Leung Joseph C K, Chan Loretta Y Y, Saleem M A, Mathieson P W, Tang Sydney C W, Lai Kar Neng
Department of Medicine, Queen Mary Hospital, The University of Hong Kong, Room 301, Professorial Block, 102 Pokfulam Road, Pokfulam, Hong Kong, China,
Apoptosis. 2015 Jul;20(7):907-20. doi: 10.1007/s10495-015-1117-1.
Glomerulo-podocytic communication plays an important role in the podocytic injury in IgA nephropathy (IgAN). In this study, we examine the role of podocytic angiotensin II receptor subtype 1 (AT1R) and prorenin receptor (PRR) in podocytic apoptosis in IgAN. Polymeric IgA (pIgA) was isolated from patients with IgAN and healthy controls. Conditioned media were prepared from growth arrested human mesangial cells (HMC) incubated with pIgA from patients with IgAN (IgA-HMC media) or healthy controls (Ctl-HMC media). A human podocyte cell line was used as a model to examine the regulation of the expression of AT1R, PRR, TNF-α and CTGF by IgA-HMC media. Podocytic nephrin expression, annexin V binding and caspase 3 activity were used as the functional readout of podocytic apoptosis. IgA-HMC media had no effect on AngII release by podocytes. IgA-HMC media significantly up-regulated the expression of AT1R and PRR, down-regulated nephrin expression and induced apoptosis in podocytes. Mono-blockade of AT1R, PRR, TNF-α or CTGF partially reduced podocytic apoptosis. IgA-HMC media activated NFκB, notch1 and HEY1 expression by podocytes and dual blockade of AT1R with PRR, or anti-TNF-α with anti-CTGF, effectively rescued the podocytic apoptosis induced by IgA-HMC media. Our data suggests that pIgA-activated HMC up-regulates the expression of AT1R and PRR expression by podocytes and the associated activation of NFκB and notch signalling pathways play an essential role in the podocytic apoptosis induced by glomerulo-podocytic communication in IgAN. Simultaneously targeting the AT1R and PRR could be a potential therapeutic option to reduce the podocytic injury in IgAN.
肾小球-足细胞通讯在IgA肾病(IgAN)的足细胞损伤中起重要作用。在本研究中,我们探讨了足细胞血管紧张素II 1型受体(AT1R)和肾素原受体(PRR)在IgAN足细胞凋亡中的作用。从IgAN患者和健康对照者中分离出聚合IgA(pIgA)。用来自IgAN患者的pIgA(IgA-HMC培养基)或健康对照者的pIgA(Ctl-HMC培养基)孵育生长停滞的人系膜细胞(HMC)制备条件培养基。用人足细胞系作为模型,研究IgA-HMC培养基对AT1R、PRR、TNF-α和CTGF表达的调节作用。足细胞nephrin表达、膜联蛋白V结合和半胱天冬酶3活性用作足细胞凋亡的功能读数。IgA-HMC培养基对足细胞释放AngII无影响。IgA-HMC培养基显著上调AT1R和PRR的表达,下调nephrin表达并诱导足细胞凋亡。单独阻断AT1R、PRR、TNF-α或CTGF可部分减少足细胞凋亡。IgA-HMC培养基激活足细胞的NFκB、notch1和HEY1表达,同时阻断AT1R与PRR或抗TNF-α与抗CTGF可有效挽救IgA-HMC培养基诱导的足细胞凋亡。我们的数据表明,pIgA激活的HMC上调足细胞AT1R和PRR的表达,相关的NFκB和notch信号通路激活在IgAN肾小球-足细胞通讯诱导的足细胞凋亡中起重要作用。同时靶向AT1R和PRR可能是减少IgAN足细胞损伤的潜在治疗选择。