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首页> 外文期刊>American Journal of Physiology >Acidosis induces antimicrobial peptide expression and resistance to uropathogenic E. coli infection in kidney collecting duct cells via HIF-1α
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Acidosis induces antimicrobial peptide expression and resistance to uropathogenic E. coli infection in kidney collecting duct cells via HIF-1α

机译:通过HIF-1α将酸中毒引起肾脏收集管道细胞尿胆管肽的表达和对尿羟致胆黄类大肠杆菌感染的抗性肽表达和抗性

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摘要

Acute pyelonephritis is frequently associated with metabolic acidosis. We previously reported that metabolic acidosis stimulates expression of hypoxia-inducible factor (HIF)-1α-induced target genes such as stromal derived factor-1 and cathelicidin, an antimicrobial peptide. Since the collecting duct (CD) plays a pivotal role in regulating acid-base homeostasis and is the first nephron segment encountered by an ascending microbial infection, we examined the contribution of HIF-1α to innate immune responses elicited by acid loading of an M-l immortalized mouse CD cell line. Acid loading of confluent M-1 cells was achieved by culture in pH 6.8 medium supplemented with 5-(N-ethyl-N-isopropyl)-amiloride to block Na+/H+ exchange activity for 24 h. Acid loading induced antimicrobial peptide [cathelicidin and [3-defensin (Defb2 and Defb26)] mRNA expression and M-l cell resistance to uropathogenic Escherichia coli infection to an extent similar to that obtained by inhibition of HIF prolyl hydroxylases, which promote HIF-la protein degradation. The effect of acid loading on M-l cell resistance to uropathogenic E. coli infection was reduced by inhibition of HIF-1α (PX-478), and, in combination with prolyl hydroxylase inhibitors, acidosis did not confer additional resistance. Thus, metabolic stress of acidosis triggers HIF-1α-dependent innate immune responses in CD (M-l) cells. Whether pharmacological stabilization of HIF prevents or ameliorates pyelonephritis in vivo warrants further investigation.
机译:急性肾盂肾炎经常与代谢酸中毒有关。我们之前报道了代谢酸中毒刺激了缺氧诱导因子(HIF)-1α诱导的靶基因的表达,例如基质衍生因子-1和抗微生物肽。由于收集管道(CD)在调节酸基础稳态中起着枢轴作用,并且是由上升微生物感染遇到的第一个肾脏段,因此我们研究了HIF-1α的贡献,以酸负载均化的酸负载引发的先天免疫应答小鼠CD细胞系。通过补充有5-(乙基-N-异丙基)-amiloride的pH 6.8培养基中的培养物来实现汇集M-1细胞的酸负载,以阻止24小时的Na + / H +交换活性。酸负载诱导的抗微生物肽[Cathelicidin和[3-防御蛋白(DefB2和DefB26)] mRNA表达和Ml细胞耐药性与尿羟基硫甾粒细胞感染的程度类似于通过抑制HIF-LA蛋白质降解而获得的相似的程度。 。通过抑制HIF-1α(PX-478),减少了酸负荷对尿胆肠病大肠杆菌感染的影响对尿羟致致胆黄类感染的影响。与脯氨酰羟化酶抑制剂组合,酸中毒不达到额外的抗性。因此,酸中毒的代谢应力触发CD(M-L)细胞中的HIF-1α依赖性先天免疫应答。 HIF的药理稳定是否可防止或改善体内肾盂炎,保证进一步调查。

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