Acknowledgement
This work was supported by the National Research Foundation of Korea (NRF) funded by the Korea government (MSIT) (No. 2022R1G1A1003601 to S.B.Y. and RS-2023-00210489, RS-2023-00301850 to Y.M.Y.). This research was supported by Korean Fund for Regenerative Medicine (KFRM) funded by Ministry of Science and ICT, and Ministry of Health & Welfare (RS-2022-00070363 to Y.M.Y.). This research was supported by Korea Basic Science Institute (National Research Facilities and Equipment Center) grant funded by the Ministry of Education (No. 2022R1A6C101A739).
References
- Abbott, M. J., Edelman, A. M. and Turcotte, L. P. (2009) CaMKK is an upstream signal of AMP-activated protein kinase in regulation of substrate metabolism in contracting skeletal muscle. Am. J. Physiol. Regul. Integr. Comp. Physiol. 297, R1724-R1732.
- Armstrong, M. J., Gaunt, P., Aithal, G. P., Barton, D., Hull, D., Parker, R., Hazlehurst, J. M., Guo, K.; LEAN trial team; Abouda, G., Aldersley, M. A., Stocken, D., Gough, S. C., Tomlinson, J. W., Brown, R. M., Hubscher, S. G. and Newsome, P. N. (2016) Liraglutide safety and efficacy in patients with non-alcoholic steatohepatitis (LEAN): a multicentre, double-blind, randomised, placebo-controlled phase 2 study. Lancet 387, 679-690.
- Bai, Y., Zhao, Y. H., Xu, J. Y., Yu, X. Z., Hu, Y. X. and Zhao, Z. Q. (2017) Atractylodin induces myosin light chain phosphorylation and promotes gastric emptying through ghrelin receptor. Evid. Based Complement. Alternat. Med. 2017, 2186798.
- Bae, E. J., Yang, Y. M., Kim, J. W. and Kim, S. G. (2007) Identification of a novel class of dithiolethiones that prevent hepatic insulin resistance via the adenosine monophosphate-activated protein kinase-p70 ribosomal S6 kinase-1 pathway. Hepatology 46, 730-739.
- Boudaba, N., Marion, A., Huet, C., Pierre, R., Viollet, B. and Foretz, M. (2018) AMPK re-activation suppresses hepatic steatosis but its downregulation does not promote fatty liver development. EBioMedicine 28, 194-209.
- Cokorinos, E. C., Delmore, J., Reyes, A. R., Albuquerque, B., Kjobsted, R., Jorgensen, N. O., Tran, J. L., Jatkar, A., Cialdea, K., Esquejo, R. M., Meissen, J., Calabrese, M. F., Cordes, J., Moccia, R., Tess, D., Salatto, C. T., Coskran, T. M., Opsahl, A. C., Flynn, D., Blatnik, M., Li, W., Kindt, E., Foretz, M., Viollet, B., Ward, J., Kurumbail, R. G., Kalgutkar, A. S., Wojtaszewski, J. F. P., Cameron, K. O. and Miller, R. A. (2017) Activation of skeletal muscle AMPK promotes glucose disposal and glucose lowering in non-human primates and mice. Cell Metab. 25, 1147-1159.e10.
- Cool, B., Zinker, B., Chiou, W., Kifle, L., Cao, N., Perham, M., Dickinson, R., Adler, A., Gagne, G., Iyengar, R., Zhao, G., Marsh, K., Kym, P., Jung, P., Camp, H. S. and Frevert, E. (2006) Identification and characterization of a small molecule AMPK activator that treats key components of type 2 diabetes and the metabolic syndrome. Cell Metab. 3, 403-416.
- Feige, J. N., Lagouge, M., Canto, C., Strehle, A., Houten, S. M., Milne, J. C., Lambert, P. D., Mataki, C., Elliott, P. J. and Auwerx, J. (2008) Specific SIRT1 activation mimics low energy levels and protects against diet-induced metabolic disorders by enhancing fat oxidation. Cell Metab. 8, 347-358.
- Finck, B. N., Gropler, M. C., Chen, Z. J., Leone, T. C., Croce, M. A., Harris, T. E., Lawrence, J. C. and Kelly, D. P. (2006) Lipin 1 is an inducible amplifier of the hepatic PGC-1α/PPARα regulatory pathway. Cell Metab. 4, 199-210.
- Fujitsuka, N., Asakawa, A., Morinaga, A., Amitani, M. S., Amitani, H., Katsuura, G., Sawada, Y., Sudo, Y., Uezono, Y., Mochiki, E., Sakata, I., Sakai, T., Hanazaki, K., Yada, T., Yakabi, K., Sakuma, E., Ueki, T., Niijima, A., Nakagawa, K., Okubo, N., Takeda, H., Asaka, M. and Inui, A. (2016) Increased ghrelin signaling prolongs survival in mouse models of human aging through activation of sirtuin1. Mol. Psychiatry 21, 1613-1623.
- Galic, S., Loh, K., Murray-Segal, L., Steinberg, G. R., Andrews, Z. B. and Kemp, B. E. (2018) AMPK signaling to acetyl-CoA carboxylase is required for fasting- and cold-induced appetite but not thermogenesis. Elife 7, e32656.
- Hardie, D. G. (2011) Energy sensing by the AMP-activated protein kinase and its effects on muscle metabolism. Proc. Nutr. Soc. 70, 92-99.
- Harrison, S. A., Bedossa, P., Guy, C. D., Schattenberg, J. M., Loomba, R., Taub, R., Labriola, D., Moussa, S. E., Neff, G. W., Rinella, M. E., Anstee, Q. M., Abdelmalek, M. F., Younossi, Z., Baum, S. J., Francque, S., Charlton, M. R., Newsome, P. N., Lanthier, N., Schiefke, I., Mangia, A., Pericas, J. M., Patil, R., Sanyal, A. J., Noureddin, M., Bansal, M. B., Alkhouri, N., Castera, L., Rudraraju, M. and Ratziu, V.; MAESTRO-NASH Investigators (2024) A phase 3, randomized, controlled trial of resmetirom in NASH with liver fibrosis. N. Engl. J. Med. 390, 497-509.
- He, K., Li, J., Xi, W., Ge, J., Sun, J. and Jing, Z. (2022) Dapagliflozin for nonalcoholic fatty liver disease: a systematic review and meta-analysis. Diabetes Res. Clin. Pract. 185, 109791.
- He, X., Li, Y., Deng, X., Xiao, X. and Zeng, J. (2023) Integrative evidence construction for resveratrol treatment of nonalcoholic fatty liver disease: preclinical and clinical meta-analyses. Front. Pharmacol. 14, 1230783.
- Hong, D. G., Song, G. Y., Eom, C. B., Ahn, J. H., Kim, S. M., Shim, A., Han, Y. H., Roh, Y. S., Han, C. Y., Bae, E. J., Ko, H. J. and Yang, Y. M. (2022) Loss of ERdj5 exacerbates oxidative stress in mice with alcoholic liver disease via suppressing Nrf2. Free Radic. Biol. Med. 184, 42-52.
- Hossen, M. J., Amin, A., Fu, X. Q., Chou, J. Y., Wu, J. Y., Wang, X. Q., Chen, Y. J., Wu, Y., Li, J., Yin, C. L., Liang, C., Chou, G. X. and Yu, Z. L. (2021) The anti-inflammatory effects of an ethanolic extract of the rhizome of Atractylodes lancea, involves Akt/NF-kappaB signaling pathway inhibition. J. Ethnopharmacol. 277, 114183.
- Hutchison, A. L., Tavaglione, F., Romeo, S. and Charlton, M. (2023) Endocrine aspects of metabolic dysfunction associated steatotic liver disease (MASLD): beyond insulin resistance. J. Hepatol. 79, 1524-1541.
- Hwahng, S. H., Ki, S. H., Bae, E. J., Kim, H. E. and Kim, S. G. (2009) Role of adenosine monophosphate-activated protein kinase-p70 ribosomal S6 kinase-1 pathway in repression of liver X receptor-alpha-dependent lipogenic gene induction and hepatic steatosis by a novel class of dithiolethiones. Hepatology 49, 1913-1925.
- Hwang, S. and Yang, Y. M. (2021) Exosomal microRNAs as diagnostic and therapeutic biomarkers in non-malignant liver diseases. Arch. Pharm. Res. 44, 574-587.
- Inoue, E. and Yamauchi, J. (2006) AMP-activated protein kinase regulates PEPCK gene expression by direct phosphorylation of a novel zinc finger transcription factor. Biochem. Biophys. Res. Commun. 351, 793-799.
- Ishii, T., Okuyama, T., Noguchi, N., Nishidono, Y., Okumura, T., Kaibori, M., Tanaka, K., Terabayashi, S., Ikeya, Y. and Nishizawa, M. (2020) Antiinflammatory constituents of Atractylodes chinensis rhizome improve glomerular lesions in immunoglobulin A nephropathy model mice. J. Nat. Med. 74, 51-64.
- Jiao, P., Tseng-Crank, J., Corneliusen, B., Yimam, M., Hodges, M., Hong, M., Maurseth, C., Oh, M., Kim, H., Chu, M. and Jia, Q. (2014) Lipase inhibition and antiobesity effect of Atractylodes lancea. Planta Med. 80, 577-582.
- Jun, X., Fu, P., Lei, Y. and Cheng, P. (2018) Pharmacological effects of medicinal components of Atractylodes lancea (Thunb.) DC. Chin. Med. 13, 59.
- Kim, S. M., Song, G. Y., Shim, A., Lee, J. H., Eom, C. B., Liu, C., Yang, Y. M. and Seki, E. (2022) Hyaluronan synthase 2, a target of miR-200c, promotes carbon tetrachloride-induced acute and chronic liver inflammation via regulation of CCL3 and CCL4. Exp. Mol. Med. 54, 739-752.
- Kimura, Y. and Sumiyoshi, M. (2012) Effects of an Atractylodes lancea rhizome extract and a volatile component beta-eudesmol on gastrointestinal motility in mice. J. Ethnopharmacol. 141, 530-536.
- Kulma, I., Panrit, L., Plengsuriyakarn, T., Chaijaroenkul, W., Warathumpitak, S. and Na-Bangchang, K. (2021) A randomized placebo-controlled phase I clinical trial to evaluate the immunomodulatory activities of Atractylodes lancea (Thunb) DC. in healthy Thai subjects. BMC Complement Med. Ther. 21, 61.
- Lee, H. S., Heo, C. U., Song, Y. H., Lee, K. and Choi, C. I. (2023) Naringin promotes fat browning mediated by UCP1 activation via the AMPK signaling pathway in 3T3-L1 adipocytes. Arch. Pharm. Res. 46, 192-205.
- Li, Y., Xu, S., Mihaylova, M. M., Zheng, B., Hou, X., Jiang, B., Park, O., Luo, Z., Lefai, E., Shyy, J. Y., Gao, B., Wierzbicki, M., Verbeuren, T. J., Shaw, R. J., Cohen, R. A. and Zang, M. (2011) AMPK phosphorylates and inhibits SREBP activity to attenuate hepatic steatosis and atherosclerosis in diet-induced insulin-resistant mice. Cell Metab. 13, 376-388.
- Loomba, R., Abdelmalek, M. F., Armstrong, M. J., Jara, M., Kjaer, M. S., Krarup, N., Lawitz, E., Ratziu, V., Sanyal, A. J., Schattenberg, J. M. and Newsome, P. N.; NN9931-4492 investigators (2023) Semaglutide 2.4 mg once weekly in patients with non-alcoholic steatohepatitis-related cirrhosis: a randomised, placebo-controlled phase 2 trial. Lancet Gastroenterol. Hepatol. 8, 511-522.
- Lyu, Z., Ji, X., Chen, G. and An, B. (2019) Atractylodin ameliorates lipopolysaccharide and d-galactosamine-induced acute liver failure via the suppression of inflammation and oxidative stress. Int. Immunopharmacol. 72, 348-357.
- Nakai, Y., Kido, T., Hashimoto, K., Kase, Y., Sakakibara, I., Higuchi, M. and Sasaki, H. (2002) Effect of the rhizomes of Atractylodes lancea and its constituents on the delay of gastric emptying. J. Ethnopharmacol. 84, 51-55.
- Park, Y. J., Seo, M. G., Cominguez, D. C., Han, I. and An, H. J. (2021) Atractylodes chinensis water extract ameliorates obesity via promotion of the SIRT1/AMPK expression in high-fat diet-induced obese mice. Nutrients 13, 2992.
- Pollard, A. E., Martins, L., Muckett, P. J., Khadayate, S., Bornot, A., Clausen, M., Admyre, T., Bjursell, M., Fiadeiro, R., Wilson, L., Whilding, C., Kotiadis, V. N., Duchen, M. R., Sutton, D., Penfold, L., Sardini, A., Bohlooly, Y. M., Smith, D. M., Read, J. A., Snowden, M. A., Woods, A. and Carling, D. (2019) AMPK activation protects against diet induced obesity through Ucp1-independent thermogenesis in subcutaneous white adipose tissue. Nat. Metab. 1, 340-349.
- Price, N. L., Gomes, A. P., Ling, A. J. Y., Duarte, F. V., Martin-Montalvo, A., North, B. J., Agarwal, B., Ye, L., Ramadori, G., Teodoro, J. S., Hubbard, B. P., Varela, A. T., Davis, J. G., Varamini, B., Hafner, A., Moaddel, R., Rolo, A. P., Coppari, R., Palmeira, C. M., de Cabo, R., Baur, J. A. and Sinclair, D. A. (2012) SIRT1 is required for AMPK activation and the beneficial effects of resveratrol on mitochondrial function. Cell Metab. 15, 675-690.
- Sato, S., Jung, H. M., Nakagawa, T., Pawlosky, R., Takeshima, T., Lee, W. R., Sakiyama, H., Laxman, S., Wynn, R. M., Tu, B. P., MacMillan, J. B., De Brabander, J. K., Veech, R. L. and Uyeda, K. (2016) Metabolite regulation of nuclear localization of carbohydrate-response element-binding protein (ChREBP): role of AMP as an allosteric inhibitor. J. Biol. Chem. 291, 10515-10527.
- Shaw, R. J., Kosmatka, M., Bardeesy, N., Hurley, R. L., Witters, L. A., DePinho, R. A. and Cantley, L. C. (2004) The tumor suppressor LKB1 kinase directly activates AMP-activated kinase and regulates apoptosis in response to energy stress. Proc. Natl. Acad. Sci. U. S. A. 101, 3329-3335.
- Shaw, R. J., Lamia, K. A., Vasquez, D., Koo, S. H., Bardeesy, N., Depinho, R. A., Montminy, M. and Cantley, L. C. (2005) The kinase LKB1 mediates glucose homeostasis in liver and therapeutic effects of metformin. Science 310, 1642-1646.
- Shin, Y. S., Hwang, D. B., Won, D. H., Kim, S. Y., Kim, C., Park, J. W., Jeon, Y. and Yun, J. W. (2023) The Wnt/beta-catenin signaling pathway plays a role in drug-induced liver injury by regulating cytochrome P450 2E1 expression. Toxicol. Res. 39, 443-453.
- Tang, X., Shi, Y., Du, J., Hu, K., Zhou, T., Chen, L., Zhang, Y., Li, F., Zhang, H., Liebe, R., Meyer, C., Dooley, S., Zhu, Z., Weng, H. L., Jia, J. and Huang, T. (2022) Clinical outcome of non-alcoholic fatty liver disease: an 11-year follow-up study. BMJ Open 12, e054891.
- Woods, A., Williams, J. R., Muckett, P. J., Mayer, F. V., Liljevald, M., Bohlooly, Y. M. and Carling, D. (2017) Liver-specific activation of AMPK prevents steatosis on a high-fructose diet. Cell Rep. 18, 3043-3051.
- Xie, M., Zhang, D., Dyck, J. R., Li, Y., Zhang, H., Morishima, M., Mann, D. L., Taffet, G. E., Baldini, A., Khoury, D. S. and Schneider, M. D. (2006) A pivotal role for endogenous TGF-beta-activated kinase-1 in the LKB1/AMP-activated protein kinase energy-sensor pathway. Proc. Natl. Acad. Sci. U. S. A. 103, 17378-17383.
- Yang, J., Wang, Z. X., Fang, L., Li, T. S., Liu, Z. H., Pan, Y. and Kong, L. D. (2023) Atractylodes lancea and Magnolia officinalis combination protects against high fructose-impaired insulin signaling in glomerular podocytes through upregulating Sirt1 to inhibit p53-driven miR-221. J. Ethnopharmacol. 300, 115688.
- Yang, Y. M., Noureddin, M., Liu, C., Ohashi, K., Kim, S. Y., Ramnath, D., Powell, E. E., Sweet, M. J., Roh, Y. S., Hsin, I. F., Deng, N., Liu, Z., Liang, J., Mena, E., Shouhed, D., Schwabe, R. F., Jiang, D., Lu, S. C., Noble, P. W. and Seki, E. (2019) Hyaluronan synthase 2-mediated hyaluronan production mediates Notch1 activation and liver fibrosis. Sci. Transl. Med. 11, eaat9284.
- Yang, Y. M., Wang, Z. J., Matsuda, M. and Seki, E. (2021) Inhibition of hyaluronan synthesis by 4-methylumbelliferone ameliorates nonalcoholic steatohepatitis in choline-deficient l-amino acid-defined diet-induced murine model. Arch. Pharm. Res. 44, 230-240.
- Ye, Q., Jiang, Y., Wu, D., Cai, J., Jiang, Z., Zhou, Z., Liu, L., Ling, Q., Wang, Q. and Zhao, G. (2023) Atractylodin alleviates nonalcoholic fatty liver disease by regulating Nrf2-mediated ferroptosis. Heliyon 9, e18321.
- Younossi, Z. M., Ratziu, V., Loomba, R., Rinella, M., Anstee, Q. M., Goodman, Z., Bedossa, P., Geier, A., Beckebaum, S., Newsome, P. N., Sheridan, D., Sheikh, M. Y., Trotter, J., Knapple, W., Lawitz, E., Abdelmalek, M. F., Kowdley, K. V., Montano-Loza, A. J., Boursier, J., Mathurin, P., Bugianesi, E., Mazzella, G., Olveira, A., Cortez-Pinto, H., Graupera, I., Orr, D., Gluud, L. L., Dufour, J. F., Shapiro, D., Campagna, J., Zaru, L., MacConell, L., Shringarpure, R., Harrison, S. and Sanyal, A. J.; REGENERATE Study Investigators (2019) Obeticholic acid for the treatment of non-alcoholic steatohepatitis: interim analysis from a multicentre, randomised, placebo-controlled phase 3 trial. Lancet 394, 2184-2196.
- Yu, L., Gong, L., Wang, C., Hu, N., Tang, Y., Zheng, L., Dai, X. and Li, Y. (2020) Radix Polygoni Multiflori and its main component emodin attenuate non-alcoholic fatty liver disease in zebrafish by regulation of AMPK signaling pathway. Drug Des. Devel. Ther. 14, 1493-1506.
- Zhang, W. J., Zhao, Z. Y., Chang, L. K., Cao, Y., Wang, S., Kang, C. Z., Wang, H. Y., Zhou, L., Huang, L. Q. and Guo, L. P. (2021) Atractylodis Rhizoma: a review of its traditional uses, phytochemistry, pharmacology, toxicology and quality control. J. Ethnopharmacol. 266, 113415.
- Zhu, Y., Zhao, S., Deng, Y., Gordillo, R., Ghaben, A. L., Shao, M., Zhang, F., Xu, P., Li, Y., Cao, H., Zagnitko, O., Scott, D. A., Gupta, R. K., Xing, C., Zhang, B. B., Lin, H. V. and Scherer, P. E.(2017) Hepatic GALE regulates whole-body glucose homeostasis by modulating Tff3 expression. Diabetes 66, 2789-2799.