Department of Veterinary Pharmacology, University of Miyazaki, Miyazaki, Japan.
Nephron. 2022;146(4):393-403. doi: 10.1159/000520697. Epub 2021 Dec 23.
DBA/2FG-pcy (pcy) mice harbor a homozygous Nphp3 missense mutation and develop nephronophthisis with renal interstitial fibrosis. Previous studies have shown that aberrant oxygen homeostasis contributes to the renal pathology in pcy mice, but the underlying molecular mechanism remains largely unknown.
pcy mice and a control strain, DBA/2N (DBA) mice, were used. Renal levels of 62 mRNAs involved in oxygen homeostasis were investigated by real-time PCR, and the resulting data were used for extraction of pathological pathways. On the basis of the genes found to be upregulated and pathway analysis, further studies were performed using immunoblotting, immunohistochemistry, and pharmacological intervention.
In comparison with DBA mice, the levels of 18 mRNAs were altered by >2-fold in pcy mice. Pathway analysis extracted molecular pathways related to oxidative stress, inflammation, and cell adhesion. As the levels of mRNAs relevant to the NADPH oxidase 2 (NOX2) pathway were prominently (4 genes >5-fold) increased in pcy mice, we further analyzed the molecules related to this pathway. A time course study suggested that the pathway was gradually activated in pcy mice from at least 5 weeks of age. Immunohistochemistry study revealed that NOX2 protein was colocalized with a macrophage marker protein in the renal interstitium. Moreover, treatment of pcy mice with apocynin, an inhibitor of the NOX2 pathway, ameliorated the renal fibrosis.
Our findings suggest that the activation of the NOX2 pathway, possibly mediated by macrophage infiltration, plays a pivotal role in progressive renal fibrosis in pcy mice.
DBA/2FG-pcy (pcy) 小鼠携带 Nphp3 错义突变的纯合子,并发展为伴有肾间质纤维化的肾髓质囊性肾病。先前的研究表明,异常的氧平衡有助于 pcy 小鼠的肾脏病理学,但潜在的分子机制在很大程度上仍不清楚。
使用 pcy 小鼠和对照品系 DBA/2N (DBA) 小鼠。通过实时 PCR 研究了与氧平衡相关的 62 个 mRNA 的肾脏水平,所得数据用于提取病理途径。基于上调的基因和通路分析,使用免疫印迹、免疫组织化学和药理学干预进行了进一步研究。
与 DBA 小鼠相比,pcy 小鼠中有 18 个 mRNA 的水平改变了 >2 倍。通路分析提取了与氧化应激、炎症和细胞黏附相关的分子途径。由于与 NADPH 氧化酶 2 (NOX2) 途径相关的 mRNA 水平显著升高(4 个基因 >5 倍),我们进一步分析了与该途径相关的分子。一项时间进程研究表明,该途径至少从 5 周龄开始在 pcy 小鼠中逐渐激活。免疫组织化学研究表明,NOX2 蛋白与肾间质中的巨噬细胞标记蛋白共定位。此外,用 NOX2 途径抑制剂 apocynin 治疗 pcy 小鼠可改善肾纤维化。
我们的研究结果表明,NOX2 途径的激活,可能由巨噬细胞浸润介导,在 pcy 小鼠进行性肾纤维化中起关键作用。