Abstract

The lethal yellow mutation in agouti loci (Ay mutation) reduces the activity of melanocortin (MC) receptors and causes hyperphagia, obesity and type two diabetes mellitus in aging mice (Ay mice). It is unknown if changes in distinct elements of the metabolic system such as white adipose tissue (WAT) and brown adipose tissue (BAT), and skeletal muscle will manifest before the development of obesity. The aim of this work was to measure the relative gene expression of key proteins that regulate carbohydrate-lipid metabolism in WAT, BAT and skeletal muscle in Ay mice before the development of obesity. C57Bl/6J mice bearing a dominant autosomal mutation Ay (Ay /a mice) and mice of the standard genotype (a/a mice, control) have been studied in three age groups: 10, 15 and 30 weeks. The relative mRNA level of genes was measured by real-time PCR in skeletal muscles (uncoupling protein 3 (Ucp3) and carnitine palmitoyl transferase 1b (Cpt1b) (free fatty acids oxidation), solute carrier family 2 (facilitated glucose transporter), member 4 (Slc2a4) (glucose uptake)), in WAT lipoprotein lipase (Lpl) (triglyceride deposition), hormone-sensitive lipase (Lipe) (lipid mobilization), and Slc2a4 (glucose uptake)), and in BAT: uncoupling protein 1 (Ucp1) (energy expenditure). The expression of Cpt1b was reduced in young Ay mice (10 weeks), there was no transient peak of transcription of Cpt1b, Ucp3 in skeletal muscle tissue and Lipe, Slc2a4 in WAT in early adult Ay mice (15 weeks), which was noted in а/а mice. Reduction of the transcriptional activity of the studied genes in skeletal muscle and white adipose tissue can initiate the development of melanocortin obesity in Ay mice.

Highlights

  • Как цитировать эту статью: Пискунова Ю.В., Казанцева А.Ю., Бакланов А.В., Бажан Н.М

  • The lethal yellow mutation in agouti loci (Ay mutation) reduces the activity of melanocortin (MC) receptors and causes hyperphagia, obesity and type two diabetes mellitus in aging mice (Ay mice). It is unknown if changes in distinct elements of the metabolic system such as white adipose tissue (WAT) and brown adipose tissue (BAT), and skeletal muscle will manifest before the development of obesity

  • The relative mRNA level of genes was measured by real-time PCR in skeletal muscles (uncoupling protein 3 (Ucp3) and carnitine palmitoyl transferase 1b (Cpt1b), solute carrier family 2, member 4 (Slc2a4)), in WAT lipoprotein lipase (Lpl), hormone-sensitive lipase (Lipe), and Slc2a4), and in BAT: uncoupling protein 1 (Ucp1)

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Summary

Физиологическая генетика

Мутация yellow в локусе agouti устраняет возрастное повышение экспрессии генов белков, регулирующих окисление жирных кислот в мышцах у мышей. Цель работы – измерить у Ay мышей относительную экспрессию генов ключевых белков, регулирующих углеводно-жировой обмен в белом и буром жире и скелетной мускулатуре на этапах развития, предшествующих формированию ожирения. Поскольку МК рецепторы обнаружены в белом и буром жире и мышцах – тканях, влияющих на обмен жиров и углеводов, можно предположить, что нарушения обмена энергии у мышей с мутацией Ау, которая снижает активность МК рецепторов, может начинаться задолго до манифестации ожирения. Исследование показало, что в молодом возрасте (10 нед) задолго до манифестации ожирения у Ау мышей в скелетных мышцах была снижена экспрессия гена Cpt1b, вовлеченного в окисление жирных кислот, в раннем взрослом возрасте (15 нед) у них отсутствовали транзиторный пик транскрипции генов белков, регулирующих окисление СЖК в мышцах (Cpt1b и Ucp3), гидролиз триглицеридов (Lipe) и захват глюкозы (Slc2a4) в белом жире.

Измерение экспрессии генов в мышцах и жировой ткани у Ay мышей
Age c
Findings
Age ND

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