Maternal protein restriction combined with postnatal sugar consumption alters liver proteomic profile and metabolic pathways in adult male offspring rats

IF 3.8 3区 医学 Q2 CELL BIOLOGY
Isabelle Tenori Ribeiro , Matheus Naia Fioretto , Sérgio Alexandre Alcantara dos Santos , Ketlin Thassiani Colombelli , Luiz Marcos Frediani Portela , Marcus Vinicius Niz Alvarez , Pedro de Magalhães Padilha , Aislan Quintiliano Delgado , Marcus Vinicius Lage Silva Giaculi Marques , José Roberto Bosqueiro , Fábio Rodrigues Ferreira Seiva , Luís Fernando Barbisan , Antonio Marcus de Andrade Paes , Elena Zambrano , Luis Antonio Justulin Jr.
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Abstract

This study investigated the impact of maternal protein restriction (MPR) and early postnatal sugar consumption (SUG) on the liver health of adult male descendant rats. Male offspring of mothers fed a normal protein diet (NPD) or a low protein diet (LPD) were divided into four groups: Control (CTR), Sugar Control (CTR + SUG), LPD during gestation and lactation (GLLP), and LPD with sugar (GLLP + SUG). Sugar consumption (10% glucose diluted in water) began after weaning on day 21 (PND 21), and at 90 days (PND 90), rats were sacrificed for analysis. Sugar intake reduced food intake and increased water consumption in CTR + SUG and GLLP + SUG compared to CTR and GLLP. GLLP and GLLP + SUG groups showed lower body weight and total and retroperitoneal fat compared to CTR and CTR + SUG. CTR + SUG and GLLP + SUG groups exhibited hepatocyte vacuolization associated with increased hepatic glycogen content compared to CTR and GLLP. Hepatic catalase activity increased in GLLP compared to CTR. Proteomic analysis identified 223 differentially expressed proteins (DEPs) among experimental groups. While in the GLLP group, the DEPs enriched molecular pathways related to cellular stress, glycogen metabolic pathways were enriched in the GLLP + SUG and CTR + SUG groups. The association of sugar consumption amplifies the effects of MPR, deregulating molecular mechanisms related to metabolism and the antioxidant system.

Abstract Image

母体蛋白质限制与产后糖摄入会改变成年雄性后代大鼠的肝脏蛋白质组图谱和代谢途径
本研究调查了母体蛋白质限制(MPR)和产后早期糖摄入量(SUG)对成年雄性后代大鼠肝脏健康的影响。母鼠以正常蛋白质饮食(NPD)或低蛋白饮食(LPD)喂养的雄性后代分为四组:对照组(CTR)、糖控制组(CTR+SUG)、妊娠期和哺乳期低蛋白饮食组(GLLP)和含糖低蛋白饮食组(GLLP+SUG)。大鼠断奶后第 21 天(PND 21)开始摄入糖(10% 葡萄糖稀释水),90 天(PND 90)后将大鼠处死以进行分析。与 CTR 和 GLLP 相比,CTR+SUG 和 GLLP+SUG 的糖摄入量减少了食物摄入量,增加了耗水量。与 CTR 和 CTR+SUG 相比,GLLP 和 GLLP+SUG 组的体重、总脂肪和腹膜后脂肪含量较低。与 CTR 和 GLLP 相比,CTR+SUG 组和 GLLP+SUG 组表现出与肝糖原含量增加有关的肝细胞空泡化。与 CTR 相比,GLLP 组的肝过氧化氢酶活性增加。蛋白质组学分析在各实验组中发现了 223 个差异表达蛋白 (DEPs)。在 GLLP 组,差异表达蛋白富集了与细胞应激有关的分子通路,而在 GLLP+SUG 组和 CTR+SUG 组,则富集了糖代谢通路。与糖消费相关联会放大 MPR 的影响,解除与新陈代谢和抗氧化系统相关的分子机制。
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来源期刊
Molecular and Cellular Endocrinology
Molecular and Cellular Endocrinology 医学-内分泌学与代谢
CiteScore
9.00
自引率
2.40%
发文量
174
审稿时长
42 days
期刊介绍: Molecular and Cellular Endocrinology was established in 1974 to meet the demand for integrated publication on all aspects related to the genetic and biochemical effects, synthesis and secretions of extracellular signals (hormones, neurotransmitters, etc.) and to the understanding of cellular regulatory mechanisms involved in hormonal control.
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