NRF2 and Diabetes: The Good, the Bad, and the Complex

被引:47
作者
Dodson, Matthew [1 ]
Shakya, Aryatara [1 ]
Anandhan, Annadurai [1 ]
Chen, Jinjing
Garcia, Joe G. N. [2 ]
Zhang, Donna D. [1 ,3 ]
机构
[1] Univ Arizona, Coll Pharm, Dept Pharmacol & Toxicol, Tucson, AZ USA
[2] Univ Arizona, Univ Arizona Hlth Sci, Dept Med, Tucson, AZ USA
[3] Univ Arizona, Arizona Canc Ctr, Tucson, AZ 85721 USA
基金
美国国家卫生研究院;
关键词
TRANSCRIPTION FACTOR NRF2; PANCREATIC BETA-CELLS; ACUTE LUNG INJURY; OXIDATIVE STRESS; COGNITIVE IMPAIRMENT; INSULIN-RESISTANCE; KEAP1-NRF2; SYSTEM; KIDNEY-DISEASE; UP-REGULATION; IN-VITRO;
D O I
10.2337/db22-0623
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Despite decades of scientific effort, diabetes continues to represent an incredibly complex and difficult disease to treat. This is due in large part to themultifactorial nature of disease onset and progression and the multiple organ systems affected. An increasing body of scientific evidence indicates that a key mediator of diabetes progression is NRF2, a critical transcription factor that regulates redox, protein, and metabolic homeostasis. Importantly, while experimental studies have confirmed the critical nature of proper NRF2 function in preventing the onset of diabetic outcomes, we have only just begun to scratch the surface of understanding the mechanisms by which NRF2 modulates diabetes progression, particularly across different causative contexts. One reason for this is the contradictory nature of the current literature, which can often be accredited to model discrepancies, as well as whether NRF2 is activated in an acute or chronic manner. Furthermore, despite therapeutic promise, there are no current NRF2 activators in clinical trials for the treatment of patients with diabetes. In this review, we briefly introduce the transcriptional programs regulated by NRF2 as well as how NRF2 itself is regulated. We also review the current literature regarding NRF2 modulation of diabetic phenotypes across the different diabetes subtypes, including a brief discussion of contradictory results, as well as what is needed to progress the NRF2 diabetes field forward.
引用
收藏
页码:2463 / 2476
页数:14
相关论文
共 140 条
[61]   Oxidative stress sensor Keap1 functions as an adaptor for Cul3-based E3 ligase to regulate for proteasomal degradation of Nrf2 [J].
Kobayashi, A ;
Kang, MI ;
Okawa, H ;
Ohtsuji, M ;
Zenke, Y ;
Chiba, T ;
Igarashi, K ;
Yamamoto, M .
MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (16) :7130-7139
[62]   Environmental/lifestyle factors in the pathogenesis and prevention of type 2 diabetes [J].
Kolb, Hubert ;
Martin, Stephan .
BMC MEDICINE, 2017, 15
[63]   The selective autophagy substrate p62 activates the stress responsive transcription factor Nrf2 through inactivation of Keap1 [J].
Komatsu, Masaaki ;
Kurokawa, Hirofumi ;
Waguri, Satoshi ;
Taguchi, Keiko ;
Kobayashi, Akira ;
Ichimura, Yoshinobu ;
Sou, Yu-Shin ;
Ueno, Izumi ;
Sakamoto, Ayako ;
Tong, Kit I. ;
Kim, Mihee ;
Nishito, Yasumasa ;
Iemura, Shun-ichiro ;
Natsume, Tohru ;
Ueno, Takashi ;
Kominami, Eiki ;
Motohashi, Hozumi ;
Tanaka, Keiji ;
Yamamoto, Masayuki .
NATURE CELL BIOLOGY, 2010, 12 (03) :213-U17
[64]   The β-TrCP-Mediated Pathway Cooperates with the Keap1-Mediated Pathway in Nrf2 Degradation In Vivo [J].
Kuga, Ayumi ;
Tsuchida, Kouhei ;
Panda, Harit ;
Horiuchi, Makoto ;
Otsuki, Akihito ;
Taguchi, Keiko ;
Katsuoka, Fumiki ;
Suzuki, Mikiko ;
Yamamoto, Masayuki .
MOLECULAR AND CELLULAR BIOLOGY, 2022, 42 (07)
[65]   Activation of Nrf2 Is Required for Normal and ChREBPα-Augmented Glucose-Stimulated β-Cell Proliferation [J].
Kumar, Anil ;
Katz, Liora S. ;
Schulz, Anna M. ;
Kim, Misung ;
Honig, Lee B. ;
Li, Lucy ;
Davenport, Bennett ;
Homann, Dirk ;
Garcia-Ocana, Adolfo ;
Herman, Mark A. ;
Haynes, Cole M. ;
Chipuk, Jerry E. ;
Scott, Donald K. .
DIABETES, 2018, 67 (08) :1561-1575
[66]   Antioxidants enhance mammalian proteasome expression through the Keap1-Nrf2 signaling pathway [J].
Kwak, MK ;
Wakabayashi, N ;
Greenlaw, JL ;
Yamamoto, M ;
Kensler, TW .
MOLECULAR AND CELLULAR BIOLOGY, 2003, 23 (23) :8786-8794
[67]   Pro-oxidant challenge in vivo provokes the onset of NIDDM in the insulin resistant obese Zucker rat [J].
Laight, DW ;
Desai, KM ;
Gopaul, NK ;
Änggård, EE ;
Carrier, MJ .
BRITISH JOURNAL OF PHARMACOLOGY, 1999, 128 (02) :269-271
[68]   A Noncanonical Mechanism of Nrf2 Activation by Autophagy Deficiency: Direct Interaction between Keap1 and p62 [J].
Lau, Alexandria ;
Wang, Xiao-Jun ;
Zhao, Fei ;
Villeneuve, Nicole F. ;
Wu, Tongde ;
Jiang, Tao ;
Sun, Zheng ;
White, Eileen ;
Zhang, Donna D. .
MOLECULAR AND CELLULAR BIOLOGY, 2010, 30 (13) :3275-3285
[69]   Involvement of the Nrf2-proteasome pathway in the endoplasmic reticulum stress response in pancreatic β-cells [J].
Lee, Sanghwan ;
Hur, Eu-gene ;
Ryoo, In-geun ;
Jung, Kyeong-Ah ;
Kwak, Jiyeon ;
Kwak, Mi-Kyoung .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 2012, 264 (03) :431-438
[70]   Cloning and characterization of the human glutathione synthetase 5′-flanking region [J].
Lee, TD ;
Yang, HP ;
Whang, J ;
Lu, SC .
BIOCHEMICAL JOURNAL, 2005, 390 :521-528