Literature DB >> 15531525

A single-base mutation in the peroxisome proliferator-activated receptor gamma4 promoter associated with altered in vitro expression and partial lipodystrophy.

Khalid Al-Shali1, Henian Cao, Nine Knoers, Ad R Hermus, Cees J Tack, Robert A Hegele.   

Abstract

Familial partial lipodystrophy (FPLD) results from coding sequence mutations either in LMNA, encoding nuclear lamin A/C, or in PPARG, encoding peroxisome proliferator-activated receptor gamma (PPARgamma). The LMNA form is called FPLD2 (MIM 151660), and the PPARG form is called FPLD3 (MIM 604367). We now report a 21-yr-old female with FPLD and no coding sequence mutations in either LMNA or PPARG. She was heterozygous for a novel A>G mutation at position -14 of intron B upstream of PPARG exon 1 within the promoter of the PPARgamma4 isoform. Her less severely affected father, who had features of the metabolic syndrome and a paucity of limb and gluteal fat, was also heterozygous for -14A>G. This mutation was absent among 600 alleles from normal Caucasians. A minimal promoter sequence bearing the mutation had significantly reduced promoter activity when used to drive reporter expression in in vitro expression in two cell lines, compared with the wild-type sequence. This is the first report of a human mutation in the promoter of a PPARgamma isoform. Because the mutation affects PPARgamma4 expression and is associated with FPLD, this implies that PPARgamma4 might be important for fat depot distribution and metabolism in vivo.

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Year:  2004        PMID: 15531525     DOI: 10.1210/jc.2004-0280

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  20 in total

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2.  Metabolic characterization of nondiabetic severely obese patients undergoing Roux-en-Y gastric bypass: preoperative classification predicts the effects of gastric bypass on insulin-glucose homeostasis.

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Journal:  J Gastrointest Surg       Date:  2007-09       Impact factor: 3.452

Review 3.  Organization of nuclear architecture during adipocyte differentiation.

Authors:  Nancy L Charó; María I Rodríguez Ceschan; Natalia M Galigniana; Judith Toneatto; Graciela Piwien-Pilipuk
Journal:  Nucleus       Date:  2016-05-03       Impact factor: 4.197

Review 4.  PPARγ and Diabetes: Beyond the Genome and Towards Personalized Medicine.

Authors:  Simona Cataldi; Valerio Costa; Alfredo Ciccodicola; Marianna Aprile
Journal:  Curr Diab Rep       Date:  2021-04-18       Impact factor: 4.810

5.  New PPARG mutation leads to lipodystrophy and loss of protein function that is partially restored by a synthetic ligand.

Authors:  Angelika Lüdtke; Janine Buettner; Hartmut H-J Schmidt; Howard J Worman
Journal:  J Med Genet       Date:  2007-09       Impact factor: 6.318

Review 6.  PPARgamma in human and mouse physiology.

Authors:  Sami Heikkinen; Johan Auwerx; Carmen A Argmann
Journal:  Biochim Biophys Acta       Date:  2007-03-27

7.  PPARG: Gene Expression Regulation and Next-Generation Sequencing for Unsolved Issues.

Authors:  Valerio Costa; Maria Assunta Gallo; Francesca Letizia; Marianna Aprile; Amelia Casamassimi; Alfredo Ciccodicola
Journal:  PPAR Res       Date:  2010-09-08       Impact factor: 4.964

8.  Leptin therapy for partial lipodystrophy linked to a PPAR-gamma mutation.

Authors:  Jean-Marc Guettier; Jean Y Park; Elaine K Cochran; Christine Poitou; Arnaud Basdevant; Muriel Meier; Karine Clément; Jocelyne Magré; Phillip Gorden
Journal:  Clin Endocrinol (Oxf)       Date:  2007-12-10       Impact factor: 3.478

9.  Decreased PPAR gamma expression compromises perigonadal-specific fat deposition and insulin sensitivity.

Authors:  Yau-Sheng Tsai; Pei-Jane Tsai; Man-Jin Jiang; Ting-Yu Chou; Avani Pendse; Hyung-Suk Kim; Nobuyo Maeda
Journal:  Mol Endocrinol       Date:  2009-09-11

10.  The role of peroxisome proliferator-activated receptors in the esophageal, gastric, and colorectal cancer.

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Journal:  PPAR Res       Date:  2012-09-06       Impact factor: 4.964

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