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Consolidated conversion of protein waste into biofuels and ammonia using Bacillus subtilis

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논문

Consolidated conversion of protein waste into biofuels and ammonia using Bacillus subtilis

학술지

Metabolic engineering

저자명

Choi, K.Y.; Wernick, D.G.; Tat, C.A.; Liao, J.C.

초록

The non-recyclable use of nitrogen fertilizers in microbial production of fuels and chemicals remains environmentally detrimental. Conversion of protein wastes into biofuels and ammonia by engineering nitrogen flux in Escherichia coli has been demonstrated as a method to reclaim reduced-nitrogen and curb its environmental deposition. However, protein biomass requires a proteolysis process before it can be taken up and converted by any microbe. Here, we metabolically engineered Bacillus subtilis to hydrolyze polypeptides through its secreted proteases and to convert amino acids into advanced biofuels and ammonia fertilizer. Redirection of B. subtilis metabolism for amino-acid conversion required inactivation of the branched-chain amino-acid (BCAA) global regulator CodY. Additionally, the lipoamide acyltransferase (bkdB) was deleted to prevent conversion of branched-chain 2-keto acids into their acyl-CoA derivatives. With these deletions and heterologous expression of a keto-acid decarboxylase and an alcohol dehydrogenase, the final strain produced biofuels and ammonia from an amino-acid media with 18.9% and 46.6% of the maximum theoretical yield. The process was also demonstrated on several waste proteins. The results demonstrate the feasibility of direct microbial conversion of polypeptides into sustainable products.

발행연도

2014

발행기관

Academic Press

ISSN

1096-7176

ISSN

1096-7184

23

페이지

pp.53-61

주제어

Protein biomass; Protein conversion; Higher alcohols; Ammonia; Bacillus subtilis; CodY; BCKDC

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논문; 2014-05-01

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