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Citations to this article

Targeted demethylation at the CDKN1C/p57 locus induces human β cell replication
Kristy Ou, … , Dana Avrahami, Klaus H. Kaestner
Kristy Ou, … , Dana Avrahami, Klaus H. Kaestner
Published October 23, 2018
Citation Information: J Clin Invest. 2019;129(1):209-214. https://doi.org/10.1172/JCI99170.
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Concise Communication Endocrinology Article has an altmetric score of 14

Targeted demethylation at the CDKN1C/p57 locus induces human β cell replication

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Abstract

The loss of insulin-secreting β cells is characteristic among type I and type II diabetes. Stimulating proliferation to expand sources of β cells for transplantation remains a challenge because adult β cells do not proliferate readily. The cell cycle inhibitor p57 has been shown to control cell division in human β cells. Expression of p57 is regulated by the DNA methylation status of the imprinting control region 2 (ICR2), which is commonly hypomethylated in Beckwith-Wiedemann syndrome patients who exhibit massive β cell proliferation. We hypothesized that targeted demethylation of the ICR2 using a transcription activator–like effector protein fused to the catalytic domain of TET1 (ICR2-TET1) would repress p57 expression and promote cell proliferation. We report here that overexpression of ICR2-TET1 in human fibroblasts reduces p57 expression levels and increases proliferation. Furthermore, human islets overexpressing ICR2-TET1 exhibit repression of p57 with concomitant upregulation of Ki-67 while maintaining glucose-sensing functionality. When transplanted into diabetic, immunodeficient mice, the epigenetically edited islets show increased β cell replication compared with control islets. These findings demonstrate that epigenetic editing is a promising tool for inducing β cell proliferation, which may one day alleviate the scarcity of transplantable β cells for the treatment of diabetes.

Authors

Kristy Ou, Ming Yu, Nicholas G. Moss, Yue J. Wang, Amber W. Wang, Son C. Nguyen, Connie Jiang, Eseye Feleke, Vasumathi Kameswaran, Eric F. Joyce, Ali Naji, Benjamin Glaser, Dana Avrahami, Klaus H. Kaestner

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Year: 2025 2024 2023 2022 2021 2020 2019 2018 Total
Citations: 1 5 12 5 9 3 6 1 42
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Citations to this article (42)

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Diane A, Mu-U-Min RB, Al-Siddiqi HH
Cell and Tissue Research 2025
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Diabetologia 2024
Therapeutic Strategies for Angiogenesis Based on Endothelial Cell Epigenetics.
Cai Y, Li L, Shao C, Chen Y, Wang Z
Journal of Cardiovascular Translational Research 2024
Epigenetics in diabetic cardiomyopathy
Ma X, Mei S, Wuyun Q, Zhou L, Sun D, Yan J
Clinical Epigenetics 2024
Atypical KCNQ1/Kv7 channel function in a neonatal diabetes patient: Hypersecretion preceded the failure of pancreatic β-cells
Zhou Z, Gong M, Pande A, Margineanu A, Lisewski U, Purfürst B, Zhu H, Liang L, Jia S, Froehler S, Zeng C, Kühnen P, Khodaverdi S, Krill W, Röpke T, Chen W, Raile K, Sander M, Izsvák Z
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On correlative and causal links of replicative epimutations.
Zhou W, Reizel Y
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World journal of clinical cases 2023
A critical review on therapeutic approaches of CRISPR-Cas9 in diabetes mellitus.
Bora J, Dey A, Lyngdoh AR, Dhasmana A, Ranjan A, Kishore S, Rustagi S, Tuli HS, Chauhan A, Rath P, Malik S
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European Journal of Medical Research 2023
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Nature Communications 2023
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Fan Z, Chen X, Wang L, Yu J, Zhang S, Xu C, Lin J, Lin Y, Peng F
Scientific Reports 2023
Differential CpG methylation at Nnat in the early establishment of beta cell heterogeneity.
Yu V, Yong F, Marta A, Khadayate S, Osakwe A, Bhattacharya S, Varghese SS, Chabosseau P, Tabibi SM, Chen K, Georgiadou E, Parveen N, Suleiman M, Stamoulis Z, Marselli L, De Luca C, Tesi M, Ostinelli G, Delgadillo-Silva L, Wu X, Hatanaka Y, Montoya A, Elliott J, Patel B, Demchenko N, Whilding C, Hajkova P, Shliaha P, Kramer H, Ali Y, Marchetti P, Sladek R, Dhawan S, Withers DJ, Rutter GA, Millership SJ
bioRxiv : the preprint server for biology 2023
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Nature Reviews Endocrinology 2022
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