TY - JOUR
T1 - Effect of carbon chain length in acyl coenzyme A on the efficiency of enzymatic transformation of okadaic acid to 7-O-acyl okadaic acid
AU - Furumochi, Sachie
AU - Onoda, Tatsuya
AU - Cho, Yuko
AU - Fuwa, Haruhiko
AU - Sasaki, Makoto
AU - Yotsu-Yamashita, Mari
AU - Konoki, Keiichi
N1 - Funding Information:
This research was supported by JSPS KAKENHI (Grant Numbers 21603003 and 24510291 to K.K.), the NOVARTIS Foundation (Japan) for the Promotion of Science (to K.K.), and the JSPS Funding Program for the Next Generation of World-Leading Researchers (LS012) (M.Y.-Y.). We thank Dr. Takeshi Yasumoto of Japan Food Research Laboratories for providing 7- O -hexadecanoyl DTX1 (DTX3). We thank Dr. Yoshiyuki Itoh, JEOL Ltd, for measuring MALDI TOFMS spectra using a JMS-S3000 (JEOL Ltd, Tokyo, Japan) and Dr. Nahoko Higashitani of the Graduate School of Life Sciences, Tohoku University, for measuring MALDI TOFMS spectra using a MALDI TOF/TOF™ 5800 (AB Sciex, Foster City, CA, USA).
Publisher Copyright:
© 2016 Elsevier Ltd. All rights reserved.
PY - 2016/7/1
Y1 - 2016/7/1
N2 - Okadaic acid (OA), a product of dinoflagellate Prorocentrum spp., is transformed into 7-O-acyl OA in various bivalve species. The structural transformation proceeds enzymatically in vitro in the presence of the microsomal fraction from the digestive gland of bivalves. We have been using LC-MS/MS to identify OA-transforming enzymes by detecting 7-O-acyl OA, also known as dinophysistoxin 3 (DTX3). However, an alternative assay for DTX3 is required because the OA-transforming enzyme is a membrane protein, and surfactants for solubilizing membrane proteins decrease the sensitivity of LC-MS/MS. The present study examined saturated fatty acyl CoAs with a carbon chain length of 10 (decanoyl), 12 (dodecanoyl), 14 (tetradecanoyl), 16 (hexadecanoyl) and 18 (octadecanoyl) as the substrate for the in vitro acylation reaction. Saturated fatty acyl CoAs with a carbon chain length of 14, 16 and 18 exhibited higher yields than those with a carbon chain length of 10 or 12. Acyl CoAs with carbon chain lengths from 14 to 18 and containing either a diene unit, an alkyne unit, or an azide unit in the carbon chain were synthesized and shown to provide the corresponding DTX3 with a yield comparable to that of hexadecanoyl CoA. The three functional units can be conjugated with fluorescent reagents and are applicable to the development of a novel assay for DTX3.
AB - Okadaic acid (OA), a product of dinoflagellate Prorocentrum spp., is transformed into 7-O-acyl OA in various bivalve species. The structural transformation proceeds enzymatically in vitro in the presence of the microsomal fraction from the digestive gland of bivalves. We have been using LC-MS/MS to identify OA-transforming enzymes by detecting 7-O-acyl OA, also known as dinophysistoxin 3 (DTX3). However, an alternative assay for DTX3 is required because the OA-transforming enzyme is a membrane protein, and surfactants for solubilizing membrane proteins decrease the sensitivity of LC-MS/MS. The present study examined saturated fatty acyl CoAs with a carbon chain length of 10 (decanoyl), 12 (dodecanoyl), 14 (tetradecanoyl), 16 (hexadecanoyl) and 18 (octadecanoyl) as the substrate for the in vitro acylation reaction. Saturated fatty acyl CoAs with a carbon chain length of 14, 16 and 18 exhibited higher yields than those with a carbon chain length of 10 or 12. Acyl CoAs with carbon chain lengths from 14 to 18 and containing either a diene unit, an alkyne unit, or an azide unit in the carbon chain were synthesized and shown to provide the corresponding DTX3 with a yield comparable to that of hexadecanoyl CoA. The three functional units can be conjugated with fluorescent reagents and are applicable to the development of a novel assay for DTX3.
KW - Bivalves
KW - Detoxification
KW - Dinophysistoxin 3
KW - Okadaic acid
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U2 - 10.1016/j.bmcl.2016.05.027
DO - 10.1016/j.bmcl.2016.05.027
M3 - Article
C2 - 27231127
AN - SCOPUS:84971602126
SN - 0960-894X
VL - 26
SP - 2992
EP - 2996
JO - Bioorganic and Medicinal Chemistry Letters
JF - Bioorganic and Medicinal Chemistry Letters
IS - 13
ER -