Optimal conditions for cultivation of Rhodococcus sp. N-774 and for conversion of acrylonitrile to acrylamide by resting cells.
Ichiro Watanabe, Yoshiaki Satoh, Kanehiko Enomoto, Susumu Seki, Keiichi Sakashita
Abstract
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Ichiro Watanabe, Yoshiaki Satoh, Kanehiko Enomoto, Susumu Seki, Keiichi Sakashita
Abstract
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The culture conditions for Rhodococcus sp.N-774 cells showing high nitrile hydratase activity and the reaction conditions for acrylamide production by the resting cells were optimized.Thiamine was essential for the growth of the strain.Yeast extract and Fe2 + or Fe3 + remarkably promoted the formation of nitrile hydratase of the cells.The reaction proceeded optimally at temperatures below 30°C.Incubation for 1 hr at above 40°C resulted in inactivation of the enzyme.Through reaction at a temperature as low as 0°C, the inhibition and inactivation of the enzyme activity by the substrate, acrylonitrile, and the product, acrylamide, were remarkably reduced, and higher accumulation of acrylamide could be attained.Under the optimal conditions, a more than 20% (w/v) acrylamide solution was obtained with a conversion yield of nearly 100%.Thus, the aqueous acrylamide solution obtained showed a high enough quality for use for the commercial preparation of polyacrylamide.
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The culture conditions for Rhodococcus sp.N-774 cells showing high nitrile hydratase activity and the reaction conditions for acrylamide production by the resting cells were optimized.Thiamine was essential for the growth of the strain.Yeast extract and Fe2 + or Fe3 + remarkably promoted the formation of nitrile hydratase of the cells.The reaction proceeded optimally at temperatures below 30°C.Incubation for 1 hr at above 40°C resulted in inactivation of the enzyme.Through reaction at a temperature as low as 0°C, the inhibition and inactivation of the enzyme activity by the substrate, acrylonitrile, and the product, acrylamide, were remarkably reduced, and higher accumulation of acrylamide could be attained.Under the optimal conditions, a more than 20% (w/v) acrylamide solution was obtained with a conversion yield of nearly 100%.Thus, the aqueous acrylamide solution obtained showed a high enough quality for use for the commercial preparation of polyacrylamide.
Key concepts: Acrylamide, Acrylonitrile, Nitrile hydratase, Chemistry, Substrate (aquarium), Yield (engineering), Rhodococcus, Polyacrylamide