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Citations to this article

LIM domain–binding 1 maintains the terminally differentiated state of pancreatic β cells
Benjamin N. Ediger, … , Catherine Lee May, Doris A. Stoffers
Benjamin N. Ediger, … , Catherine Lee May, Doris A. Stoffers
Published December 12, 2016
Citation Information: J Clin Invest. 2017;127(1):215-229. https://doi.org/10.1172/JCI88016.
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Research Article Genetics Article has an altmetric score of 4

LIM domain–binding 1 maintains the terminally differentiated state of pancreatic β cells

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Abstract

The recognition of β cell dedifferentiation in type 2 diabetes raises the translational relevance of mechanisms that direct and maintain β cell identity. LIM domain–binding protein 1 (LDB1) nucleates multimeric transcriptional complexes and establishes promoter-enhancer looping, thereby directing fate assignment and maturation of progenitor populations. Many terminally differentiated endocrine cell types, however, remain enriched for LDB1, but its role is unknown. Here, we have demonstrated a requirement for LDB1 in maintaining the terminally differentiated status of pancreatic β cells. Inducible ablation of LDB1 in mature β cells impaired insulin secretion and glucose homeostasis. Transcriptomic analysis of LDB1-depleted β cells revealed the collapse of the terminally differentiated gene program, indicated by a loss of β cell identity genes and induction of the endocrine progenitor factor neurogenin 3 (NEUROG3). Lineage tracing confirmed that LDB1-depleted, insulin-negative β cells express NEUROG3 but do not adopt alternate endocrine cell fates. In primary mouse islets, LDB1 and its LIM homeodomain–binding partner islet 1 (ISL1) were coenriched at chromatin sites occupied by pancreatic and duodenal homeobox 1 (PDX1), NK6 homeobox 1 (NKX6.1), forkhead box A2 (FOXA2), and NK2 homeobox 2 (NKX2.2) — factors that co-occupy active enhancers in 3D chromatin domains in human islets. Indeed, LDB1 was enriched at active enhancers in human islets. Thus, LDB1 maintains the terminally differentiated state of β cells and is a component of active enhancers in both murine and human islets.

Authors

Benjamin N. Ediger, Hee-Woong Lim, Christine Juliana, David N. Groff, LaQueena T. Williams, Giselle Dominguez, Jin-Hua Liu, Brandon L. Taylor, Erik R. Walp, Vasumathi Kameswaran, Juxiang Yang, Chengyang Liu, Chad S. Hunter, Klaus H. Kaestner, Ali Naji, Changhong Li, Maike Sander, Roland Stein, Lori Sussel, Kyoung-Jae Won, Catherine Lee May, Doris A. Stoffers

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 2018 2017 2016 Total
Citations: 2 3 4 7 4 8 5 7 2 42
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Citations to this article (42)

Title and authors Publication Year
Development, regeneration, and physiological expansion of functional β-cells: Cellular sources and regulators
Chernysheva МB, Ruchko ЕS, Karimova МV, Vorotelyak ЕA, Vasiliev АV
Frontiers in Cell and Developmental Biology 2024
Transcriptional coactivator MED15 is required for beta cell maturation.
Kadhim AZ, Vanderkruk B, Mar S, Dan M, Zosel K, Xu EE, Spencer RJ, Sasaki S, Cheng X, Sproul SLJ, Speckmann T, Nian C, Cullen R, Shi R, Luciani DS, Hoffman BG, Taubert S, Lynn FC
Nature communications 2024
Nutrient regulation of the islet epigenome controls adaptive insulin secretion
Matthew Wortham, Fenfen Liu, Austin Harrington, Johanna Y Fleischman, Martina Wallace, Francesca Mulas, Medhavi Mallick, Nicholas K. Vinckier, Benjamin Cross, Joshua Chiou, Nisha Patel, Yinghui Sui, Yesl Jun, Gaowei Wang, Ulupi Jhala, Roland Schüle, Orian Shirihai, Mark Huising, Kyle Gaulton, Christian Metallo, Maike Sander
Journal of Clinical Investigation 2023
Chromatin accessibility differences between alpha, beta, and delta cells identifies common and cell type-specific enhancers
Mawla AM, van der Meulen T, Huising MO
BMC Genomics 2023
The SSBP3 co-regulator is required for glucose homeostasis, pancreatic islet architecture, and beta-cell identity.
Toren E, Kepple JD, Coutinho KV, Poole SO, Deeba IM, Pierre TH, Liu Y, Bethea MM, Hunter CS
Molecular Metabolism 2023
A PDX1 cistrome and single-cell transcriptome resource of the developing pancreas
Yang X, Raum JC, Kim J, Yu R, Yang J, Rice G, Li C, Won KJ, Stanescu DE, Stoffers DA
Development (Cambridge, England) 2022
The Ldb1 transcriptional co-regulator is required for establishment and maintenance of the pancreatic endocrine lineage
Toren E, Liu Y, Bethea M, Wade A, Hunter CS
The FASEB Journal 2022
Enhancer looping protein LDB1 regulates hepatocyte gene expression by cooperating with liver transcription factors.
Liu G, Wang L, Wess J, Dean A
Nucleic Acids Research 2022
Sex Differences in the Molecular Programs of Pancreatic Cells Contribute to the Differential Risks of Type 2 Diabetes
Yong HJ, Toledo MP, Nowakowski RS, Wang YJ
Endocrinology 2022
The Anna Karenina Model of β-Cell Maturation in Development and Their Dedifferentiation in Type 1 and Type 2 Diabetes
SD Nimkulrat, MN Bernstein, Z Ni, J Brown, C Kendziorski, B Blum
Diabetes 2021
Functional maturation of immature β cells: A roadblock for stem cell therapy for type 1 diabetes
ZY Sun, TY Yu, FX Jiang, W Wang
World journal of stem cells 2021
CBP/p300 HAT maintains the gene network critical for β cell identity and functional maturity
L Zhang, C Sheng, F Zhou, K Zhu, S Wang, Q Liu, M Yuan, Z Xu, Y Liu, J Lu, J Liu, L Zhou, X Wang
Cell Death and Disease 2021
Dysregulation of the Pdx1/Ovol2/Zeb2 axis in dedifferentiated β-cells triggers the induction of genes associated with epithelial–mesenchymal transition in diabetes
DS de Jesus, TC Mak, YF Wang, Y von Ohlen, Y Bai, E Kane, P Chabosseau, CM Chahrour, W Distaso, V Salem, A Tomas, M Stoffel, GA Rutter, M Latreille
Molecular Metabolism 2021
LDB1-mediated transcriptional complexes are sensitive to islet stress
Y Liu, JD Kepple, A Shalev, CS Hunter
Islets 2021
Cooperation of LIM domain‐binding 2 (LDB2) with EGR in the pathogenesis of schizophrenia
T Ohnishi, Y Kiyama, F ArimaYoshida, M Kadota, T Ichikawa, K Yamada, A Watanabe, H Ohba, K Tanaka, A Nakaya, Y Horiuchi, Y Iwayama, M Toyoshima, I Ogawa, C ShimamotoMitsuyama, M Maekawa, S Balan, M Arai, M Miyashita, K Toriumi, Y Nozaki, R Kurokawa, K Suzuki, A Yoshikawa, T Toyota, T Hosoya, H Okuno, H Bito, M Itokawa, S Kuraku, T Manabe, T Yoshikawa
EMBO Molecular Medicine 2021
GLIS3: A Critical Transcription Factor in Islet β-Cell Generation
DW Scoville, AM Jetten
Cells 2021
The Contribution of Transcriptional Coregulators in the Maintenance of β-cell Function and Identity
RK Davidson, S Kanojia, JM Spaeth
Endocrinology 2020
Pancreatic β cell regeneration: to β or not to β
MA Guney, DS Lorberbaum, L Sussel
Current Opinion in Physiology 2020
Transcription factor GLIS3: Critical roles in thyroid hormone biosynthesis, hypothyroidism, pancreatic beta cells and diabetes
DW Scoville, HS Kang, AM Jetten
Pharmacology & Therapeutics 2020
LIN28B Impairs the Transition of hESC-Derived β Cells from the Juvenile to Adult State
X Zhou, GG Nair, HA Russ, CD Belair, ML Li, M Shveygert, M Hebrok, R Blelloch
Stem Cell Reports 2020
The supply chain of human pancreatic beta cell lines
Raphaël Scharfmann, Willem Staels, Olivier Albagli-Curiel
Journal of Clinical Investigation 2019
β cell dysfunction during progression of metabolic syndrome to Type 2 Diabetes
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Journal of Clinical Investigation 2019
The Long Noncoding RNA Paupar Modulates PAX6 Regulatory Activities to Promote Alpha Cell Development and Function
RA Singer, L Arnes, Y Cui, J Wang, Y Gao, MA Guney, KE Burnum-Johnson, R Rabadan, C Ansong, G Orr, L Sussel
Cell Metabolism 2019
The islet-expressed Lhx1 transcription factor interacts with Islet-1 and contributes to glucose homeostasis
M Bethea, Y Liu, AK Wade, R Mullen, R Gupta, V Gelfanov, R DiMarchi, S Bhatnagar, R Behringer, KM Habegger, CS Hunter
American journal of physiology. Endocrinology and metabolism 2019
Intestinal lysozyme liberates Nod1 ligands from microbes to direct insulin trafficking in pancreatic beta cells
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Cell Research 2019
LIM-domain transcription complexes interact with ring-finger ubiquitin ligases and thereby impact islet β-cell function
AK Wade, Y Liu, MM Bethea, E Toren, HM Tse, CS Hunter
The Journal of biological chemistry 2019
Collaborative ISL1/GATA3 interaction in controlling neuroblastoma oncogenic pathways overlapping with but distinct from MYCN
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The Peroxisome Proliferator-Activated Receptor α (PPARα) Agonist Pemafibrate Protects against Diet-Induced Obesity in Mice
M Araki, Y Nakagawa, A Oishi, S Han, Y Wang, K Kumagai, H Ohno, Y Mizunoe, H Iwasaki, M Sekiya, T Matsuzaka, H Shimano
International journal of molecular sciences 2018
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M Diedisheim, M Oshima, O Albagli, CW Huldt, I Ahlstedt, M Clausen, S Menon, A Aivazidis, AC Andreasson, WG Haynes, P Marchetti, L Marselli, M Armanet, F Chimienti, R Scharfmann
Molecular Metabolism 2018
The Polycomb-Dependent Epigenome Controls β Cell Dysfunction, Dedifferentiation, and Diabetes
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Cell Metabolism 2018
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Diabetologia 2018
Epigenetics of metabolic syndrome
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Physiological genomics 2018
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Diabetologia 2017
Systematic single-cell analysis provides new insights into heterogeneity and plasticity of the pancreas
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Molecular Metabolism 2017
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Frontiers in Genetics 2017
β-Cells are not uniform after all-Novel insights into molecular heterogeneity of insulin-secreting cells: AVRAHAMI et al
D Avrahami, YJ Wang, A Klochendler, Y Dor, B Glaser, KH Kaestner
Diabetes Obesity and Metabolism 2017
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Chewing the Fat: A Metabolic Role for Ldb1 Beyond the Pancreas?
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