Kanwar Y S, Liu Z Z, Kumar A, Usman M I, Wada J, Wallner E I
Department of Pathology, Northwestern University Medical School, Chicago, Illinois 60611, USA.
J Clin Invest. 1996 Dec 1;98(11):2478-88. doi: 10.1172/JCI119066.
An organ culture system was used to study the effect of D-glucose on embryonic kidneys, and to delineate the mechanism(s) relevant to their dysmorphogenesis. Metanephroi were cultured in the presence of 30 mM D-glucose. A notable reduction in the size and population of nephrons was observed. Ureteric bud branches were rudimentary and the acuteness of their tips, the site of nascent nephron formation, was lost. Metanephric mesenchyme was atrophic, had reduced cell replication, and contained numerous apoptotic cells. Competitive reverse transcriptase-PCR analyses and immunoprecipitation studies indicated a decrease in expression of heparan sulfate proteoglycan (perlecan). Status of activated protein-2 was evaluated since its binding motifs are present in the promoter region of the perlecan gene. Decreased binding activity of activated protein-2, related to its phosphorylation, was observed. D-glucose-treated explants also had reduced levels of cellular ATP. Exogenous administration of ATP restored the altered metanephric morphology and reduced [35S]sulfate-incorporated radioactivity associated with perlecan. The data suggest that D-glucose adversely affects the metanephrogenesis by perturbing various cellular phosphorylation events involved in the transcriptional and translational regulation of perlecan. Since perlecan modulates epithelial/mesenchymal interactions, its deficiency may have led to the metanephric dysmorphogenesis and consequential atrophy of the mesenchyme exhibiting accelerated apoptosis.
采用器官培养系统研究D-葡萄糖对胚胎肾脏的影响,并阐明与肾脏畸形发生相关的机制。将后肾在30 mM D-葡萄糖存在下培养。观察到肾单位的大小和数量显著减少。输尿管芽分支发育不全,其尖端(新生肾单位形成的部位)的尖锐度消失。后肾间充质萎缩,细胞复制减少,且含有大量凋亡细胞。竞争性逆转录酶-PCR分析和免疫沉淀研究表明硫酸乙酰肝素蛋白聚糖(基底膜聚糖)的表达降低。由于活化蛋白-2的结合基序存在于基底膜聚糖基因的启动子区域,因此对其状态进行了评估。观察到与磷酸化相关的活化蛋白-2的结合活性降低。用D-葡萄糖处理的外植体的细胞ATP水平也降低。外源性给予ATP可恢复后肾形态的改变,并降低与基底膜聚糖相关的[35S]硫酸盐掺入放射性。数据表明,D-葡萄糖通过干扰参与基底膜聚糖转录和翻译调控的各种细胞磷酸化事件,对后肾发生产生不利影响。由于基底膜聚糖调节上皮/间充质相互作用,其缺乏可能导致后肾畸形发生以及间充质的相应萎缩,并表现出加速凋亡。