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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

BACKGROUND: 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. RESULTS: 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. CONCLUSIONS: 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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2026-06-21 MST

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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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