT FROM AZIDE AND O-ACETYLSERINE
    OWAIS, WM
    GHARAIBEH, R
    MUTATION RESEARCH, 1990, 245 (03): : 151 - 155
  • [40] Identification of Fungal Metabolite Gliotoxin as a Potent Inhibitor Against Bacterial O-Acetylserine Sulfhydrylase CysK and CysM
    Rahman, Azizur
    Ono, Katsuhiko
    Toyomoto, Touya
    Hanaoka, Kenjiro
    Sawa, Tomohiro
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2025, 26 (03)