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Published January 2020 | Accepted Version + Supplemental Material
Journal Article Open

New AMP-forming acid:CoA ligases from Streptomyces lividans, some of which are posttranslationally regulated by reversible lysine acetylation

Abstract

In nature, organic acids are a commonly used source of carbon and energy. Many bacteria use AMP‐forming acid:CoA ligases to convert organic acids into their corresponding acyl‐CoA derivatives, which can then enter metabolism. The soil environment contains a broad diversity of organic acids, so it is not surprising that bacteria such as Streptomyces lividans can activate many of the available organic acids. Our group has shown that the activity of many acid:CoA ligases is posttranslationally controlled by acylation of an active‐site lysine. In some cases, the modification is reversed by deacylases of different types. We identified eight new acid:CoA ligases in S. lividans TK24. Here, we report the range of organic acids that each of these enzymes can activate, and determined that two of the newly identified CoA ligases were under NAD⁺‐dependent sirtuin deacylase reversible lysine (de)acetylation control, four were not acetylated by two acetyltransferases used in this work, and two were acetylated but not deacetylated by sirtuin. This work provides insights into the broad organic‐acid metabolic capabilities of S. lividans, and sheds light into the control of the activities of CoA ligases involved in the activation of organic acids in this bacterium.

Additional Information

© 2019 John Wiley & Sons Ltd. Issue Online: 06 February 2020; Version of Record online: 28 November 2019; Accepted manuscript online: 02 November 2019; Manuscript accepted: 30 October 2019. The authors declare no conflict of interest. Data are available upon request from the authors. This work was supported by NIH grant R35-GM130399 to J.C.E.-S. Peptide fingerprinting was performed at the Proteomics and Mass Spectrometry Facility of the University of Georgia. Data availability. Data sharing not applicable.

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Accepted Version - Burckhardt_et_al-2019-Molecular_Microbiology.pdf

Supplemental Material - mmi14414-sup-0001-figs1-s6.pdf

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August 22, 2023
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