Division of Rheumatology and Immunology, Department of Medicine, Medical University of South Carolina , Charleston, South Carolina.
Department of Pharmacology and Toxicology, James Graham Brown Cancer Center, University of Louisville , Louisville, Kentucky.
Am J Physiol Renal Physiol. 2018 Apr 1;314(4):F630-F642. doi: 10.1152/ajprenal.00421.2017. Epub 2017 Dec 20.
The development of nephritis is a leading cause of morbidity and mortality in lupus patients. Although the general pathophysiological progression of lupus nephritis is known, the molecular mediators and mechanisms are incompletely understood. Previously, we demonstrated that the glycosphingolipid (GSL) catabolic pathway is elevated in the kidneys of MRL/lpr lupus mice and human lupus patients with nephritis. Specifically, the activity of neuraminidase (NEU) and expression of Neu1, an enzyme in the GSL catabolic pathway is significantly increased. To better understand the role and mechanisms by which this pathway contributes to the progression of LN, we analyzed the expression and effects of NEU activity on the function of MRL/lpr lupus-prone mesangial cells (MCs). We demonstrate that NEU1 and NEU3 promote IL-6 production in MES13 MCs. Neu1 expression, NEU activity, and IL-6 production are significantly increased in stimulated primary MRL/lpr lupus-prone MCs, and blocking NEU activity inhibits IL-6 production. NEU1 and NEU3 expression overlaps IgG deposits in MCs in vitro and in renal sections from nephritic MRL/lpr mice. Together, our results suggest that NEU activity mediates IL-6 production in lupus-prone MCs possibly through an IgG-receptor complex signaling pathway.
肾炎的发展是狼疮患者发病率和死亡率的主要原因。尽管狼疮肾炎的一般病理生理进展是已知的,但分子介质和机制尚不完全清楚。以前,我们证明了糖脂(GSL)代谢途径在 MRL/lpr 狼疮小鼠和有肾炎的人类狼疮患者的肾脏中升高。具体来说,神经氨酸酶(NEU)的活性和 GSL 代谢途径中的一种酶 Neu1 的表达显著增加。为了更好地了解该途径对 LN 进展的作用和机制,我们分析了 NEU 活性对 MRL/lpr 狼疮易感系膜细胞(MCs)功能的表达和影响。我们证明 NEU1 和 NEU3 促进 MES13 MCs 中 IL-6 的产生。刺激后的原发性 MRL/lpr 狼疮易感 MCs 中 Neu1 表达、NEU 活性和 IL-6 产生显著增加,阻断 NEU 活性可抑制 IL-6 的产生。NEU1 和 NEU3 的表达与体外 MC 中的 IgG 沉积物和肾炎 MRL/lpr 小鼠的肾切片中的 IgG 沉积物重叠。总之,我们的结果表明,NEU 活性可能通过 IgG 受体复合物信号通路介导狼疮易感 MC 中的 IL-6 产生。