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Conclusions: C. pasteurianum ATCC 6013 can be electrotransformed at a high efficiency using appropriately methylated plasmid DNA. The electrotransformation method and tools reported here should ...
Abstract: Background: Clostridium pasteurianum is one of the most promising biofuel producers within the genus Clostridium owing to its unique metabolic ability to ferment glycerol into butanol.
This study investigates the capability of the Clostridium pasteurianum SE-5 to produce butanol using transesterification reaction solution (TRS) directly, while the crude glyecerol as the sole carbon ...
As paradigms for proton-coupled electron transfer in enzymes and benchmarks for a fully renewable Hâ‚‚ technology, [FeFe]-hydrogenases behave as highly reversible electrocatalysts when immobilized on an ...
IT is a well-known fact that by the combined action of cellulose-decomposing and nitrogen-fixing bacteria in crude culture, elementary nitrogen may be fixed in quantities of as much as 10–12 mgm ...
Alexander M. Klibanov, Nathan O. Kaplan, Martin D. Kamen, A Rationale for Stabilization of Oxygen-Labile Enzymes: Application to a Clostridial Hydrogenase, Proceedings of the National Academy of ...
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