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New function for Escherichia coli xanthosine phophorylase (xapA): genetic and biochemical evidences on its participation in NAD+ salvage from nicotinamide

Wei-Ren Dong, Cen-Cen Sun, Guan Zhu, Shi-Hua Hu, Li‐xin Xiang, Jian‐Zhong Shao

BMC Microbiology · 2014 · ▲ 31 citations

Abstract

In an effort to reconstitute the NAD+ synthetic pathway in Escherichia coli (E. coli), we produced a set of gene knockout mutants with deficiencies in previously well-defined NAD+ de novo and salvage pathways. Unexpectedly, the mutant deficient in NAD+ de novo and salvage pathway I could grow in M9/nicotinamide medium, which was contradictory to the proposed classic NAD+ metabolism of E. coli. Such E. coli mutagenesis assay suggested the presence of an undefined machinery to feed nicotinamide into the NAD+ biosynthesis. We wanted to verify whether xanthosine phophorylase (xapA) contributed to a new NAD+ salvage pathway from nicotinamide. Additional knockout of xapA further slowed down the bacterial growth in M9/nicotinamide medium, whereas the complementation of xapA restored the growth phenotype. To further validate the new function of xapA, we cloned and expressed E. coli xapA as a recombinant soluble protein. Biochemical assay confirmed that xapA was capable of using nicotinamide as a substrate for nicotinamide riboside formation. Both the genetic and biochemical evidences indicated that xapA could convert nicotinamide to nicotinamide riboside in E. coli, albeit with relatively weak activity, indicating that xapA may contribute to a second NAD+ salvage pathway from nicotinamide. We speculate that this xapA-mediated NAD+ salvage pathway might be significant in some bacteria lacking NAD+ de novo and NAD+ salvage pathway I or II, to not only use nicotinamide riboside, but also nicotinamide as precursors to synthesize NAD+. However, this speculation needs to be experimentally tested.

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OpenAlex
DOI
10.1186/1471-2180-14-29
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2026-06-16 MST

Cite this

APA
Dong, W., Sun, C., Zhu, G., Hu, S., Xiang, L., &amp; Shao, J. (2014). New function for Escherichia coli xanthosine phophorylase (xapA): genetic and biochemical evidences on its participation in NAD+ salvage from nicotinamide. <em>BMC Microbiology</em>. https://doi.org/10.1186/1471-2180-14-29
Vancouver
Dong W, Sun C, Zhu G, Hu S, Xiang L, Shao J. New function for Escherichia coli xanthosine phophorylase (xapA): genetic and biochemical evidences on its participation in NAD+ salvage from nicotinamide. BMC Microbiology. 2014. doi:10.1186/1471-2180-14-29.
BibTeX
@article{weiren2014Newfun, title = {New function for Escherichia coli xanthosine phophorylase (xapA): genetic and biochemical evidences on its participation in NAD+ salvage from nicotinamide}, author = {Wei-Ren Dong and Cen-Cen Sun and Guan Zhu and Shi-Hua Hu and Li‐xin Xiang and Jian‐Zhong Shao}, journal = {BMC Microbiology}, year = {2014}, doi = {10.1186/1471-2180-14-29}, }

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