NAPRT-mediated deamidated NAD biosynthesis enhances colon tissue resiliency and suppresses tumorigenesis

X Xiaoyue Wu J Jason G. Williams H Haoyang Liang A Artiom Gruzdev J Joshua Hartsell (Department of Molecular and Structural Biochemistry) J Jack Shpargel R Rabina Mainali Y Yi Fang M Ming Ji C Caroline Duval X Xin Xu Z Zixin Zhang H Heather Winter P Peter Pediaditakis A Arun R. Pandiri M Marie E. Migaud A Alan K. Jarmusch H Huimin Yu (College of Chemistry and Environmental Engineering) X Xiaojing Liu (Department of Molecular and Structural Biochemistry) J Jian-Liang Li X Xiaojiang Xu I Igor Shats X Xiaoling Li

Abstract

Abstract Nicotinamide adenine dinucleotide (NAD) is synthesized through both amidated salvage and deamidated pathways. Although NAD-producing enzymes are often overexpressed in cancer cells to meet the high metabolic demands of rapid proliferation and are considered oncogenic, we report that physiological levels of nicotinic acid phosphoribosyl transferase (NAPRT), the first enzyme in the Preiss-Handler arm of the deamidated pathways, suppress tumorigenesis. We show that NAPRT is enriched in gut epithelial cells, where it sustains the NAD pool for an efficient response to stress-induced acute NAD depletion. Consequently, NAPRT deficiency impairs the activity of poly-(ADP-ribose) polymerases and DNA repair, sensitizes mice to chemical-induced colitis and tumorigenesis, as well as to age-associated spontaneous tumor development. Moreover, low NAPRT expression correlates with poor prognosis in several human cancer types. Thus, homeostatic levels of deamidated NAD biosynthesis contribute to tumor suppression, and boosting this pathway may offer a strategy for cancer prevention.

Article Details

Volume / Issue Vol. 1, Issue 1
Published February 10, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (23)

X

Xiaoyue Wu

J

Jason G. Williams

H

Haoyang Liang

A

Artiom Gruzdev

J

Joshua Hartsell

Department of Molecular and Structural Biochemistry

J

Jack Shpargel

R

Rabina Mainali

Y

Yi Fang

M

Ming Ji

C

Caroline Duval

X

Xin Xu

Z

Zixin Zhang

H

Heather Winter

P

Peter Pediaditakis

A

Arun R. Pandiri

M

Marie E. Migaud

A

Alan K. Jarmusch

H

Huimin Yu

College of Chemistry and Environmental Engineering

X

Xiaojing Liu

Department of Molecular and Structural Biochemistry

J

Jian-Liang Li

X

Xiaojiang Xu

I

Igor Shats

X

Xiaoling Li