DNA Methylation Reorganization of Skeletal Muscle-Specific Genes in Response to Gestational Obesity

被引:13
|
作者
Prats-Puig, Anna [1 ]
Garcia-Retortillo, Sergi [1 ,2 ]
Puig-Parnau, Miquel [1 ]
Vasileva, Fidanka [3 ]
Font-Llado, Raquel [1 ]
Xargay-Torrent, Silvia [4 ]
Carreras-Badosa, Gemma [4 ]
Mas-Pares, Berta [5 ]
Bassols, Judit [5 ]
Lopez-Bermejo, Abel [4 ]
机构
[1] Univ Girona, Univ Sch Hlth & Sport EUSES, Girona, Spain
[2] Univ Barcelona UB, Natl Inst Phys Educ & Sport Catalonia INEFC, Complex Syst Sport, Barcelona, Spain
[3] Ss Cyril & Methodius Univ, Fac Phys Educ Sport & Hlth, Skopje, North Macedonia
[4] Dr Josep Trueta Hosp, Girona Inst Biomed Res, Pediat Endocrinol, Girona, Spain
[5] Girona Inst Biomed Res, Maternal & Fetal Metab Res, Salt, Spain
来源
FRONTIERS IN PHYSIOLOGY | 2020年 / 11卷
关键词
gestational obesity; skeletal muscle; umbilical cord tissue; methylation; network physiology; FASTING PLASMA-GLUCOSE; WEIGHT-GAIN; TRANSCRIPTION FACTORS; LACTATION PROMOTES; DIABETES-MELLITUS; RISK; EXPRESSION; DISEASE; ASSOCIATION; INSULIN;
D O I
10.3389/fphys.2020.00938
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The goals were to investigate in umbilical cord tissue if gestational obesity: (1) was associated with changes in DNA methylation of skeletal muscle-specific genes; (2) could modulate the co-methylation interactions among these genes. Additionally, we assessed the associations between DNA methylation levels and infant's variables at birth and at age 6. DNA methylation was measured in sixteen pregnant women [8-gestational obesity group; 8-control group] in umbilical cord using the Infinium Methylation EPIC Bead Chip microarray. Differentially methylated CpGs were identified with Beta Regression Models [false discovery rate (FDR) < 0.05 and an Odds Ratio > 1.5 or < 0.67]. DNA methylation interactions between CpGs of skeletal muscle-specific genes were studied using data from Pearson correlation matrices. In order to quantify the interactions within each network, the number of links was computed. This identification analysis reported 38 differential methylated CpGs within skeletal muscle-specific genes (comprising 4 categories: contractibility, structure, myokines, and myogenesis). Compared to control group, gestational obesity (1) promotes hypermethylation in highly methylated genes and hypomethylation in low methylated genes; (2) CpGs in regions close to transcription sites and with high CpG density are hypomethylated while regions distant to transcriptions sites and with low CpG density are hypermethylated; (3) diminishes the number of total interactions in the co-methylation network. Interestingly, the associations between infant's fasting glucose at age 6 and MYL6, MYH11, TNNT3, TPM2, CXCL2, and NCAM1 were still relevant after correcting for multiple testing. In conclusion, our study showed a complex interaction between gestational obesity and the epigenetic status of muscle-specific genes in umbilical cord tissue. Additionally, gestational obesity may alter the functional co-methylation connectivity of CpG within skeletal muscle-specific genes interactions, our results revealing an extensive reorganization of methylation in response to maternal overweight. Finally, changes in methylation levels of skeletal muscle specific genes may have persistent effects on the offspring of mothers with gestational obesity.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Muscle-specific microRNAs in skeletal muscle development
    Horak, Martin
    Novak, Jan
    Bienertova-Vasku, Julie
    DEVELOPMENTAL BIOLOGY, 2016, 410 (01) : 1 - 13
  • [2] Evolution of epaxial/hypaxial skeletal muscle implicated by the expression pattern of lamprey muscle-specific genes
    Kusakabe, Rie
    Kuratani, Shigeru
    ZOOLOGICAL SCIENCE, 2004, 21 (12) : 1271 - 1271
  • [3] THE CHROMOSOMAL ASSIGNMENT OF MUSCLE-SPECIFIC GENES
    YAFFE, D
    NUDEL, U
    CZOSNEK, H
    MELLOUL, D
    ALONI, B
    ADVANCES IN EXPERIMENTAL MEDICINE AND BIOLOGY, 1985, 182 : 295 - 307
  • [4] REGULATED EXPRESSION OF MUSCLE-SPECIFIC GENES INTRODUCED INTO MOUSE EMBRYONAL STEM-CELLS - INVERSE CORRELATION WITH DNA METHYLATION
    SHINAR, D
    YOFFE, O
    SHANI, M
    YAFFE, D
    DIFFERENTIATION, 1989, 41 (02) : 116 - 126
  • [5] Mice with Skeletal Muscle-Specific DRP1 Deficiency Are Resistant to Obesity and Diabetes
    Jensen, Renato
    Peterson, Joshua
    Allington, Benjamin
    Cheng, Linhair
    Dieter, Alayna
    Soto, Jamie
    Pereira, Renata
    Correia, Marcelo
    Abel, Evan
    OBESITY, 2020, 28 : 125 - 125
  • [6] ACTIVITY OF SKELETAL AND CARDIAC MUSCLE-SPECIFIC GENES IN HETEROLOGOUS TISSUE-CULTURE CELLS
    PIOTRASCHKE, T
    WINTER, B
    WIEBAUER, K
    KLAPTHOR, H
    ARNOLD, HH
    HOPPE-SEYLERS ZEITSCHRIFT FUR PHYSIOLOGISCHE CHEMIE, 1984, 365 (09): : 1042 - 1043
  • [7] Skeletal muscle-specific immunotoxin for the treatment of focal muscle spasm
    Hott, JS
    Dalakas, MC
    Sung, C
    Hallett, M
    Youle, RJ
    NEUROLOGY, 1998, 50 (02) : 485 - 491
  • [8] A skeletal muscle-specific immunotoxin for the treatment of focal muscle spasm
    Hott, J
    Dalakas, M
    Hallett, M
    Youle, R
    ANNALS OF NEUROLOGY, 1996, 40 (03) : T190 - T190
  • [9] Glucose transport and phosphorylation in skeletal muscle in obesity: Insight from a muscle-specific positron emission tomography model
    Williams, KV
    Bertoldo, A
    Mattioni, B
    Price, JC
    Cobelli, C
    Kelley, DE
    JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2003, 88 (03): : 1271 - 1279
  • [10] DNA Methylation is Altered in Human Skeletal Muscle in Response to Exercise Training
    Radom-Aizik, Shlomit
    Haddad, Fadia
    Owerkowicz, Tomasz
    Devaney, Joseph M.
    Hoffman, Eric P.
    Tesch, Per A.
    Adams, Gregory R.
    MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2012, 44 : 348 - 348