Department of Molecular, Cellular, and Craniofacial Biology, ULSD, University of Louisville, Louisville, KY, United States.
Toxicology. 2012 Sep 28;299(2-3):80-9. doi: 10.1016/j.tox.2012.04.015. Epub 2012 May 15.
The Brenner hypothesis states that a congenital reduction in nephron number predisposes to adult-onset hypertension and renal failure. The reduction in nephron number induced by proportionally smaller kidney mass may predispose offspring to glomerular hyperfiltration with maturity onset obesity. Developmental cigarette smoke exposure (CSE) results in intrauterine growth retardation with a predisposition to obesity and cardiovascular disease at maturity. Utilizing a mouse model of 'active' developmental CSE (gestational day [GD] 1-postnatal day [PD] 21; cotinine>50 ng/mL) characterized by persistently smaller offspring with proportionally decreased kidney mass, the present study examined the impact of developmental CSE on the abundance of proteins associated with cellular metabolism in the kidney. Following cessation of CSE on PD21, kidney tissue was collected from CSE and Sham exposed pups for 2D-SDS-PAGE based proteome profiling with statistical analysis by partial least squares-discriminant analysis (PLS-DA) with affected molecular pathways identified by ingenuity pathway analysis. Proteins whose expression in the kidney were affected by developmental CSE belonged to the inflammatory disease, cell to cell signaling/interaction, lipid metabolism, small molecule biochemistry, cell cycle, respiratory disease, nucleic acid and carbohydrate metabolism networks. The present findings indicate that developmental CSE alters the kidney proteome. The companion paper details the liver proteome alterations in the same offspring.
布伦纳假说指出,先天性肾单位数量减少易导致成年期高血压和肾衰竭。比例较小的肾脏质量引起的肾单位数量减少可能使后代易发生肾小球高滤过,进而导致肥胖症发病。发育性香烟烟雾暴露(CSE)导致宫内生长迟缓,成熟后易发生肥胖症和心血管疾病。本研究利用一种“主动”发育性 CSE(妊娠第 1 天至出生后第 21 天;可替宁>50ng/mL)的小鼠模型,其特征是后代持续较小,肾质量比例下降,检查了发育性 CSE 对肾脏细胞代谢相关蛋白丰度的影响。在第 21 天 CSE 停止后,从 CSE 和 Sham 暴露的幼鼠中收集肾脏组织,用于二维 SDS-PAGE 基于蛋白质组学的分析,并通过偏最小二乘判别分析(PLS-DA)进行统计分析,通过 Ingenuity 通路分析确定受影响的分子途径。肾脏中受发育性 CSE 影响的蛋白质属于炎症性疾病、细胞间信号转导/相互作用、脂质代谢、小分子生物化学、细胞周期、呼吸疾病、核酸和碳水化合物代谢网络。本研究结果表明,发育性 CSE 改变了肾脏蛋白质组。同一批幼鼠的肝脏蛋白质组改变的相关内容在另一篇论文中详细描述。