Asp-99 donates a hydrogen bond not to Tyr-14 but to the steroid directly in the catalytic mechanism of Delta 5-3-ketosteroid isomerase from Pseudomonas putida biotype B. 2000

G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
Department of Life Sciences, Center for Biofunctional Molecules and School of Environmental Engineering, Pohang University of Science and Technology, Pohang, Kyungbuk, 790-784, Korea.

Delta 5-3-ketosteroid isomerase (KSI) catalyzes the allylic isomerization of Delta 5-3-ketosteroids at a rate approaching the diffusion limit by an intramolecular transfer of a proton. Despite the extensive studies on the catalytic mechanism, it still remains controversial whether the catalytic residue Asp-99 donates a hydrogen bond to the steroid or to Tyr-14. To clarify the role of Asp-99 in the catalysis, two single mutants of D99E and D99L and three double mutants of Y14F/D99E, Y14F/D99N, and Y14F/D99L have been prepared by site-directed mutagenesis. The D99E mutant whose side chain at position 99 is longer by an additional methylene group exhibits nearly the same kcat as the wild-type while the D99L mutant exhibits ca. 125-fold lower kcat than that of the wild-type. The mutations made at positions 14 and 99 exert synergistic or partially additive effect on kcat in the double mutants, which is inconsistent with the mechanism based on the hydrogen-bonded catalytic dyad, Asp-99 COOH...Tyr-14 OH...C3-O of the steroid. The crystal structure of D99E/D38N complexed with equilenin, an intermediate analogue, at 1.9 A resolution reveals that the distance between Tyr-14 O eta and Glu-99 O epsilon is ca. 4.2 A, which is beyond the range for a hydrogen bond, and that the distance between Glu-99 O epsilon and C3-O of the steroid is maintained to be ca. 2.4 A, short enough for a hydrogen bond to be formed. Taken together, these results strongly support the idea that Asp-99 contributes to the catalysis by donating a hydrogen bond directly to the intermediate.

UI MeSH Term Description Entries
D007700 Kinetics The rate dynamics in chemical or physical systems.
D009277 Nandrolone C18 steroid with androgenic and anabolic properties. It is generally prepared from alkyl ethers of ESTRADIOL to resemble TESTOSTERONE but less one carbon at the 19 position. 19-Nortestosterone,Estrenolone,Norandrostenolone,Nortestosterone,17-Hydroxy-Estr-4-Ene-3-One,17beta-Hydroxy-19-Nor-4-Androsten-3-One,17beta Hydroxy 19 Nor 4 Androsten 3 One
D002384 Catalysis The facilitation of a chemical reaction by material (catalyst) that is not consumed by the reaction. Catalyses
D004855 Equilenin An estrogenic steroid produced by HORSES. It has a total of five double bonds in the A- and B-ring. High concentration of equilenin is found in the URINE of pregnant mares.
D006860 Hydrogen Bonding A low-energy attractive force between hydrogen and another element. It plays a major role in determining the properties of water, proteins, and other compounds. Hydrogen Bonds,Bond, Hydrogen,Hydrogen Bond
D001216 Asparagine A non-essential amino acid that is involved in the metabolic control of cell functions in nerve and brain tissue. It is biosynthesized from ASPARTIC ACID and AMMONIA by asparagine synthetase. (From Concise Encyclopedia Biochemistry and Molecular Biology, 3rd ed) L-Asparagine
D001224 Aspartic Acid One of the non-essential amino acids commonly occurring in the L-form. It is found in animals and plants, especially in sugar cane and sugar beets. It may be a neurotransmitter. (+-)-Aspartic Acid,(R,S)-Aspartic Acid,Ammonium Aspartate,Aspartate,Aspartate Magnesium Hydrochloride,Aspartic Acid, Ammonium Salt,Aspartic Acid, Calcium Salt,Aspartic Acid, Dipotassium Salt,Aspartic Acid, Disodium Salt,Aspartic Acid, Hydrobromide,Aspartic Acid, Hydrochloride,Aspartic Acid, Magnesium (1:1) Salt, Hydrochloride, Trihydrate,Aspartic Acid, Magnesium (2:1) Salt,Aspartic Acid, Magnesium-Potassium (2:1:2) Salt,Aspartic Acid, Monopotassium Salt,Aspartic Acid, Monosodium Salt,Aspartic Acid, Potassium Salt,Aspartic Acid, Sodium Salt,Calcium Aspartate,Dipotassium Aspartate,Disodium Aspartate,L-Aspartate,L-Aspartic Acid,Magnesiocard,Magnesium Aspartate,Mg-5-Longoral,Monopotassium Aspartate,Monosodium Aspartate,Potassium Aspartate,Sodium Aspartate,Aspartate, Ammonium,Aspartate, Calcium,Aspartate, Dipotassium,Aspartate, Disodium,Aspartate, Magnesium,Aspartate, Monopotassium,Aspartate, Monosodium,Aspartate, Potassium,Aspartate, Sodium,L Aspartate,L Aspartic Acid
D001665 Binding Sites The parts of a macromolecule that directly participate in its specific combination with another molecule. Combining Site,Binding Site,Combining Sites,Site, Binding,Site, Combining,Sites, Binding,Sites, Combining
D013251 Steroid Isomerases Enzymes that catalyze the transposition of double bond(s) in a steroid molecule. EC 5.3.3. 3-Ketosteroid Isomerases,3-Oxosteroid Isomerases,3 Ketosteroid Isomerases,3 Oxosteroid Isomerases,Isomerases, 3-Ketosteroid,Isomerases, 3-Oxosteroid,Isomerases, Steroid
D014443 Tyrosine A non-essential amino acid. In animals it is synthesized from PHENYLALANINE. It is also the precursor of EPINEPHRINE; THYROID HORMONES; and melanin. L-Tyrosine,Tyrosine, L-isomer,para-Tyrosine,L Tyrosine,Tyrosine, L isomer,para Tyrosine

Related Publications

G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
October 2001, Journal of the American Chemical Society,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
November 1994, Journal of bacteriology,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
May 1995, Journal of bacteriology,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
May 1986, The Journal of biological chemistry,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
April 1980, The Journal of biological chemistry,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
July 1998, Biochemistry,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
April 2005, The FEBS journal,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
April 2001, Protein science : a publication of the Protein Society,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
December 1977, Biochimica et biophysica acta,
G Choi, and N C Ha, and S W Kim, and D H Kim, and S Park, and B H Oh, and K Y Choi
January 1976, Advances in enzyme regulation,
Copied contents to your clipboard!