Department of Drug Discovery and Biomedical Sciences, Medical University of South Carolina, Charleston, South Carolina; and.
Department of Drug Discovery and Biomedical Sciences, Medical University of South Carolina, Charleston, South Carolina; and Ralph H. Johnson Veterans Administration Medical Center, Charleston, South Carolina
Am J Physiol Renal Physiol. 2014 Aug 15;307(4):F435-44. doi: 10.1152/ajprenal.00271.2014. Epub 2014 Jul 2.
While disruption of energy production is an important contributor to renal injury, metabolic alterations in sepsis-induced AKI remain understudied. We assessed changes in renal cortical glycolytic metabolism in a mouse model of sepsis-induced AKI. A specific and rapid increase in hexokinase (HK) activity (∼2-fold) was observed 3 h after LPS exposure and maintained up to 18 h, in association with a decline in renal function as measured by blood urea nitrogen (BUN). LPS-induced HK activation occurred independently of HK isoform expression or mitochondrial localization. No other changes in glycolytic enzymes were observed. LPS-mediated HK activation was not sufficient to increase glycolytic flux as indicated by reduced or unchanged pyruvate and lactate levels in the renal cortex. LPS-induced HK activation was associated with increased glucose-6-phosphate dehydrogenase activity but not glycogen production. Mechanistically, LPS-induced HK activation was attenuated by pharmacological inhibitors of the EGF receptor (EGFR) and Akt, indicating that EGFR/phosphatidylinositol 3-kinase/Akt signaling is responsible. Our findings reveal LPS rapidly increases renal cortical HK activity in an EGFR- and Akt-dependent manner and that HK activation is linked to increased pentose phosphate pathway activity.
虽然能量产生的中断是导致肾脏损伤的一个重要因素,但在脓毒症引起的急性肾损伤中,代谢改变仍研究不足。我们评估了在脓毒症诱导的急性肾损伤的小鼠模型中肾脏皮质糖酵解代谢的变化。在 LPS 暴露后 3 小时观察到己糖激酶 (HK) 活性(约 2 倍)的特异性和快速增加,并持续至 18 小时,与肾功能下降(通过血尿素氮 (BUN) 测量)相关。LPS 诱导的 HK 激活与 HK 同工型表达或线粒体定位无关。未观察到其他糖酵解酶的变化。LPS 介导的 HK 激活不足以增加糖酵解通量,因为肾脏皮质中的丙酮酸和乳酸水平降低或不变。LPS 诱导的 HK 激活与葡萄糖-6-磷酸脱氢酶活性增加但糖原生成减少有关。从机制上讲,LPS 诱导的 HK 激活被表皮生长因子受体 (EGFR) 和 Akt 的药理学抑制剂减弱,表明 EGFR/磷脂酰肌醇 3-激酶/Akt 信号通路是负责的。我们的研究结果表明,LPS 以 EGFR 和 Akt 依赖的方式迅速增加肾脏皮质 HK 活性,并且 HK 激活与增加的戊糖磷酸途径活性有关。