miR-483 deficiency promotes loss of pancreatic beta-cell identity and aberrant glucagon production under metabolic stress
Document Type
Article
Publication Date
9-26-2026
Abstract
Pancreatic β-cell dedifferentiation is a pathological mechanism that contributes to β-cell dysfunction and loss during type 2 diabetes (T2D), but the underlying mechanisms remain incompletely understood. MicroRNAs (miRNAs) are key post-transcriptional regulators of cellular identity and function. We previously identified miR-483 as a β-cell-enriched miRNA that promotes β-cell function by targeting Aldh1a3. Here, we investigated its role under high-fat diet (HFD)/multiple low-dose streptozotocin (STZ)-induced metabolic stress. β-cell-specific miR-483 deficiency exacerbated hyperglycemia and impaired glucose tolerance, accompanied by increased ALDH1A3 expression and reduced insulin expression in GFP-labeled cells. Under HFD/STZ-induced metabolic stress, miR-483 deficiency also increased glucagon production and the abundance of GFP+GCG+ and ALDH1A3+GCG+ cells, consistent with loss of β-cell identity and emergence of α-cell-like characteristics. Single-cell RNA sequencing revealed increased β-cells heterogeneity, including a subpopulation with glucagon expression and an altered endocrine phenotype. In addition, miR-483 deficiency was associated with mitochondrial fragmentation, impaired respiratory function, and increased oxidative stress. Together, these findings suggest that miR-483-ALDH1A3 axis contributes to the coordination of β-cell identity with mitochondrial and metabolic homeostasis during metabolic stress.
Publication Title
Endocrinology
Recommended Citation
Matson, K.,
MacLeod, A.,
Sempek, E.,
Noble, J.,
Tapert, B.,
Alipour, F.,
Tang, X.,
Marceau, A.,
Satin, L. S.,
&
Tang, X.
(2026).
miR-483 deficiency promotes loss of pancreatic beta-cell identity and aberrant glucagon production under metabolic stress.
Endocrinology.
http://doi.org/10.1210/endocr/bqag110
Retrieved from: https://digitalcommons.mtu.edu/michigantech-p2/3042