Department of Nephrology, Tokushima University Graduate School of Biomedical Sciences, 3-18-15 Kuramoto-cho, Tokushima, 770-8503, Japan.
Clin Exp Nephrol. 2024 Jul;28(7):599-607. doi: 10.1007/s10157-024-02502-w. Epub 2024 Apr 8.
The time for diabetic nephropathy (DN) to progress from mild to severe is long. Thus, methods to continuously repress DN are required to exert long-lasting effects mediated through epigenetic regulation. In this study, we demonstrated the ability of nicotinamide adenine dinucleotide (NAD) and its metabolites to reduce albuminuria through Sirt1- or Nampt-dependent epigenetic regulation. We previously reported that proximal tubular Sirt1 was lowered before glomerular Sirt1. Repressed glomerular Sirt1 was found to epigenetically elevate Claudin-1. In addition, we reported that proximal tubular Nampt deficiency epigenetically augmented TIMP-1 levels in Sirt6-mediated pathways, leading to type-IV collagen deposition and diabetic fibrosis. Altogether, we propose that the Sirt1/Claudin-1 axis may be crucial in the onset of albuminuria at the early stages of DN and that the Nampt/Sirt6/TIMP-1 axis promotes diabetic fibrosis in the middle to late stages of DN. Finally, administration of NMN, an NAD precursor, epigenetically potentiates the regression of the onset of DN to maintain Sirt1 and repress Claudin-1 in podocytes, suggesting the potential use of NAD metabolites as epigenetic medications for DN.
糖尿病肾病 (DN) 从轻度进展到重度的时间很长。因此,需要持续抑制 DN 的方法,以通过表观遗传调控发挥持久作用。在这项研究中,我们证明了烟酰胺腺嘌呤二核苷酸 (NAD) 及其代谢物通过 Sirt1 或 Nampt 依赖性表观遗传调控减少白蛋白尿的能力。我们之前报道过,近端肾小管 Sirt1 在肾小球 Sirt1 之前降低。发现受抑制的肾小球 Sirt1 通过表观遗传方式上调 Claudin-1。此外,我们报道近端肾小管 Nampt 缺乏通过 Sirt6 介导的途径在表观遗传上增加 TIMP-1 水平,导致 IV 型胶原沉积和糖尿病纤维化。总之,我们提出 Sirt1/Claudin-1 轴可能在 DN 早期白蛋白尿的发生中至关重要,而 Nampt/Sirt6/TIMP-1 轴促进 DN 中晚期的糖尿病纤维化。最后,NMN(NAD 的前体)的给药通过表观遗传增强 DN 起始的消退,以维持足细胞中的 Sirt1 并抑制 Claudin-1,这表明 NAD 代谢物作为 DN 的表观遗传药物具有潜在用途。