Genetic background and diet affect brown adipose gene coexpression networks associated with metabolic phenotypes

被引:4
|
作者
Carson, Caryn [1 ]
Lawson, Heather A. [1 ]
机构
[1] Washington Univ, Sch Med, Dept Genet, St Louis, MO 63110 USA
基金
美国国家卫生研究院;
关键词
brown adipose; expression; gene-by-environment; mouse; network; GLUCOSE-HOMEOSTASIS; INDUCED OBESITY; TISSUE; MOUSE; MICE; ADIPOCYTE; SUSCEPTIBILITY; STRAIN; DIFFERENTIATION; THERMOGENESIS;
D O I
10.1152/physiolgenomics.00003.2020
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Adipose is a dynamic endocrine organ that is critical for regulating metabolism and is highly responsive to nutritional environment. Brown adipose tissue is an exciting potential therapeutic target; however, there are no systematic studies of gene-by-environment interactions affecting function of this organ. We leveraged a weighted gene coexpression network analysis to identify transcriptional networks in brown adipose tissue from LG/J and SM/J inbred mice fed high- or low-fat diets and correlate these networks with metabolic phenotypes. We identified eight primary gene network modules associated with variation in obesity and diabetes-related traits. Four modules were enriched for metabolically relevant processes such as immune and cytokine response, cell division, peroxisome functions, and organic molecule metabolic processes. The relative expression of genes in these modules is highly dependent on both genetic background and dietary environment. Genes in the immune/cytokine response and cell division modules are particularly highly expressed in high fat-fed SM/J mice, which show unique brown adipose-dependent remission of diabetes. The interconnectivity of genes in these modules is also heavily dependent on diet and strain, with most genes showing both higher expression and coexpression under the same context. We highlight several genes of interest, Col28a1. Cyp26b1. Bmp8b, and Ngef, that have distinct expression patterns among strain-by-diet contexts and fall under metabolic quantitative trait loci previously mapped in an F-16 generation of an advanced intercross between LG/J and SM/J. Each of these genes have some connection to obesity and diabetes-related traits, but have not been studied in brown adipose tissue. Our results provide important insights into the relationship between brown adipose and systemic metabolism by being the first gene-by-environment study of brown adipose transcriptional networks.
引用
收藏
页码:223 / 233
页数:11
相关论文
共 50 条
  • [1] Genetic background determines metabolic phenotypes in the mouse
    Champy, Marie-France
    Selloum, Mohammed
    Zeitler, Valirie
    Caradec, Claudia
    Jung, Barbara
    Rousseau, Stephane
    Pouilly, Laurent
    Sorg, Tania
    Auwerx, Johan
    MAMMALIAN GENOME, 2008, 19 (05) : 318 - 331
  • [2] Genetic background determines metabolic phenotypes in the mouse
    Marie-France Champy
    Mohammed Selloum
    Valérie Zeitler
    Claudia Caradec
    Barbara Jung
    Stéphane Rousseau
    Laurent Pouilly
    Tania Sorg
    Johan Auwerx
    Mammalian Genome, 2008, 19 : 318 - 331
  • [3] Coexpression Network Analysis in Abdominal and Gluteal Adipose Tissue Reveals Regulatory Genetic Loci for Metabolic Syndrome and Related Phenotypes
    Min, Josine L.
    Nicholson, George
    Halgrimsdottir, Ingileif
    Almstrup, Kristian
    Petri, Andreas
    Barrett, Amy
    Travers, Mary
    Rayner, Nigel W.
    Maegi, Reedik
    Pettersson, Fredrik H.
    Broxholme, John
    Neville, Matt J.
    Wills, Quin F.
    Cheeseman, Jane
    Allen, Maxine
    Holmes, Chris C.
    Spector, Tim D.
    Fleckner, Jan
    McCarthy, Mark I.
    Karpe, Fredrik
    Lindgren, Cecilia M.
    Zondervan, Krina T.
    PLOS GENETICS, 2012, 8 (02):
  • [4] BROWN ADIPOSE AND METABOLIC FEATURES OF CHRONIC DIET-INDUCED OBESITY
    LEVIN, BE
    FINNEGAN, M
    TRISCARI, J
    SULLIVAN, AC
    AMERICAN JOURNAL OF PHYSIOLOGY, 1985, 248 (06): : R717 - R723
  • [5] PRPH2 Gene Mutations and Associated Phenotypes in IRD patients with diverse genetic background
    Hallock, Christopher
    Sangermano, Riccardo
    De Baere, Elfride
    Lin, Siying
    Thompson, Jennifer
    Escher, Pascal
    Vincent, Andrea L.
    Webb-Jones, Kaylie D.
    Pechhacker, Monika Grudzinska
    Duncan, Jacque L.
    Khateb, Samer
    Ben-Yosef, Tamar
    Birch, David G.
    Webster, Andrew
    Ayyagari, Radha
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2024, 65 (07)
  • [6] DO INSULIN LEVELS AFFECT THE METABOLIC RESPONSES OF BROWN ADIPOSE-TISSUE
    SEYDOUX, J
    BAS, S
    IMESCH, E
    TRIMBLE, ER
    GIACOBINO, JP
    EXPERIENTIA, 1982, 38 (06): : 719 - 719
  • [7] The impact of the genetic background on gene deletion phenotypes in Saccharomyces cerevisiae
    Galardini, Marco
    Busby, Bede P.
    Vieitez, Cristina
    Dunham, Alistair S.
    Typas, Athanasios
    Beltrao, Pedro
    MOLECULAR SYSTEMS BIOLOGY, 2019, 15 (12)
  • [8] Interstitial lung disease in children – genetic background and associated phenotypes
    Dominik Hartl
    Matthias Griese
    Respiratory Research, 6
  • [9] Interstitial lung disease in children - genetic background and associated phenotypes
    Hartl, D
    Griese, M
    RESPIRATORY RESEARCH, 2005, 6 (1)
  • [10] Mitochondrial haplotypes affect metabolic phenotypes in the Drosophila Genetic Reference Panel
    Bevers, Roel P. J.
    Litovchenko, Maria
    Kapopoulou, Adamandia
    Braman, Virginie S.
    Robinson, Matthew R.
    Auwerx, Johan
    Hollis, Brian
    Deplancke, Bart
    NATURE METABOLISM, 2019, 1 (12) : 1226 - +