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Citations to this article

Hypothalamic ER–associated degradation regulates POMC maturation, feeding, and age-associated obesity
Geun Hyang Kim, … , Martin G. Myers Jr., Ling Qi
Geun Hyang Kim, … , Martin G. Myers Jr., Ling Qi
Published February 19, 2018
Citation Information: J Clin Invest. 2018;128(3):1125-1140. https://doi.org/10.1172/JCI96420.
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Research Article Cell biology Metabolism Article has an altmetric score of 69

Hypothalamic ER–associated degradation regulates POMC maturation, feeding, and age-associated obesity

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Abstract

Pro-opiomelanocortin (POMC) neurons function as key regulators of metabolism and physiology by releasing prohormone-derived neuropeptides with distinct biological activities. However, our understanding of early events in prohormone maturation in the ER remains incomplete. Highlighting the significance of this gap in knowledge, a single POMC cysteine-to-phenylalanine mutation at position 28 (POMC-C28F) is defective for ER processing and causes early onset obesity in a dominant-negative manner in humans through an unclear mechanism. Here, we report a pathologically important role of Sel1L-Hrd1, the protein complex of ER-associated degradation (ERAD), within POMC neurons. Mice with POMC neuron–specific Sel1L deficiency developed age-associated obesity due, at least in part, to the ER retention of POMC that led to hyperphagia. The Sel1L-Hrd1 complex targets a fraction of nascent POMC molecules for ubiquitination and proteasomal degradation, preventing accumulation of misfolded and aggregated POMC, thereby ensuring that another fraction of POMC can undergo normal posttranslational processing and trafficking for secretion. Moreover, we found that the disease-associated POMC-C28F mutant evades ERAD and becomes aggregated due to the presence of a highly reactive unpaired cysteine thiol at position 50. Thus, this study not only identifies ERAD as an important mechanism regulating POMC maturation within the ER, but also provides insights into the pathogenesis of monogenic obesity associated with defective prohormone folding.

Authors

Geun Hyang Kim, Guojun Shi, Diane R.M. Somlo, Leena Haataja, Soobin Song, Qiaoming Long, Eduardo A. Nillni, Malcolm J. Low, Peter Arvan, Martin G. Myers Jr., Ling Qi

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 Total
Citations: 1 13 10 4 8 5 4 4 49
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Citations to this article (49)

Title and authors Publication Year
SEL1L-HRD1 ER-Associated Degradation Facilitates Prohormone Convertase 2 Maturation and Glucagon Production in Islet α Cells
Zhu W, Pan L, Cui X, Russo AC, Ray R, Pederson B, Wei X, Lin LL, Hafner H, Gregg B, Shrestha N, Liu C, Naji A, Arvan P, Sandoval DA, Lindberg I, Qi L, Reinert RB
bioRxiv 2025
Hypomorphic variants of SEL1L-HRD1 ER-associated degradation cause neurodevelopmental disorders
Huilun Wang, Liangguang Lin, Zexin Li, Xiaoqiong Wei, Omar Askander, Gerarda Cappuccio, Mais Hashem, Laurence Hubert, Arnold Munnich, Mashael Alqahtani, Qi Pang, Margit Burmeister, You Lu, Karine Poirier, Claude Besmond, Shengyi Sun, Nicola Brunetti-Pierri, Fowzan Alkuraya, Ling Qi
Journal of Clinical Investigation 2024
A biallelic loss-of-function SEL1L variant causes neurodevelopmental disorders, agammaglobulinemia and premature death
Denisa Weis, Liangguang Lin, Huilun Wang, Zexin Li, Katarina Kusikova, Peter Ciznar, Hermann Wolf, Alexander Leiss-Piller, Zhihong Wang, Xiaoqiong Wei, Serge Weis, Katarina Skalicka, Gabriela Hrckova, Lubos Danisovic, Andrea Soltysova, Tingxuan Yang, René Feichtinger, Johannes Mayr, Ling Qi
Journal of Clinical Investigation 2024
SEL1L-HRD1 ERAD prevents aberrant hepatic inclusions and controls the biogenesis of fibrinogen protein complex
Zhenfeng Song, Pattaraporn Thepsuwan, Woosuk S Hur, Mauricio Torres, Shuangcheng Wu, Xiaoqiong Wei, Nusrat J Tushi, Juncheng Wei, Francesca Ferraresso, Adrienne Paton, James Paton, Ze Zheng, Kezhong Zhang, Deyu Fang, Christian Kastrup, Sunil Jaiman, Matthew Flick, Shengyi Sun
Nature communications 2024
Proteomic screens of SEL1L-HRD1 ER-associated degradation substrates reveal its role in glycosylphosphatidylinositol-anchored protein biogenesis
Wei X, Lu Y, Lin LL, Zhang C, Chen X, Wang S, Wu SA, Li ZJ, Quan Y, Sun S, Qi L
Nature Communications 2024
SEL1L-HRD1 ER-associated degradation regulates leptin receptor maturation and signaling in POMC neurons in diet-induced obesity
Mao H, Kim GH, Qi L
Research square 2024
SEL1L-HRD1 interaction is required to form a functional HRD1 ERAD complex
Lin LL, Wang HH, Pederson B, Wei X, Torres M, Lu Y, Li ZJ, Liu X, Mao H, Wang H, Zhou LE, Zhao Z, Sun S, Qi L
Nature Communications 2024
Intermittent Hypobaric Hypoxia Ameliorates Autistic-Like Phenotypes in Mice
Pan YD, Zhang Y, Zheng WY, Zhu MZ, Li HY, Ouyang WJ, Wen QQ, Zhu XH
Journal of Neuroscience 2024
Marchf6: A guardian against cytosol-spilled POMC-induced ferroptosis
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Molecules and Cells 2024
Endoplasmic reticulum associated degradation preserves neurons viability by maintaining endoplasmic reticulum homeostasis
Wu S, Liu P, Cvetanovic M, Lin W
Frontiers in neuroscience 2024
RTN3L and CALCOCO1 function in parallel to maintain proteostasis in the endoplasmic reticulum
Kumar K, Chidambaram R, Parashar S, Ferro-Novick S
Autophagy 2024
Regulation of leptin signaling and diet-induced obesity by SEL1L-HRD1 ER-associated degradation in POMC expressing neurons
Mao H, Kim GH, Pan L, Qi L
Nature Communications 2024
Purkinje cell-specific deficiency in SEL1L-hrd1 endoplasmic reticulum-associated degradation causes progressive cerebellar ataxia in mice.
Torres M, Pederson B, Wang H, Lin LL, Wang HH, Bugarin-Lapuz A, Zhao Z, Qi L
JCI insight 2024
Upregulation of Xbp1 in NPY/AgRP neurons reverses diet-induced obesity and ameliorates leptin and insulin resistance.
Ajwani J, Hwang E, Portillo B, Lieu L, Wallace B, Kabahizi A, He Z, Dong Y, Grose K, Williams KW
Neuropeptides 2024
Hepatic SEL1L-HRD1 ER-associated degradation regulates systemic iron homeostasis via ceruloplasmin
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Proceedings of the National Academy of Sciences 2023
Myocyte-specific SEL1L-HRD1 ER-associated degradation is indispensable for postnatal muscle growth and systemic energy metabolism
Benedict Abdon, Yusheng Liang, Mauricio Torres, Neha Shrestha, Rachel Reinert, You Lu, Debora da Luz Scheffer, Brent Pederson, Sander Kersten, Ling Qi
JCI Insight 2023
SEL1L-HRD1 endoplasmic reticulum-associated degradation controls STING-mediated innate immunity by limiting the size of the activable STING pool.
Ji Y, Luo Y, Wu Y, Sun Y, Zhao L, Xue Z, Sun M, Wei X, He Z, Wu SA, Lin LL, Lu Y, Chang L, Chen F, Chen S, Qian W, Xu X, Chen S, Pan D, Zhou Z, Xia S, Hu CA, Liang T, Qi L
Nature Cell Biology 2023
Protein quality control and aggregation in the endoplasmic reticulum: From basic to bedside
Chen G, Wei T, Ju F, Li H
Frontiers in Cell and Developmental Biology 2023
Casein kinase 1α is required to maintain murine hypothalamic pro-opiomelanocortin expression
Lu C, Zhang J, Wang B, Gao Q, Ma K, Pei S, Li J, Cui S
iScience 2023
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Wu SA, Shen C, Wei X, Zhang X, Wang S, Chen X, Torres M, Lu Y, Lin LL, Wang HH, Hunter AH, Fang D, Sun S, Ivanova MI, Lin Y, Qi L
Nature Communications 2023
Unraveling the roles of endoplasmic reticulum-associated degradation in metabolic disorders
Luo H, Jiao Q, Shen C, Shao C, Xie J, Chen Y, Feng X, Zhang X
Frontiers in Endocrinology 2023
SEL1L preserves CD8(+) T-cell survival and homeostasis by fine-tuning PERK signaling and the IL-15 receptor-mediated mTORC1 axis.
Gao Y, Li W, Wang Z, Zhang C, He Y, Liu X, Tang K, Zhang W, Long Q, Liu Y, Zhang J, Zhang B, Zhang L
Cellular & molecular immunology 2023
HRD1 reduction promotes cholesterol-induced vascular smooth muscle cell phenotypic change via endoplasmic reticulum stress.
Wang L, Ren Z, Wu L, Zhang X, Wang M, Niu H, He X, Wang H, Chen Y, Shi G, Qian X, Wang L, Ren Z, Wu L, Zhang X, Wang M, Niu H, He X, Wang H, Chen Y, Shi G, Qian X
Molecular and Cellular Biochemistry 2023
ER-Phagy: Quality and Quantity Control of the Endoplasmic Reticulum by Autophagy
Chino H, Mizushima N
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Proteasomal degradation of WT proinsulin in pancreatic beta cells
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The Journal of biological chemistry 2022
SEL1L-HRD1 ER-associated degradation suppresses hepatocyte hyperproliferation and liver cancer
Bhattacharya A, Wei J, Song W, Gao B, Tian C, Wu SA, Wang J, Chen L, Fang D, Qi L
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Scientific Reports 2022
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