박사

시상하부 에너지대사 조절에 있어서 Angptl3의 역할

김현경 2015년
논문상세정보
' 시상하부 에너지대사 조절에 있어서 Angptl3의 역할' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • angptl3
  • energy metabolism
  • hypothalamus
  • lipid metabolism
  • lipoprotein lipase
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
178 0

0.0%

' 시상하부 에너지대사 조절에 있어서 Angptl3의 역할' 의 참고문헌

  • Zimmet P, Alberti KG, Shaw J : Global and societal implications of the diabetes epidemic. Nature. 2001;13;414(6865):782-7.
  • Yunchao Li and ChunboTeng :Angiopoietin-like proteins 3, 4 and 8: regulating lipid metabolism andproviding new hope for metabolic syndrome, J Drug Target, 2014; 22(8): 679?687
  • Yue JT, Lam TK: Lipid sensing and insulin resistance in the brain. Cell Metab 2012;15:646-655
  • Xian X, Liu T, Yu J, Wang Y, Miao Y, Zhang J, Yu Y, Ross C, Karasinska JM, Hayden MR, Liu G, Chui D: Presynaptic defects underlying impaired learning and memory function in lipoprotein lipase-deficient mice. J Neurosci 2009;29:4681-4685
  • Wolfgang MJ, Kurama T, Dai Y, Suwa A, Asaumi M, Matsumoto S, Cha SH, Shimokawa T, Lane MD: The brain-specificcarnitinepalmitoyltransferase- 1cregulatesenergyhomeostasis, ProcNatlAcadSci U S A. 2006;103(19):7282-7.
  • Wang H, Eckel RH. What are lipoproteins doing in the brain? Trends Endocrinol Metab 2014;25:8?14 (Wang H, 2011a)
  • Wang H, Astarita G, Taussig MD, Bharadwaj KG, DiPatrizio NV, Nave KA, Piomelli D, Goldberg IJ, EckelRH: Deficiency of lipoprotein lipase in neurons modifies the regulation of energy balance and leads to obesity. Cell Metab 2011;13:105-113 (Wang H, 2011b)
  • Wang H, Astarita G, Taussig MD, Bharadwaj KG, DiPatrizio NV, Nave KA, Piomelli D, Goldberg IJ, EckelRH: Deficiency of lipoprotein lipase in neurons modifies the regulation of energy balance and leads to obesity. Cell Metab 2011;13:105-113
  • Spence JD1, Ban MR, Hegele RA : Lipoproteinlipase (LPL) genevariation and progression of carotidarteryplaque,Stroke. 2003;34(5):1176-80.
  • Sousa-Ferreira L, de Almeida LP, CavadasC: Role of hypothalamicneurogenesis in feedingregulation, Trends EndocrinolMetab. 2014 ;25(2):80-8
  • Shimamura M, Matsuda M, Yasumo H, Okazaki M, Fujimoto K, Kono K, Shimizugawa T, Ando Y, Koishi R, Kohama T, Sakai N, Kotani K, Komuro R, Ishida T, Hirata K, Yamashita S, Furukawa H, Shimomura I:Angiopoietin-like protein3 regulates plasma HDL cholesterol through suppression of endothelial lipase. ArteriosclerThrombVascBiol 2007;27:366-372
  • Schwartz MW, Woods SC, Porte D, Seeley RJ, Baskin DG: Central nervous system control of food intake. Nature 2000;404:661-671
  • Schwartz MW, Porte D: Diabetes, obesity, and the brain. Science 2005;307:375-379
  • Pisciotta L, Favari E, Magnolo L, Simonelli S, Adorni MP, Sallo R, Fancello T, Zavaroni I, Ardigo D, Bernini F, Calabresi L, Franceschini G, Tarugi P, Calandra S, Bertolini S: Characterization of three kindreds with familial combined hypolipidemia caused by loss-of-function mutations of ANGPTL3. CircCardiovasc Genet 2012;5:42-50
  • Oike Y, Akao M, Kubota Y, SudaT :Angiopoietin-likeproteins: potentialnewtargets for metabolic syndrome therapy, Trends Mol Med. 2005 Oct;11(10):473-9
  • Obici S1, Feng Z, Morgan K, Stein D, Karkanias G, Rossetti L : Central administration of oleic acid inhibits glucose production and food intake, Diabetes.2002 ;51(2):271-5.
  • Obici S1, Feng Z, Arduini A, Conti R, Rossetti L : Inhibition of hypothalamic carnitine palmitoyltransferase-1decreases food intake and glucose production, Nat Med. 2003 ;9(6):756-61
  • Nakajima K, Kobayashi J, Mabuchi H, Nakano T, Tokita Y, Nagamine T, Imamura S, Ai M, Otokozawa S, Schaefer EF: Association of angiopoietin-like protein 3 with hepatic triglyceride lipase and lipoprotein lipase activities in human plasma. Ann ClinBiochem 2010;47:423-431
  • Musunuru K, Pirruccello JP, Do R, Peloso GM, Guiducci C, Sougnez C, Garimella KV, Fisher S, Abreu J, Barry AJ, Fennell T, Banks E, Ambrogio L, Cibulskis K, Kernytsky A, Gonzalez E, Rudzicz N, Engert JC, DePristo MA, Daly MJ, Cohen JC, Hobbs HH, Altshuler D, Schonfeld G, Gabriel SB, Yue P, KathiresanS:Exome sequencing, ANGPTL3 mutations, and familial combined hypolipidemia. N Engl J Med 2010;363:2220-2227
  • Morton GJ, Cummings DE, Baskin DG, Barsh GS, Schwartz MW. Central nervous system control of food intake and body weight. Nature 2006;443:289?295
  • Minicocci I, Montali A, Robciuc MR, Quagliarini F, Censi V, Labbadia G, Gabiati C, Pigna G, Sepe ML, Pannozzo F, Lutjohann D, Fazio S, Jauhiainen M, Ehnholm C, Arca M: Mutations in the ANGPTL3 gene and familial combined hypolipidemia: a clinical and biochemical characterization. J ClinEndocrinolMetab 2012;97:E1266- 1275
  • McGarry JD, Mannaerts GP, Foster DW: A possible role for malonyl-CoA in the regulation of hepatic fatty acid oxidation and ketogenesis. J Clin Invest 1977;60:265- 270
  • Marc Schneeberger, Ramon Gomis, Marc Claret: Hypothalamic and brainstem neuronal circuits controlling homeostatic energy balance, Journal of Endocrinology 2014: 220, 25?46
  • Lutz EP, Merkel M, Kako Y, Melford K, Radner H, Breslow JL, Bensadoun A, Goldberg IJ: Heparin-binding defective lipoprotein lipase is unstable and causes abnormalities in lipid delivery to tissues. J Clin Invest 2001;107:1183-1192
  • Lutz EP, Kako Y, Yagyu H, Heeren J, Marks S, Wright T, Melford K, Ben-Zeev O, Radner H, Merkel M, Bensadoun A, Wong H, Goldberg IJ: Mice expressing only covalent dimeric heparin binding-deficient lipoprotein lipase: muscles inefficiently secrete dimeric enzyme. J BiolChem 2004;279:238-244
  • Lam TK, Pocai A, Gutierrez-Juarez R, Obici S, Bryan J, Aguilar-Bryan L, Schwartz GJ, Rossetti L: Hypothalamic sensing of circulating fatty acids is required for glucose homeostasis. Nat Med 2005;11:320-327
  • L pez M1, Lelliott CJ, Vidal-Puig A : Hypothalamicfatty acidmetabolism: a housekeeping pathway that regulates food intake, Bioessays.2007 ;29(3):248-61.
  • Koster A, Chao YB, Mosior M, Ford A, Gonzalez-DeWhitt PA, Hale JE, Li D, Qiu Y, Fraser CC, Yang DD, Heuer JG, Jaskunas SR, Eacho P: Transgenic angiopoietinlike (angptl)4 overexpression and targeted disruption of angptl4 and angptl3: regulation of triglyceride metabolism. Endocrinology 2005;146:4943-4950
  • Koishi R, Ando Y, Ono M, Shimamura M, Yasumo H, Fujiwara T, Horikoshi H, Furukawa H: Angptl3 regulates lipid metabolism in mice. Nat Genet 2002;30:151- 157
  • Koishi R, Ando Y, Ono M, Shimamura M, Yasumo H, Fujiwara T, Horikoshi H, Furukawa H: Angptl3 regulates lipid metabolism in mice. Nat Genet 2002;30:151-
  • Kim HK, Youn BS, Shin MS, Namkoong C, Park KH, Baik JH, Kim JB, Park JY, Lee KU, Kim YB, Kim MS : Hypothalamic Angptl4/Fiaf is a novel regulator of food intake and body weight, Diabetes. 2010 Nov;59(11):2772-80.
  • Kalra SP, Dube MG, Pu S, Xu B, Horvath TL, Kalra PS: Interacting appetiteregulating pathways in the hypothalamic regulation of body weight. Endocr Rev 1999;20:68-100
  • Kadomatsu T1, Tabata M, Oike Y. : Angiopoietin-likeproteins: emergingtargets for treatmentof obesity and related metabolic diseases, FEBS J. 2011 ;278(4):559-64
  • Hong Wang, Giuseppe Astarita, Matthew D. Taussig, Kalyani G. Bharadwaj,Nicholas V. DiPatrizio, Klaus-Armin Nave, Daniele Piomelli, Ira J. Goldberg, Robert H. Eckel: Deficiency of Lipoprotein Lipase in Neurons Modifies the Regulation of Energy Balance and Leads to Obesity. Cell Metab. 2011; 13(1): 105?113.
  • Haynes CA, Allegood JC, Sims K, Wang EW, Sullards MC, Merrill AH: Quantitation of fatty acyl-coenzyme As in mammalian cells by liquid chromatographyelectrospray ionization tandem mass spectrometry. J Lipid Res 2008;49:1113-1125
  • Goldberg IJ, Soprano DR, Wyatt ML, Vanni TM, Kirchgessner TG, Schotz MC: Localization of lipoprotein lipase mRNA in selected rat tissues. J Lipid Res 1989;30:1569-1577
  • George Kunos, Luciano Rossetti :Leptin controls adipose tissue lipogenesis via central, STAT3?independent mechanisms. Nature Medicine200814, 667 - 675
  • Ge H, Cha JY, Gopal H, Harp C, Yu X, Repa JJ, Li C: Differential regulation and properties of angiopoietin-like proteins 3 and 4. J Lipid Res 2005;46:1484-1490
  • Dodds ED, McCoy MR, Rea LD, Kennish JM: Gas chromatographic quantification of fatty acid methyl esters: flame ionization detection vs. electron impact mass spectrometry. Lipids 2005;40:419-428
  • Dara P Schuster: Obesity and the development of type 2 diabetes:the effects of fatty tissue inflammation. Diabetes Metab Syndr Obes. 2010;3:253-62.
  • Conklin D, Gilbertson D, Taft DW, Maurer MF, Whitmore TE, Smith DL, Walker KM, Chen LH, Wattler S, Nehls M, Lewis KB: Identification of a mammalian angiopoietin-related protein expressed specifically in liver. Genomics 1999;62:477- 482
  • ChristophBuettner, Evan D Muse, Andrew Cheng, Linghong Chen, Thomas Scherer, Alessandro Pocai, Kai Su, Bob Cheng, Xiasong Li, Judith Harvey-White, Gary J Schwartz,
  • Chen X, Iqbal N, Boden G: The effects of free fatty acids on gluconeogenesis and glycogenolysis in normal subjects. J Clin Invest 1999;103:365-372
  • Caspi L, Wang PY, Lam TK: A balance of lipid-sensing mechanisms in the brain and liver. Cell Metab 2007;6:99-104
  • Arca M1, Minicocci I, Maranghi M.: The angiopoietin-likeprotein3: a hepatokine with expanding role in metabolism, CurrOpinLipidol. 2013 Aug;24(4):313-20