Fatty Acid Metabolism in Patients with PPARγ Mutations

被引:31
作者
Tan, Garry D. [1 ]
Savage, David B. [3 ,4 ]
Fielding, Barbara A. [1 ]
Collins, Jenny [1 ]
Hodson, Leanne
Humphreys, Sandy M. [1 ]
O'Rahilly, Stephen [3 ,4 ]
Chatterjee, Krishna [3 ,4 ]
Frayn, Keith N. [1 ]
Karpe, Fredrik [1 ,2 ]
机构
[1] Univ Oxford, Oxford Ctr Diabet Endocrinol & Metab, Churchill Hosp, Oxford OX3 7LJ, England
[2] Univ Oxford, Natl Inst Hlth & Res, Churchill Hosp, Oxford Biomed Res Ctr, Oxford OX3 7LJ, England
[3] Addenbrookes Hosp, Dept Med, Cambridge CB2 2QQ, England
[4] Addenbrookes Hosp, Dept Clin Biochem, Cambridge CB2 2QQ, England
基金
英国医学研究理事会;
关键词
D O I
10.1210/jc.2007-2356
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Context: PPARG mutations may cause insulin resistance and dyslipidemia, but little is known about the mechanisms of the abnormalities of lipid metabolism. Objective: We hypothesized that in PPARG mutations, abnormal adipose tissue triglyceride storage causes insulin resistance. Design, Patients, and Main Outcome Measures: Whole-body and adipose tissue-specific metabolic phenotyping through arteriovenous blood sampling was made before and after a mixed meal including C-13-palmitic acid. Studies were performed in a 32-yr-old male with partial lipodystrophy and type 2 diabetes, heterozygous for the PPARG P467L mutation and in an apparently phenotypically normal 32-yr-old male heterozygous for the PPARG n.AAA553T mutation. Comparator groups were age-and sex-matched healthy participants (n = 10) and type 2 diabetes sex-matched participants (n = 6). Results: The P467L patient had elevated unmodulated fasting and postprandial plasma nonesterified fatty acid (NEFA) concentrations, despite a low adipose tissue NEFA output. Instead, NEFA appeared to originate directly from triglyceride-rich lipoproteins: 13C-palmitic acid accumulated rapidly in the NEFA fraction, as a sign of impaired fatty acid trapping in tissues. In contrast to the Pparg haploinsufficient mouse, the patient with n.AAA553T mutation did not exhibit paradoxically insulin sensitive and showed a mostly normal metabolic pattern. Conclusions: The lipodystrophic PPARG P467L phenotype include excessive and uncontrolled generation of NEFA directly from triglyceride-rich lipoproteins, explaining high systemic NEFA concentrations, whereas the human PPARG haploinsufficiency is metabolically almost normal. (J Clin Endocrinol Metab 93: 4462-4470, 2008)
引用
收藏
页码:4462 / 4470
页数:9
相关论文
共 42 条
[1]   A novel heterozygous mutation in peroxisome proliferator-activated receptor-γ gene in a patient with familial partial lipodystrophy [J].
Agarwal, AK ;
Garg, A .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2002, 87 (01) :408-411
[2]   Non-DNA binding, dominant-negative, human PPARγ mutations cause lipodystrophic insulin resistance [J].
Agostini, Maura ;
Schoenmakers, Erik ;
Mitchell, Catherine ;
Szatmari, Istvan ;
Savage, David ;
Smith, Aaron ;
Rajanayagam, Odelia ;
Semple, Robert ;
Luan, Jian'an ;
Bath, Louise ;
Zalin, Anthony ;
Labib, Mourad ;
Kumar, Sudhesh ;
Simpson, Helen ;
Blom, Dirk ;
Marais, David ;
Schwabe, John ;
Barroso, Ines ;
Trembath, Richard ;
Wareham, Nicholas ;
Nagy, Laszlo ;
Gurnell, Mark ;
O'Rahilly, Stephen ;
Chatterjee, Krishna .
CELL METABOLISM, 2006, 4 (04) :303-311
[3]   DIFFERENCES IN LIPOLYSIS BETWEEN HUMAN SUBCUTANEOUS AND OMENTAL ADIPOSE TISSUES [J].
ARNER, P .
ANNALS OF MEDICINE, 1995, 27 (04) :435-438
[4]  
Auwerx J, 1996, J Atheroscler Thromb, V3, P81
[5]   Dominant negative mutations in human PPARγ associated with severe insulin resistance, diabetes mellitus and hypertension [J].
Barroso, I ;
Gurnell, M ;
Crowley, VEF ;
Agostini, M ;
Schwabe, JW ;
Soos, MA ;
Maslen, GL ;
Williams, TDM ;
Lewis, H ;
Schafer, AJ ;
Chatterjee, VKK ;
O'Rahilly, S .
NATURE, 1999, 402 (6764) :880-883
[6]  
Burdge GC, 2000, BRIT J NUTR, V84, P781
[7]   The common PPAR-γ2 Pro12Ala variant is associated with greater insulin sensitivity [J].
Buzzetti, R ;
Petrone, A ;
Ribaudo, MC ;
Alemanno, I ;
Zavarella, S ;
Mein, CA ;
Maiani, F ;
Tiberti, C ;
Baroni, MG ;
Vecci, E ;
Arca, M ;
Leonetti, F ;
Di Mario, U .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2004, 12 (12) :1050-1054
[8]   A Pro12Ala substitution in PPARγ2 associated with decreased receptor activity, lower body mass index and improved insulin sensitivity [J].
Deeb, SS ;
Fajas, L ;
Nemoto, M ;
Pihlajamäki, J ;
Mykkänen, L ;
Kuusisto, J ;
Laakso, M ;
Fujimoto, W ;
Auwerx, J .
NATURE GENETICS, 1998, 20 (03) :284-287
[9]   Studies of the Pro12Ala polymorphism of the peroxisome proliferator-activated receptor-γ2 (PPAR-γ2) gene in relation to insulin sensitivity among glucose tolerant Caucasians [J].
Ek, J ;
Andersen, G ;
Urhammer, SA ;
Hansen, L ;
Carstensen, B ;
Borch-Johnsen, K ;
Drivsholm, T ;
Berglund, L ;
Hansen, T ;
Lithell, H ;
Pedersen, O .
DIABETOLOGIA, 2001, 44 (09) :1170-1176
[10]   Regulation of dietary fatty acid entrapment in subcutaneous adipose tissue and skeletal muscle [J].
Evans, K ;
Burdge, GC ;
Wootton, SA ;
Clark, ML ;
Frayn, KN .
DIABETES, 2002, 51 (09) :2684-2690