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Elevated micro RNA ‐34a in obesity reduces NAD + levels and SIRT 1 activity by directly targeting NAMPT

Sung‐E Choi, Ting Fu, Sunmi Seok, Dong‐Hyun Kim, Eunkyung Yu, Kwan Woo Lee, Yup Kang, Xiaoling Li, Byron Kemper, Jongsook Kim Kemper

Aging Cell · 2013 · ▲ 249 citations

Abstract

SIRT1 is an NAD(+)-dependent deacetylase that is implicated in prevention of many age-related diseases including metabolic disorders. As SIRT1 deacetylase activity is dependent on NAD(+) levels and the development of compounds that directly activate SIRT1 has been controversial, indirectly activating SIRT1 through enhancing NAD(+) bioavailability has received increasing attention. NAD(+) levels are reduced in obesity and the aged, but the underlying mechanisms remain unclear. We recently showed that hepatic microRNA-34a (miR-34a), which is elevated in obesity, directly targets and decreases SIRT1 expression. Here, we further show that miR-34a reduces NAD(+) levels and SIRT1 activity by targeting NAMPT, the rate-limiting enzyme for NAD(+) biosynthesis. A functional binding site for miR-34a is present in the 3' UTR of NAMPT mRNA. Hepatic overexpression of miR-34a reduced NAMPT/NAD(+) levels, increased acetylation of the SIRT1 target transcriptional regulators, PGC-1α, SREBP-1c, FXR, and NF-κB, and resulted in obesity-mimetic outcomes. The decreased NAMPT/NAD(+) levels were independent of miR-34a effects on SIRT1 levels as they were also observed in SIRT1 liver-specific knockout mice. Further, the miR-34a-mediated decreases were reversed by treatment with the NAD(+) intermediate, nicotinamide mononucleotide. Conversely, antagonism of miR-34a in diet-induced obese mice restored NAMPT/NAD(+) levels and alleviated steatosis, inflammation, and glucose intolerance. Anti-miR-34a-mediated increases in NAD(+) levels were attenuated when NAMPT was downregulated. Our findings reveal a novel function of miR-34a in reducing both SIRT1 expression and activity in obesity. The miR-34a/NAMPT axis presents a potential target for treating obesity- and aging-related diseases involving SIRT1 dysfunction like steatosis and type 2 diabetes.

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Provenance

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OpenAlex
DOI
10.1111/acel.12135
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2026-09-06 MST

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APA
Choi, S., Fu, T., Seok, S., Kim, D., Yu, E., Lee, K.W., Kang, Y., Li, X., Kemper, B., &amp; Kemper, J.K. (2013). Elevated micro RNA ‐34a in obesity reduces NAD + levels and SIRT 1 activity by directly targeting NAMPT. <em>Aging Cell</em>. https://doi.org/10.1111/acel.12135
Vancouver
Choi S, Fu T, Seok S, Kim D, Yu E, Lee KW, et al. Elevated micro RNA ‐34a in obesity reduces NAD + levels and SIRT 1 activity by directly targeting NAMPT. Aging Cell. 2013. doi:10.1111/acel.12135.
BibTeX
@article{sunge2013Elevat, title = {Elevated micro RNA ‐34a in obesity reduces NAD + levels and SIRT 1 activity by directly targeting NAMPT}, author = {Sung‐E Choi and Ting Fu and Sunmi Seok and Dong‐Hyun Kim and Eunkyung Yu and Kwan Woo Lee and Yup Kang and Xiaoling Li and Byron Kemper and Jongsook Kim Kemper}, journal = {Aging Cell}, year = {2013}, doi = {10.1111/acel.12135}, }

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