Key Points α Klotho as an antiaging protein can extend the lifespan of healthy animals; serum α Klotho was lower in patients with autosomal dominant polycystic kidney disease. Transgenic α Klotho and recombinant α Klotho delayed cyst growth in Pkd1 mutant mouse kidneys. α Klotho exerted its proapoptotic and anti-inflammatory function through interacting with and destabilizing cellular inhibitor of apoptosis protein 1. Background α -Klotho ( α Klotho) is expressed mainly in the kidney, which is encoded by the KL gene, existing in a membrane-bound form and a soluble circulating form. Soluble serum α Klotho was lower in patients with autosomal dominant polycystic kidney disease (ADPKD). However, the role of α Klotho in ADPKD remains unknown. Methods To investigate the roles of α Klotho in ADPKD, we generated transgenic α Klotho and Pkd1 mutant Pkd1-HOMO-KL Tg mice to evaluate cyst growth and investigated underlying mechanisms with single-cell RNA sequencing analysis. Results We showed that α Klotho was lower in diverse kidney cell types in Pkd1 mutant kidneys, which was restored by transgenic α Klotho. We identified differential expression genes and pathways mediated by transgenic α Klotho at single-cell resolution and determined the cytokines and their receptors mediated cell-to-cell communication networks in Pkd1 mutant and Pkd1-HOMO-KL Tg kidneys by CellChat analysis. We further showed that α Klotho exerted a proapoptotic and anti-inflammatory function through interacting with and destabilizing cellular inhibitor of apoptosis protein 1, which disturbed TNF and its receptor mediated prosurvival complex, leading to ( 1 ) the formation of predeath complex to increase cystic cell death and ( 2 ) the decrease of the activation of NF-κB, the expression of cytokines, and the recruitment of macrophages, resulting in a delay of cyst growth. Treatment with recombinant α Klotho also delayed cyst growth in Pkd1 mutant kidneys. Conclusions This study defined an unknown role and mechanism of α Klotho in the regulation of a TNF-dependent cystic cell apoptosis and inflammation in Pkd1 mutant kidneys.
Li et al. (Wed,) studied this question.