Autophagy Regulates Pancreatic Beta Cell Death in Response to Pdx1 Deficiency and Nutrient Deprivation

被引:100
|
作者
Fujimoto, Kei [1 ]
Hanson, Piia T. [1 ]
Tran, Hung [1 ]
Ford, Eric L. [1 ]
Han, Zhiqiang [1 ]
Johnson, James D. [1 ]
Schmidt, Robert E. [2 ]
Green, Karen G. [2 ]
Wice, Burton M. [1 ]
Polonsky, Kenneth S. [1 ]
机构
[1] Washington Univ, Sch Med, Div Endocrinol Metab & Lipid Res, Dept Internal Med,Barnes Jewish Hosp, St Louis, MO 63110 USA
[2] Washington Univ, Sch Med, Div Neuropathol, Dept Pathol & Immunol,Barnes Jewish Hosp, St Louis, MO 63110 USA
关键词
HIGH-FAT DIET; MICE; APOPTOSIS; TUMORIGENESIS; BECLIN-1; DISEASE; FUSION; ISLETS; GENE; MASS;
D O I
10.1074/jbc.M109.041616
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
There are three types of cell death; apoptosis, necrosis, and autophagy. The possibility that activation of the macroautophagy (autophagy) pathway may increase beta cell death is addressed in this study. Increased autophagy was present in pancreatic islets from Pdx1(+/-) mice with reduced insulin secretion and beta cell mass. Pdx1 expression was reduced in mouse insulinoma 6 (MIN6) cells by delivering small hairpinRNAsusing a lentiviral vector. The MIN6 cells died after 7 days of Pdx1 deficiency, and autophagy was evident prior to the onset of cell death. Inhibition of autophagy prolonged cell survival and delayed cell death. Nutrient deprivation increased autophagy in MIN6 cells and mouse and human islets after starvation. Autophagy inhibition partly prevented amino acid starvation-induced MIN6 cell death. The in vivo effects of reduced autophagy were studied by crossing Pdx1(+/-) mice to Becn1(+/-) mice. After 1 week on a high fat diet, 4-week-old Pdx1(+/-) Becn1(+/-) mice showed normal glucose tolerance, preserved beta cell function, and increased beta cell mass compared with Pdx1(+/-) mice. This protective effect of reduced autophagy had worn off after 7 weeks on a high fat diet. Increased autophagy contributes to pancreatic beta cell death in Pdx1 deficiency and following nutrient deprivation. The role of autophagy should be considered in studies of pancreatic beta cell death and diabetes and as a target for novel therapeutic intervention.
引用
收藏
页码:27664 / 27673
页数:10
相关论文
共 50 条
  • [21] Repression of latent NF-κB enhancers by PDX1 regulates β cell functional heterogeneity
    Weidemann, Benjamin J.
    Marcheva, Biliana
    Kobayashi, Mikoto
    Omura, Chiaki
    Newman, Marsha, V
    Kobayashi, Yumiko
    Waldeck, Nathan J.
    Perelis, Mark
    Lantier, Louise
    McGuinness, Owen P.
    Ramsey, Kathryn Moynihan
    Stein, Roland W.
    Bass, Joseph
    CELL METABOLISM, 2024, 36 (01) : 90 - 102.e7
  • [22] Pancreatic duodenum homeobox-1 (PDX1) is phosphorylated in living pancreatic beta cells (MIN6) at serine 269
    Semplici, F.
    An, R.
    daSilvaXavier, G.
    Meggio, F.
    Pagano, M.
    Pinna, L. A.
    Rutter, G. A.
    DIABETOLOGIA, 2009, 52 : S172 - S172
  • [23] The nutrient sensor mTORC1 regulates insulin secretion by modulating beta cell autophagy
    Israeli, T.
    Riahi, Y.
    Garzon, P.
    Yeroslaviz-Stolper, R.
    Kadosh, L.
    Tornovsky-Babeay, S.
    Tirosh, B.
    Cerasi, E.
    Bernal-Mizrachi, E.
    Leibowitz, G.
    DIABETOLOGIA, 2021, 64 (SUPPL 1) : 195 - 195
  • [24] O-GlcNAc Regulation of Pancreatic β-cell Identity through Transcription Factor Pdx1
    Wong, Alicia
    Lockridge, Amber
    Alejandro, Emilyn
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2024, 300 (03) : S300 - S301
  • [25] Pancreatic Duodenal Homeobox Protein 1 (Pdx1) Is a Novel β-Cell Specific Autoantigen in Type 1 Diabetes
    Li, Shi-Wu
    Koya, Vijay
    Li, Yi
    Reeves, Westley H.
    Yang, Li-Jun
    DIABETES, 2009, 58 : A18 - A18
  • [26] OGT is essential for postnatal beta cell identity maintenance through transcription factor Pdx1
    Wong, A.
    Alejandro, E.
    DIABETOLOGIA, 2023, 66 (SUPPL 1) : S160 - S160
  • [27] Gymnemic Acid Ameliorates Pancreatic β-Cell Dysfunction by Modulating Pdx1 Expression: A Possible Strategy for β-Cell Regeneration
    Kannan, Pugazhendhi
    Raghunathan, Malathi
    Mohan, Thangarajeswari
    Palanivelu, Shanthi
    Periandavan, Kalaiselvi
    TISSUE ENGINEERING AND REGENERATIVE MEDICINE, 2022, 19 (03) : 603 - 616
  • [28] Glucose metabolism, and glucokinase activation, regulates pancreatic beta cell autophagy
    Williams, A.
    Georgiou, M.
    Lovat, P. E.
    Arden, C.
    DIABETIC MEDICINE, 2021, 38
  • [29] Intracellular ATP Signaling Contributes to FAM3A-Induced PDX1 Upregulation in Pancreatic Beta Cells
    Yan, Han
    Chen, Zhenzhen
    Zhang, Haizeng
    Yang, Weili
    Liu, Xiangyang
    Meng, Yuhong
    Xiang, Rui
    Wu, Zhe
    Ye, Jingjing
    Chi, Yujing
    Yang, Jichun
    EXPERIMENTAL AND CLINICAL ENDOCRINOLOGY & DIABETES, 2022, 130 (08) : 498 - 508
  • [30] Gymnemic Acid Ameliorates Pancreatic β-Cell Dysfunction by Modulating Pdx1 Expression: A Possible Strategy for β-Cell Regeneration
    Pugazhendhi Kannan
    Malathi Raghunathan
    Thangarajeswari Mohan
    Shanthi Palanivelu
    Kalaiselvi Periandavan
    Tissue Engineering and Regenerative Medicine, 2022, 19 : 603 - 616