Published April 7, 2025 | Version v1
Journal article Open

Huddling alleviates the decrease in glycogen and lipid content in the liver of Brandt's vole caused by mild cold environment

  • 1. School of Life Sciences, Qufu Normal University. 273165 Qufu, Shandong, China. Corresponding author: Zhe Wang (qfwz@qfnu.edu.cn)

Description

Xu, Jin-Hui, Li, Lu-Fan, Zhang, Xiao-Lu, Kong, Xiao-Tong, Wang, Xing-Chen, Jiang, Li-Na, Wang, Zhe (2025): Huddling alleviates the decrease in glycogen and lipid content in the liver of Brandt's vole caused by mild cold environment. Zoologia (e24042) 42: 1-11, DOI: 10.1590/S1984-4689.v42.e24042, URL: https://doi.org/10.1590/s1984-4689.v42.e24042

Files

source.pdf

Files (10.8 MB)

Name Size Download all
md5:f94c4205c310f4add017a56b0d24c02a
10.8 MB Preview Download

Linked records

Additional details

Identifiers

LSID
urn:lsid:zoobank.org:pub:0A326223-A967-40D8-8D4A-8B01032D5114
LSID
urn:lsid:plazi.org:pub:F94C4205C310FFADD017A56B0D24C02A

References

  • Brenner FJ (1965) Metabolism and Survival Time of Grouped Starlings at Various Temperatures. The Wilson Bulletin 77(4): 388-395. https://www.jstor.org/stable/4159423
  • Cai B, Ma M, Zhang J, Kong S, Zhou Z, Li Z, et al. (2022) Long noncoding RNA ZFP36L2-AS functions as a metabolic modulator to regulate muscle development. Cell Death & Disease 13(4): 389. https://doi.org/10.1038/ s41419-022-04772-2
  • Case RM (1973) Bioenergetics of a covey of bobwhites. The Wilson Bulletin 85(1): 52-59.
  • Chen L, Duan Y, Wei H, Ning H, Bi C, Zhao Y, et al. (2019) Acetyl-CoA carboxylase (ACC) as a therapeutic target for metabolic syndrome and recent developments in ACC1/2 inhibitors. Expert Opinion on Investigational Drugs 28(10): 917-930. https://doi.org/10.1080/13543784.2019.1657825
  • Donnier-Marechal M, Vidal S (2016) Glycogen phosphorylase inhibitors: a patent review (2013-2015). Expert Opinion on Therapeutic Patents 26(2): 199-212.
  • Fan J, Watanabe T (1998) Hepatic lipase. Journal of Atherosclerosis and Thrombosis 5(1): 41-45.
  • Ferreira M (2010) Electric countershock and cold stress effects on liver and adrenal gland. Clinics 65(3): 291-296. https://doi.org/10.1590/S1807-59322010000300009
  • Fhu CW, Ali A (2020) Fatty acid synthase: An emerging target in cancer. Molecules 25(17): 3935. https://doi. org/10.3390/molecules25173935
  • GarcIa-Torres E, Hudson R, Castelan F, MartInez-Gomez M, Bautista A (2015) Differential metabolism of brown adipose tissue in newborn rabbits in relation to position in the litter huddle. Journal of Thermal Biology 51: 33-41. https://doi.org/10.1016/j.jtherbio.2015.03.003
  • Gorski J, Gorska M, Hryniewicz A (1988) Effect of cold exposure on the concentration of triglyceride in the liver of the rat. Acta Physiologica Polonica 39(2): 136-142.
  • Henke BR, Sparks SM (2006) Glycogen phosphorylase inhibitors. MiniReviews in Medicinal Chemistry 6(8): 845- 857. https://doi.org/10.2174/138955706777934991
  • Hers HG (1976) The control of glycogen metabolism in the liver. Annual Review of Biochemistry 45: 167-189. https://doi.org/10.1146/annurev.bi.45.070176.001123
  • Horiguchi A, Asano T, Asano T, Ito K, Sumitomo M, Hayakawa M (2008) Fatty acid synthase over expression is an indicator of tumor aggressiveness and poor prognosis in renal cell carcinoma. Journal of Urology 180(3): 1137- 1140. https://doi.org/10.1016/j.juro.2008.04.135
  • Hyvarinen H, Pasanen S, Heikura H, Heinineva R, Laru H (1976) Effects of a cold environment on energy-related enzyme activities in the postnatal rat. Growth 40(1): 41-52.
  • Jakus PB, Sandor A, Janaky T, Farkas V (2008) Cooperation between BAT and WAT of rats in thermogenesis in response to cold, and the mechanism of glycogen accumulation in BAT during reacclimation. Journal of Lipid Research 49(2): 332-339. https://doi.org/10.1194/jlr. m700316-jlr200
  • Kawate R, Talan MI, Engel BT (1994) Sympathetic nervous activity to brown adipose tissue increases in cold-tolerant mice. Physiology & Behavior 55(5): 921-925. https:// doi.org/10.1016/0031-9384(94)90080-9
  • Kim KH (1983) Regulation of acetyl-CoA carboxylase. Current Topics in Cellular Regulation 22: 143-176. https:// doi.org/10.1016/b978-0-12-152822-5.50009-9
  • Li X-S, Wang D-H (2005) Seasonal adjustments in body mass and thermogenesis in Mongolian gerbils (Meriones unguiculatus): the roles of short photoperiod and cold. Journal of Comparative Physiology, Series B: Biochemical, Systemic, and Environmental Physiology 175(8): 593-600. https://doi.org/10.1007/s00360-005-0022-2
  • Lu Q, Zhong W-Q, Wang D-H (2007) Individual variation and repeatability of the aerobic performance in Brandt's voles (Lasiopodomys brandtii). Journal of Thermal Biology 32(7-8): 413-420. https://doi.org/10.1016/j. jtherbio.2007.08.001
  • Mathieu C, Dupret J-M, Lima FR (2017) The structure of brain glycogen phosphorylase -from allosteric regulation mechanisms to clinical perspectives. The FEBS Journal 284(4): 546-554. https://doi.org/10.1111/febs.13937
  • McClune DW, Kostka B, Delahay RJ, Montgomery WI, Marks NJ, Scantlebury DM (2015) Winter is coming: Seasonal variation in resting metabolic rate of the European Badger (Meles meles). Plos One 10(9): e0135920. https://doi.org/10.1371/journal.pone.0135920
  • Meng X, Jayasundara N, Zhang J, Ren X, Gao B, Li J, et al. (2021) Integrated physiological, transcriptome and metabolome analyses of the hepatopancreas of the female swimming crab Portunus trituberculatus under ammonia exposure. Ecotoxicology and Environmental Safety 228: 113026. https://doi.org/10.1016/j.ecoenv.2021.113026
  • Pederson BA (2019) Structure and regulation of glycogen synthase in the brain. Advances in Neurobiology 23: 83- 123. https://doi.org/10.1007/978-3-030-27480-1_3
  • Prokop'eva LP, Ivleva VV (1986) Characteristics of the early recovery period and the level of carbohydrate-lipid metabolic substrates after 24-hour immobilization hypothermia. Byulleten' Eksperimental'noi Biologii i Meditsiny 102(12): 697-699.
  • Putaala A, Hohtola E, Hissa R (1995) The effect of group size on metabolism in huddling grey partridge (Perdix perdix). Comparative Biochemistry and Physiology, Part B: Biochemistry and Molecular Biology 111(2): 243-247. https://doi.org/10.1016/0305-0491(94)00246-Q
  • Roy R, Ordovas L, Zaragoza P, Romero A, Moreno C, Altarriba J, et al. (2006) Association of polymorphisms in the bovine FASN gene with milk-fat content. Animal Genetics 37(3): 215-218. https://doi.org/10.1111/j.1365- 2052.2006.01434.x
  • Sahin E, Gumuslu S (2004) Cold-stress-induced modulation of antioxidant defence: role of stressed conditions in tissue injury followed by protein oxidation and lipid peroxidation. International Journal of Biometeorology 48(4): 165-171. https://doi.org/10.1007/s00484-004-0205-7
  • Sanchez ER, Solis R, Torres-Contreras H, Canals M (2015) Self-organization in the dynamics of huddling behavior in Octodon degus in two contrasting seasons. Behavioral Ecology and Sociobiology 69(5): 787-794. https://doi. org/10.1007/s00265-015-1894-0
  • Santamarina-Fojo S, Gonzalez-Navarro H, Freeman L, Wagner E, Nong Z (2004) Hepatic lipase, lipoprotein metabolism, and atherogenesis. Arteriosclerosis, Thrombosis, and Vascular Biology 24(10): 1750-1754. https://doi. org/10.1161/01.atv.0000140818.00570.2d
  • Sepa-Kishi DM, Katsnelson G, Bikopoulos G, Iqbal A, Ceddia RB (2018) Cold acclimation reduces hepatic protein Kinase B and AMP-activated protein kinase phosphorylation and increases gluconeogenesis in Rats. Physiological Reports 6(5): e13592. https://doi.org/10.14814/ phy2.13592
  • Stocks JM, Taylor NA, Tipton MJ, Greenleaf JE (2004) Human physiological responses to cold exposure. Aviation, Space, and Environmental Medicine 75(5): 444-457.
  • Sukhchuluun G, Zhang XY, Chi QS, Wang DH (2018) Huddling Conserves energy, decreases core body temperature, but increases activity in Brandt's voles (Lasiopodomys brandtii). Frontiers in Physiology 9: 563. https:// doi.org/10.3389/fphys.2018.00563
  • Tang Y, Wang D, Zhang H, Zhang Y, Wang J, Qi R, et al. (2021) Rapid responses of adipocytes to iron overload increase serum TG level by decreasing adiponectin. Journal of Cellular Physiology 236(11): 7544-7553. https://doi.org/10.1002/jcp.30391
  • Tao L, Yi Y, Chen Y, Zhang H, Orning P, Lien E, et al. (2021) RIP1 kinase activity promotes steatohepatitis through mediating cell death and inflammation in macrophages. Cell Death and Differentiation 28(4): 1418-1433. https:// doi.org/10.1038/s41418-020-00668-w
  • Thuren T (2000) Hepatic lipase and HDL metabolism. Current Opinion in Lipidology 11(3): 277-283. https://doi. org/10.1097/00041433-200006000-00008
  • Villarin JJ, Schaeffer PJ, Markle RA, Lindstedt SL (2003) Chronic cold exposure increases liver oxidative capacity in the marsupial Monodelphis domestica. Comparative Biochemistry and Physiology, Part A, Molecular & Integrative Physiology 136(3): 621-630. https://doi. org/10.1016/s1095-6433(03)00210-1
  • Wang Y, Li W, Zhao T, Zou Y, Deng T, Yang Z, et al. (2021) Interleukin-17-Producing CD4(+) T cells promote inflammatory response and Foster Disease progression in hyperlipidemic patients and atherosclerotic mice. Frontiers in Cardiovascular Medicine 8: 667768. https://doi. org/10.3389/fcvm.2021.667768
  • Wang Y, Yu W, Li S, Guo D, He J, Wang Y (2022) Acetyl-CoA Carboxylases and Diseases. Frontiers in Oncology 12: 836058. https://doi.org/10.3389/fonc.2022.836058
  • Wang Z, Xu JH, Mou JJ, Kong XT, Zou JW, Xue HL (2020) Novel ultrastructural findings on cardiac mitochondria of huddling Brandt's voles in mild cold environment. Comparative Biochemistry and Physiology, Part A: Molecular & Integrative Physiology 249: 110766. https://doi. org/10.1016/j.cbpa.2020.110766
  • Watts C, Malthus RS (1980) Liver glycogen synthase in rats with a glycogenstorage disorder. The role of glycogen in the regulation of glycogen synthase. European Journal of Biochemistry 108(1): 73-77. https://doi. org/10.1111/j.1432-1033.1980.tb04697.x
  • Xu JH, Wang Z, Mou JJ, Wang CL, Huang WM, Xue HL, et al. (2021) Up-Regulation of glycogen synthesis and degradation enzyme level maintained myocardial glycogen in huddling Brandt's voles under cool environments. Frontiers in Physiology 12: 593129. https://doi.org/10.3389/ fphys.2021.593129
  • Zhang XY, Sukhchuluun G, Bo TB, Chi QS, Yang JJ, Chen B, et al. (2018) Correction to: Huddling remodels gut microbiota to reduce energy requirements in a small mammal species during cold exposure. Microbiome 6(1): 126. https://doi.org/10.1186/s40168-018-0509-1
  • Zhang Z, Pan T, Sun Y, Liu S, Song Z, Zhang H, et al. (2021) Dietary calcium supplementation promotes the accumulation of intramuscular fat. Journal of Animal Science and Biotechnology 12(1): 94. https://doi.org/10.1186/ s40104-021-00619-6
  • Zhong W, Wang G, Zhou Q, Wang G (2007) Communal food caches and social groups of Brandt's voles in the typical steppes of Inner Mongolia, China. Journal of Arid Environments 68(3): 398-407. https://doi.org/10.1016/j. jaridenv.2006.06.008
  • Zhu L, Feng S, Wu Y, Mu J, Jing T, Xie Y, et al. (2020) Changes to liver structure and energy metabolism during cold storage of transplanted liver in mice. Experimental and Clinical Transplantation 18(1): 71-82. https://doi. org/10.6002/ect.2019.0193
  • Zhu WL, Jia T, Cai JH, Xiao L, Wang ZK (2012) The effect of cold-acclimation on energy strategies of Apodemus draco in Hengduan Mountain region. Journal of Thermal Biology 37(1): 41-46. https://doi.org/10.1016/j.jtherbio.2011.10.008