Clostridium autoethanogenum alters cofactor synthesis, redox metabolism, and lysine-acetylation in response to elevated H2:CO feedstock ratios for enhancing carbon capture efficiency.

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Title: Clostridium autoethanogenum alters cofactor synthesis, redox metabolism, and lysine-acetylation in response to elevated H2:CO feedstock ratios for enhancing carbon capture efficiency.
Authors: Davin, Megan E.1,2 (AUTHOR), Thompson, R. Adam3 (AUTHOR), Giannone, Richard J.2 (AUTHOR), Mendelson, Lucas W.3 (AUTHOR), Carper, Dana L.2 (AUTHOR), Martin, Madhavi Z.2 (AUTHOR), Martin, Michael E.3 (AUTHOR), Engle, Nancy L.2 (AUTHOR), Tschaplinski, Timothy J.2 (AUTHOR), Brown, Steven D.3 (AUTHOR) steve.brown@lanzatech.com, Hettich, Robert L.2 (AUTHOR) hettichrl@ornl.gov
Source: Biotechnology for Biofuels & Bioproducts. 9/3/2024, Vol. 17 Issue 1, p1-16. 16p.
Database: Academic Search Ultimate
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ISSN:27313654
DOI:10.1186/s13068-024-02554-w