Harry Perkins Institute of Medical Research, Centre for Medical Research, University of Western Australia, Nedlands, WA, Australia.
School of Medicine And Pharmacology, University of Western Australia, Carwley, WA, Australia.
Endocr Pathol. 2018 Sep;29(3):207-221. doi: 10.1007/s12022-018-9523-x.
Type 2 diabetes (T2D) is a global health issue and dedifferentiation plays underlying causes in the pathophysiology of T2D; however, there is a lack of understanding in the mechanism. Dedifferentiation results from the loss of function of pancreatic β-cells alongside a reduction in essential transcription factors under various physiological stressors. Our study aimed to establish db/db as an animal model for dedifferentiation by using RNA sequencing to compare the gene expression profile in islets isolated from wild-type, db/+ and db/db mice, and qPCR was performed to validate those significant genes. A reduction in both insulin secretion and the expression of Ins1, Ins2, Glut2, Pdx1 and MafA was indicative of dedifferentiation in db/db islets. A comparison of the db/+ and the wild-type islets indicated a reduction in insulin secretion perhaps related to the decreased Mt1. A significant reduction in both Rn45s and Mir6236 was identified in db/+ compared to wild-type islets, which may be indicative of pre-diabetic state. A further significant reduction in RasGRF1, Igf1R and Htt was also identified in dedifferentiated db/db islets. Molecular characterisation of the db/db islets was performed via Ingenuity analysis which identified highly significant genes that may represent new molecular markers of dedifferentiation.
2 型糖尿病(T2D)是一个全球性的健康问题,去分化在 T2D 的病理生理学中起着根本原因;然而,对于其机制仍缺乏了解。去分化是由于各种生理应激下,胰腺β细胞功能丧失以及重要转录因子减少所致。我们的研究旨在通过 RNA 测序建立 db/db 作为去分化的动物模型,比较从野生型、db/+和 db/db 小鼠分离的胰岛中的基因表达谱,并通过 qPCR 验证那些显著的基因。db/db 胰岛中胰岛素分泌和 Ins1、Ins2、Glut2、Pdx1 和 MafA 的表达减少表明发生了去分化。db/+和野生型胰岛的比较表明,胰岛素分泌减少可能与 Mt1 的减少有关。与野生型胰岛相比,db/+胰岛中 Rn45s 和 Mir6236 的表达显著减少,这可能表明处于糖尿病前期状态。在去分化的 db/db 胰岛中,还发现 RasGRF1、Igf1R 和 Htt 的表达显著减少。通过 Ingenuity 分析对 db/db 胰岛进行分子特征分析,鉴定出可能代表去分化新的分子标志物的高度显著基因。