Compromised β-cell identity is emerging as an important contributor to β-cell failure in diabetes; however, the precise mechanism independent of hyperglycemia is under investigation. We have previously reported that mTORC1/Raptor regulates functional maturation in β-cells. In the present study, we find that diabetic β-cell specific Raptor-deficient mice (βRapKO(GFP)) show reduced β-cell mass, loss of β-cell identity and acquisition of α-cell features; which are not reversible upon glucose normalization. Deletion of Raptor directly impairs β-cell identity, mitochondrial metabolic coupling and protein synthetic activity, leading to β-cell failure. Moreover, loss of Raptor activates α-cell transcription factor MafB (via modulating C/EBPβ isoform ratio) and several α-cell enriched genes i.e. Etv1 and Tspan12, thus initiates β- to α-cell reprograming. The present findings highlight mTORC1 as a metabolic rheostat for stabilizing β-cell identity and repressing α-cell program at normoglycemic level, which might present therapeutic opportunities for treatment of diabetes.
Raptor determines β-cell identity and plasticity independent of hyperglycemia in mice.
Raptor 决定小鼠 β 细胞的特性和可塑性,且与高血糖无关
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作者:Yin Qinglei, Ni Qicheng, Wang Yichen, Zhang Hongli, Li Wenyi, Nie Aifang, Wang Shu, Gu Yanyun, Wang Qidi, Ning Guang
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2020 | 起止号: | 2020 May 21; 11(1):2538 |
| doi: | 10.1038/s41467-020-15935-0 | 研究方向: | 细胞生物学 |
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