2021, Number 6
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Rev Fac Med UNAM 2021; 64 (6)
Autophagy in pancreatic beta cells and its role in type 2 diabetes mellitus
Velázquez-Paniagua M, González-Sánchez I, Díaz-Tamariz A, García-Peláez MI, Ángeles-Aguilar LL, Ayala-Orta SX, de Jesús-Javier A, Coronel-Cruz C
Language: Spanish
References: 56
Page: 9-25
PDF size: 492.48 Kb.
ABSTRACT
Autophagy is a crucial mechanism for the functioning and
survival of pancreatic beta cells. Its dysregulation has been
associated with obesity, insulin resistance, and glucose intolerance.
Furthermore, decreased autophagy in insulin-secreting
beta cells has been reported to contribute to the development
of type 2 diabetes mellitus (T2DM), which constitutes
about 95% of all diabetes cases and is a chronic metabolic
disease that it currently affects millions of people around the
world. In different models of rodents, whether diabetic or
obese, it has been observed that treatment with autophagy
enhancers lowers glucose levels, increases insulin sensitivity,
and protects beta cells from apoptosis. As stated above, it has
recently been proposed to carry out an early intervention in
patients with T2DM, using drugs that promote autophagy,
which could help preserve the mass of beta cells and prevent
the progression of the disease. This review provides an overview
of the importance of the physiological process of autophagy
and its imminent role in the development of T2DM.
REFERENCES
Rabanal-Ruiz Y, Otten EG, Korolchuk VI. mTORC1 as the main gateway to autophagy. Essays Biochem. 2017; 61(6):565-84.
Franco-Juarez B, Mejia-Martinez F, Moreno-Arriola E, Hernandez- Vazquez A, Gomez-Manzo S, Marcial-Quino J, et al. A high glucose diet induces autophagy in a HLH-30/ TFEB-dependent manner and impairs the normal lifespan of C. elegans. Aging (Albany NY). 2018;10(10):2657-67.
Singh R, Cuervo AM. Autophagy in the cellular energetic balance. Cell Metab 2011;13(5):495-504.
Doria A, Gatto M, Punzi L. Autophagy in human health and disease. N Engl J Med. 2013;368(19):1845.
Poillet-Perez L, White E. Role of tumor and host autophagy in cancer metabolism. Genes Dev. 2019;33(11-12):610-9.
Sun M, Tan Y, Rexiati M, Dong M, Guo W. Obesity is a common soil for premature cardiac aging and heart diseases - Role of autophagy. Biochim Biophys Acta Mol Basis Dis. 2019;1865(7):1898-904.
Watada H, Fujitani Y. Minireview: Autophagy in pancreatic beta-cells and its implication in diabetes. Mol Endocrinol. 2015;29(3):338-48.
Lee YH, Kim J, Park K, Lee MS. beta-cell autophagy: Mechanism and role in beta-cell dysfunction. Mol Metab. 2019;27S:S92-S103.
Dossou AS, Basu A. The Emerging Roles of mTORC1 in Macromanaging Autophagy. Cancers (Basel). 2019;11(10).
Mir SU, George NM, Zahoor L, Harms R, Guinn Z, Sarvetnick NE. Inhibition of autophagic turnover in beta-cells by fatty acids and glucose leads to apoptotic cell death. J Biol Chem. 2015;290(10):6071-85.
Bartolome A, Kimura-Koyanagi M, Asahara S, Guillen C, Inoue H, Teruyama K, et al. Pancreatic beta-cell failure mediated by mTORC1 hyperactivity and autophagic impairment. Diabetes. 2014;63(9):2996-3008.
Galluzzi L, Baehrecke EH, Ballabio A, Boya P, Bravo-San Pedro JM, Cecconi F, et al. Molecular definitions of autophagy and related processes. EMBO J. 2017;36(13):1811-36.
Settembre C, Di Malta C, Polito VA, Garcia Arencibia M, Vetrini F, Erdin S, et al. TFEB links autophagy to lysosomal biogenesis. Science. 2011;332(6036):1429-33.
Fujimoto K, Hanson PT, Tran H, Ford EL, Han Z, Johnson JD, et al. Autophagy regulates pancreatic beta cell death in response to Pdx1 deficiency and nutrient deprivation. J Biol Chem. 2009;284(40):27664-73.
Jung HS, Chung KW, Won Kim J, Kim J, Komatsu M, Tanaka K, et al. Loss of autophagy diminishes pancreatic beta cell mass and function with resultant hyperglycemia. Cell Metab. 2008;8(4):318-24.
Goldman SJ, Taylor R, Zhang Y, Jin S. Autophagy and the degradation of mitochondria. Mitochondrion. 2010;10(4): 309-15.
Rogov VV, Suzuki H, Marinkovic M, Lang V, Kato R, Kawasaki M, et al. Phosphorylation of the mitochondrial autophagy receptor Nix enhances its interaction with LC3 proteins. Sci Rep. 2017;7(1):1131.
Rojas J, Bermudez V, Palmar J, Martinez MS, Olivar LC, Nava M, et al. Pancreatic Beta Cell Death: Novel Potential Mechanisms in Diabetes Therapy. J Diabetes Res. 2018;2018:9601801.
Schulze RJ, Sathyanarayan A, Mashek DG. Breaking fat: The regulation and mechanisms of lipophagy. Biochim Biophys Acta Mol Cell Biol Lipids. 2017;1862(10 Pt B):1178-87.
Goginashvili A, Zhang Z, Erbs E, Spiegelhalter C, Kessler P, Mihlan M, et al. Insulin granules. Insulin secretory granules control autophagy in pancreatic beta cells. Science. 2015;347(6224):878-82.
Schnell AH, Swenne I, Borg LA. Lysosomes and pancreatic islet function. A quantitative estimation of crinophagy in the mouse pancreatic B-cell. Cell Tissue Res. 1988;252(1):9-15.
Heberle AM, Prentzell MT, van Eunen K, Bakker BM, Grellscheid SN, Thedieck K. Molecular mechanisms of mTOR regulation by stress. Mol Cell Oncol. 2015;2(2): e970489.
Quan W, Lim YM, Lee MS. Role of autophagy in diabetes and endoplasmic reticulum stress of pancreatic beta-cells. Exp Mol Med. 2012;44(2):81-8.
Jung M, Lee J, Seo HY, Lim JS, Kim EK. Cathepsin inhibition- induced lysosomal dysfunction enhances pancreatic beta-cell apoptosis in high glucose. PLoS One. 2015;10(1):e0116972.
Ji J, Petropavlovskaia M, Khatchadourian A, Patapas J, Makhlin J, Rosenberg L, et al. Type 2 diabetes is associated with suppression of autophagy and lipid accumulation in beta-cells. J Cell Mol Med. 2019;23(4):2890-900.
Robertson RP. Chronic oxidative stress as a central mechanism for glucose toxicity in pancreatic islet beta cells in diabetes. J Biol Chem. 2004;279(41):42351-4.
Costes S, Vandewalle B, Tourrel-Cuzin C, Broca C, Linck N, Bertrand G, et al. Degradation of cAMP-responsive element- binding protein by the ubiquitin-proteasome pathway contributes to glucotoxicity in beta-cells and human pancreatic islets. Diabetes. 2009;58(5):1105-15.
Hwang IH, Park J, Kim JM, Kim SI, Choi JS, Lee KB, et al. Tetraspanin-2 promotes glucotoxic apoptosis by regulating the JNK/beta-catenin signaling pathway in human pancreatic beta cells. FASEB J. 2016;30(9):3107-16.
Sauvat A, Chen G, Muller K, Tong M, Aprahamian F, Durand S, et al. Trans-Fats Inhibit Autophagy Induced by Saturated Fatty Acids. EBioMedicine. 2018;30:261-72.
Lytrivi M, Castell AL, Poitout V, Cnop M. Recent Insights Into Mechanisms of beta-Cell Lipo- and Glucolipotoxicity in Type 2 Diabetes. J Mol Biol. 2020;432(5):1514-34.
Chu KY, O’Reilly L, Mellet N, Meikle PJ, Bartley C, Biden TJ. Oleate disrupts cAMP signaling, contributing to potent stimulation of pancreatic beta-cell autophagy. J Biol Chem. 2019;294(4):1218-29.
Choi SE, Lee SM, Lee YJ, Li LJ, Lee SJ, Lee JH, et al. Protective role of autophagy in palmitate-induced INS-1 beta-cell death. Endocrinology. 2009;150(1):126-34.
Maedler K, Spinas GA, Dyntar D, Moritz W, Kaiser N, Donath MY. Distinct effects of saturated and monounsaturated fatty acids on beta-cell turnover and function. Diabetes. 2001;50(1):69-76.
Dhayal S, Zummo FP, Anderson MW, Thomas P, Welters HJ, Arden C, et al. Differential effects of saturated and unsaturated fatty acids on autophagy in pancreatic beta-cells. J Mol Endocrinol. 2019;63(4):285-96.
Ebato C, Uchida T, Arakawa M, Komatsu M, Ueno T, Komiya K, et al. Autophagy is important in islet homeostasis and compensatory increase of beta cell mass in response to high-fat diet. Cell Metab. 2008;8(4):325-32.
Soto-Estrada G, Moreno Altamirano L, Garcia-Garcia JJ, Ochoa Moreno I, Silberman M. Trends in frequency of type 2 diabetes in Mexico and its relationship to dietary patterns and contextual factors. Gac Sanit. 2018;32(3): 283-90.
Garcia-Chapa EG, Leal-Ugarte E, Peralta-Leal V, Duran- Gonzalez J, Meza-Espinoza JP. Genetic Epidemiology of Type 2 Diabetes in Mexican Mestizos. Biomed Res Int. 2017;2017:3937893.
Rochette L, Zeller M, Cottin Y, Vergely C. Diabetes, oxidative stress and therapeutic strategies. Biochim Biophys Acta. 2014;1840(9):2709-29.
Mukherjee A, Morales-Scheihing D, Butler PC, Soto C. Type 2 diabetes as a protein misfolding disease. Trends Mol Med. 2015;21(7):439-49.
Terakawa MS, Lin Y, Kinoshita M, Kanemura S, Itoh D, Sugiki T, et al. Impact of membrane curvature on amyloid aggregation. Biochim Biophys Acta Biomembr. 2018; 1860(9):1741-64.
Masini M, Bugliani M, Lupi R, del Guerra S, Boggi U, Filipponi F, et al. Autophagy in human type 2 diabetes pancreatic beta cells. Diabetologia. 2009;52(6):1083-6.
Gonzalez CD, Lee MS, Marchetti P, Pietropaolo M, Towns R, Vaccaro MI, et al. The emerging role of autophagy in the pathophysiology of diabetes mellitus. Autophagy. 2011;7(1):2-11.
Quan W, Jung HS, Lee MS. Role of autophagy in the progression from obesity to diabetes and in the control of energy balance. Arch Pharm Res. 2013;36(2):223-9.
Riahi Y, Wikstrom JD, Bachar-Wikstrom E, Polin N, Zucker H, Lee MS, et al. Autophagy is a major regulator of beta cell insulin homeostasis. Diabetologia. 2016;59(7): 1480-91.
Marasco MR, Linnemann AK. beta-Cell Autophagy in Diabetes Pathogenesis. Endocrinology. 2018;159(5):2127-41.
Ly LD, Ly DD, Nguyen NT, Kim JH, Yoo H, Chung J, et al. Mitochondrial Ca(2+) Uptake Relieves Palmitate-Induced Cytosolic Ca(2+) Overload in MIN6 Cells. Mol Cells. 2020;43(1):66-75.
Jiang Y, Huang W, Wang J, Xu Z, He J, Lin X, et al. Metformin plays a dual role in MIN6 pancreatic beta cell function through AMPK-dependent autophagy. Int J Biol Sci. 2014;10(3):268-77.
Zhou J, Kang X, Luo Y, Yuan Y, Wu Y, Wang M, et al. Glibenclamide-Induced Autophagy Inhibits Its Insulin Secretion-Improving Function in beta Cells. Int J Endocrinol. 2019;2019:1265175.
Wu J, Wu JJ, Yang LJ, Wei LX, Zou DJ. Rosiglitazone protects against palmitate-induced pancreatic beta-cell death by activation of autophagy via 5’-AMP-activated protein kinase modulation. Endocrine. 2013;44(1):87-98.
Zummo FP, Cullen KS, Honkanen-Scott M, Shaw JAM, Lovat PE, Arden C. Glucagon-Like Peptide 1 Protects Pancreatic beta-Cells From Death by Increasing Autophagic Flux and Restoring Lysosomal Function. Diabetes. 2017;66(5):1272-85.
Lim H, Lim YM, Kim KH, Jeon YE, Park K, Kim J, et al. A novel autophagy enhancer as a therapeutic agent against metabolic syndrome and diabetes. Nat Commun. 2018;9(1):1438.
Tuohetaerbaike B, Zhang Y, Tian Y, Zhang NN, Kang J, Mao X, et al. Pancreas protective effects of Urolithin A on type 2 diabetic mice induced by high fat and streptozotocin via regulating autophagy and AKT/mTOR signaling pathway. J Ethnopharmacol. 2020;250:112479.
Sheng Q, Xiao X, Prasadan K, Chen C, Ming Y, Fusco J, et al. Autophagy protects pancreatic beta cell mass and function in the setting of a high-fat and high-glucose diet. Sci Rep. 2017;7(1):16348.
Chen YY, Sun LQ, Wang BA, Zou XM, Mu YM, Lu JM. Palmitate induces autophagy in pancreatic beta-cells via endoplasmic reticulum stress and its downstream JNK pathway. Int J Mol Med. 2013;32(6):1401-6.
Liu H, Javaheri A, Godar RJ, Murphy J, Ma X, Rohatgi N, et al. Intermittent fasting preserves beta-cell mass in obesity-induced diabetes via the autophagy-lysosome pathway. Autophagy. 2017;13(11):1952-68.
Las G, Serada SB, Wikstrom JD, Twig G, Shirihai OS. Fatty acids suppress autophagic turnover in beta-cells. J Biol Chem. 2011;286(49):42534-44.