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Reduced Retinoic Acid Receptor Beta (Rarβ) Affects Pancreatic β-Cell Physiology
Anila Khalique1, Abdul Khader Mohammed1, Nujood Mohammed Al-Khadran2
1Sharjah Institute for Medical Research, University of Sharjah, Sharjah 27272, United Arab Emirates.
Abstract:
Various studies have suggested a link between vitamin A (VA), all-trans-retinol, and type 2 diabetes (T2D). However, the functional role/expression of vitamin A receptors (Rarα, β, and γ) in pancreatic β-cells is not clear yet. Accordingly, we performed a series of bioinformatics, molecular and functional experiments in human islet and INS-1 cells to evaluate the role of Rarβ on insulin secretion and pancreatic β-cell function. Microarray and RNA-sequencing (RAN-seq) expression analysis showed that RARα, β, and γ are expressed in human pancreatic islets. RNA-seq expression of RARβ in diabetic/hyperglycemic human islets (HbA1c ≥ 6.3%) revealed a significant reduction (p = 0.004) compared to nondiabetic/normoglycemic cells (HbA1c < 6%). The expression of RARβ with INS and PDX1 showed inverse association, while positive correlations were observed with INSR and HbA1c levels. Exploration of the T2D knowledge portal (T2DKP) revealed that several genetic variants in RARβ are associated with BMI. The most associated variant is rs6804842 (p = 1.2 × 10−25). Silencing of Rarβ in INS-1 cells impaired insulin secretion without affecting cell viability or apoptosis. Interestingly, reactive oxygen species (ROS) production levels were elevated and glucose uptake was reduced in Rarβ-silenced cells. mRNA expression of Ins1, Pdx1, NeuroD1, Mafa, Snap25, Vamp2, and Gck were significantly (p < 0.05) downregulated in Rarβ-silenced cells. For protein levels, Pro/Insulin, PDX1, GLUT2, GCK, pAKT/AKT, and INSR expression were downregulated considerably (p < 0.05). The expression of NEUROD and VAMP2 were not affected. In conclusion, our results indicate that Rarβ is an important molecule for β-cell function. Hence, our data further support the potential role of VA receptors in the development of T2D.
Insights
Vitamin A receptor beta (Rarβ) is reduced in type 2 diabetes (T2D) pancreatic cells. Silencing Rarβ impairs insulin secretion and beta-cell function, highlighting its role in T2D development.
Area of Science:
- Endocrinology and Metabolism
- Molecular Biology
- Diabetes Research
Background:
- Studies suggest a link between vitamin A (VA) and type 2 diabetes (T2D).
- The role of vitamin A receptors (RARα, β, γ) in pancreatic beta-cells remains unclear.
- Investigating RARβ's function is crucial for understanding T2D pathogenesis.
Purpose of the Study:
- To evaluate the role of RARβ in insulin secretion and pancreatic beta-cell function.
- To assess RARβ expression in human islets and its association with T2D markers.
- To explore the impact of RARβ silencing on beta-cell molecular pathways.
Main Methods:
- Bioinformatics analysis, microarray, and RNA-sequencing (RNA-seq) on human islets and INS-1 cells.
- Assessment of RARβ expression in relation to HbA1c levels and T2D knowledge portal data.
- Functional studies involving RARβ silencing in INS-1 cells, measuring insulin secretion, viability, apoptosis, ROS, and glucose uptake.
Main Results:
- RARα, β, and γ are expressed in human pancreatic islets; RARβ is significantly reduced in diabetic islets.
- RARβ expression inversely correlates with INS and PDX1, and positively with INSR and HbA1c.
- RARβ silencing impairs insulin secretion, increases ROS, reduces glucose uptake, and downregulates key beta-cell genes (e.g., Ins1, Pdx1, Gck) and proteins (e.g., PDX1, GLUT2).
Conclusions:
- RARβ is essential for maintaining pancreatic beta-cell function and insulin secretion.
- Reduced RARβ expression is associated with type 2 diabetes.
- Vitamin A receptors, particularly RARβ, play a significant role in T2D development.
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