• Title/Summary/Keyword: SAM synthetase

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Properties of Acetyl-CoA Synthetase from Pseudomonas fluorescens

  • Kim, Yu-Sam;An, Jae-Hyung;Yang, Bu-Hyun;Kim, Kyu-Wan
    • BMB Reports
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    • v.29 no.4
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    • pp.277-285
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    • 1996
  • In Pseudomonas fluorescens grown on malonate as sole carbon source, acetyl-CoA synthetase was induced, suggesting that malonate is metabolized through acetate and then acetyl-CoA. Acetyl-CoA synthetase was purified 18.6-fold in 4 steps to apparent homogeneity. The native molecular mass of the enzyme estimated by a native acrylamide gel electrophoresis was 130 kDa. The enzyme was composed of two identical subunits with a molecular mass of 67 kDa. Optimum pH was 70. The acetyl-CoA synthetase showed typical Michaelis-Menten kinetics for the substrates, acetate, ATP and CoA, whose $K_m$ values were calculated to be 33.4, 74.8, and 40.7 mM respectively. Propionate. butyrate and pentanoate were also used as substrates by the enzyme, but the rate of the formation of the CoA derivatives was decreased in the order of the increase in carbon number. The enzyme was inhibited by the group-specific reagents diethylpyro-carbonate, 2,3-butanedione, pyridoxal-5'-phosphate and N-bromosuccinimide. In the presence of substrates the inactivation rate of the enzyme, by all of the group-specific reagents mentioned above decreased, indicating the presence of catalytically essential histidine, arginine, lysine and tryptophan residues at or near the active site. Preincubation of the enzyme with ATP, $Mg^{2+}$ resulted in the increase of its susceptibility to diethylpyrocarbonate, suggesting that ATP, $Mg^{2+}$ may induce a conformational change in the active site exposing the essential histidine residue to diethylpyrocarbonate. The enzyme was acetylated in the presence of acetyl-CoA, indicating that this is one of acyl-enzyme.

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Determination of the Solution Structure of Malonyl-CoA by Two-Dimensional Nuclear Magnetic Resonance Spectroscopy and Dynamical Simulated Annealing Calculations

  • Jung, Jin-Won;An, Jae-Hyung;Kim, Yu-Sam;Bang, Eun-Jung;Lee, Weon-Tae
    • BMB Reports
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    • v.32 no.3
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    • pp.288-293
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    • 1999
  • In order to understand the initial interaction of the substrates malonate, ATP, and CoA with malonyl-CoA synthetase, the catalytic product malonyl-CoA was characterized by NMR spectroscopy and molecular modeling. To assign proton and carbon chemical shifts, two-dimensional $^1H-^1H$ DQF-COSY and $^1H-^{13}C$ HMBC experiments were used. The structure of malonyl-CoA in the solution phase was determined based on distance constraints from NOESY and ROESY spectra. The structures were well-converged around the pantetheine region with the pairwise RMSD value of 0.08 nm. The solution structure exhibited a compact folded conformation with intramolecular hydrogen bonds among its carbonyl and hydroxyl groups. These findings will help us to understand the initial interaction of malonate and CoA with malonyl-CoA synthetase.

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Evience that a Plasmid Endoces Genes for Metabolism of Malonte in Pseudomonas fluorescens (Pseudomonas fluorescens에 있는 하나의 Plasmid가 말론산 대사에 관련된 유전자를 가지고 있다는 증거)

  • Kim, Yu-Sam;Kim, Eun-Joo
    • Korean Journal of Microbiology
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    • v.32 no.3
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    • pp.192-197
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    • 1994
  • Pseudomonas fluorescens which is able to utilize malonate as a sole carbon source was found to contain a novel 60 kb plasmid, which encodes the genes for the proteins to assimilate malonate, including malonate decarboxylase and acetyl-CoA synthetase. The evidence is as follows: The Pseudomonas cured with mitomycin C was unable to grow on malonate-medium as well as it lost plasmid. The plasmid isolated from the Pseudomonas could be introduced into E. coli strain JM103 and DH1 by transformation. The transformed E. coli was able to grow on malonate-medium and could transmit its plasmid back to the cured P. fluorescens by conjugation. The existence of the plasmid in the transformed E. coli was confirmed by hybridization with a labeled probe prepared from 12 kb segment of the plasmid. Dot hybridization showed that the copy number of the plasmid in the transformed E. coli is at least 13 times higher than in the wild type P. fluorescens. The two key enzymes, malonate decarboxylase and acetyl-CoA synthetase, were inducible by malonate in the transformed E. coli.

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S-Adenosyl-L-Methionine Analogues to Enhance the Production of Actinorhodin

  • Chong You-Hoon;Young Jung-Mo;Kim Jin-Young;Lee Yu-Kyung;Park Kwang-Su;Cho Jun-Ho;Kwon Hyung-Jin;Suh Joo-WOn;Lim Yoong-Ho
    • Journal of Microbiology and Biotechnology
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    • v.16 no.7
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    • pp.1154-1157
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    • 2006
  • It is known that overexpression of S-adenosyl-L-methionine (SAM) synthetase or exogenous addition of SAM enhances the production of actinorhodin, one of pigmented antibiotics found from Streptomyces coelicolor. In order to discover a novel compound as a signal molecule to produce actinorhodin instead of SAM, several compounds were synthesized based on the relationships between structures of the SAM analogues and their actinorhodin productivities. Of these, a few compounds showed better productivities of actinorhodin than SAM.

Kinetics of Malonyl-CoA Synthetase from Rhizobium trifolii and Evidences for Malonyl-AMP Formation as a Reaction Intermediate

  • Kang, Sang-Won;Hong, Sung-Yu;Ryoo, Hyung-Don;Rhyu, Gyung-Ihm;Kim Yu-Sam
    • Bulletin of the Korean Chemical Society
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    • v.15 no.5
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    • pp.394-399
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    • 1994
  • The catalytic mechanism of malonyl-CoA synthetase from Rhizobium trifolii was investigated by the steady state kinetics and intermediate identification. Initial velocity studies and the product inhibition studies with AMP and PPi strongly suggested ordered Bi Uni Uni Bi Ping-Pong Ter Ter system as the most probable steady state kinetic mechanism of malonyl-CoA synthetase. Michaelis constants were $0.17{\pm}0.04 {\mu}M,\;0.24{\pm}0.18 {\mu}M\;and\;0.045{\pm}0.26 {\mu}$M for ATP, malonate and CoA, respectively. The TLC analysis of the $^{32}P-labelled$ products in reaction mixture containing $[{\gamma}-^{32}P]$ ATP in the absence of CoA showed that PPi was produced after the sequential addition of ATP and malonate. Formation of malonyl-AMP, suggested as an intermediate in the kinetically deduced mechanism, was confirmed by the analysis of $^{31}P-NMR$ spectra of AMP product isolated from the $^{18}O$ transfer experiment using $[^{18}O]$malonate. Two resonances were observed, corresponding to AMP labelled with zero and one atom of $^{18}O$, indicating that one atom of $^{18}O$ transferred from $[^{18}O]$malonate to AMP through the formation of malonyl-AMP. Formation of malonyl-AMP was also confirmed through the TLC analysis of reaction mixture containing $[{\alpha}-^{32}P]$ATP. These results strongly support the ordered Bi Uni Uni Bi Ping-Pong Ter Ter mechanism deduced from the initial velocity and product inhibition studies.

Malonate Metabolism: Biochemistry, Molecular Biology, Physiology, and Industrial Application

  • Kim, Yu-Sam
    • BMB Reports
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    • v.35 no.5
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    • pp.443-451
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    • 2002
  • Malonate is a three-carbon dicarboxylic acid. It is well known as a competitive inhibitor of succinate dehydrogenase. It occurs naturally in biological systems, such as legumes and developing rat brains, which indicates that it may play an important role in symbiotic nitrogen metabolism and brain development. Recently, enzymes that are related to malonate metabolism were discovered and characterized. The genes that encode the enzymes were isolated, and the regulation of their expression was also studied. The mutant bacteria, in which the malonate-metabolizing gene was deleted, lost its primary function, symbiosis, between Rhizobium leguminosarium bv trifolii and clover. This suggests that malonate metabolism is essential in symbiotic nitrogen metabolism, at least in clover nodules. In addition to these, the genes matB and matC have been successfully used for generation of the industrial strain of Streptomyces for the production of antibiotics.

Inhibition of Adipocyte Differentiation and Adipogenesis by Supercritical Fluid Extracts and Marc from Cinnamomum verum (초임계 추출 계피오일의 3T3-L1 지방전구세포의 분화 전사인자 억제에 의한 지방대사 조절)

  • Park, Sung-Jin;Lee, In-Seon;Lee, Sam-Pin;Yu, Mi-Hee
    • Journal of Life Science
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    • v.23 no.4
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    • pp.510-517
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    • 2013
  • This study was performed to evaluate the antiobesity effect of supercritical fluid extracts (SFC) and marc methanol extracts (SFM) from Cinnamomum verum in 3T3-L1 preadipocytes. In inducing the differentiation of 3T3-L1 preadipocytes in the presence of an adipogenic cocktail, iso-butylmethylanthine (IBMX), dexamathasone, and insulin, treatment with fraction residue SFC and SFM. SFC significantly reduced the mRNA expression of the transcription factor peroxisome proliferator-activate-dreceptor-${\gamma}$ ($PPAR{\gamma}$), the sterol regulatory-element-binding protein-1c (SREBP1c), and the CCAAT enhancer-binding-protein ${\alpha}$ ($C/EBP{\alpha}$) in a concentration-dependent manner. Moreover, SFC markedly down-regulated acyl-CoA synthetase-1 (ASC1), fatty acid synthesis (FAS), fatty acid transport-1 (FATP1), fatty acid binding protein 4 (FABP4), and perilipin. These findings suggest that SFC may be a potential therapeutic adjunct for obesity by targeting the differentiation of preadipocytes, as well as their functions.