足细胞
河马信号通路
垂直波分
基因敲除
细胞生物学
CTGF公司
SMAD公司
癌症研究
细胞标志蛋白
下调和上调
生物
上皮-间质转换
细胞凋亡
化学
信号转导
内分泌学
肾
生长因子
生物化学
受体
蛋白尿
视网膜
基因
脉络膜新生血管
作者
Chenyang Qi,Yuan Hu,Mingyao Zeng,Hongru Chen,Jiaoyu Shi,Hao Jue,Zhonghua Zhao,Jun Li,Zhigang Zhang,Yanyong Xu,Huijuan Wu
出处
期刊:Life Sciences
[Elsevier BV]
日期:2022-12-01
卷期号:311: 121186-121186
被引量:3
标识
DOI:10.1016/j.lfs.2022.121186
摘要
The dedifferentiation of tubular epithelial cells has been identified as an important trigger of renal fibrosis. The Hippo pathway is a crucial regulator of cell proliferation and differentiation. In this study, we determined the role of Hippo proteins in tubular dedifferentiation in diabetic nephropathy (DN).In this study, we measured dedifferentiation markers and Hippo proteins in db/db mice and high glucose treated tubular epithelial cells. Then, verteporfin and knockdown of large tumor suppressor kinase (LATS) 1 and 2 were performed to uncover therapeutic targets for DN.Here, we found dedifferentiation and upregulated Hippo proteins in tubular epithelial cells in DN model both in vivo and in vitro. Both verteporfin and LATS knockdown could inhibit the tubular mesenchymal transition, but verteporfin showed broad inhibitory effect on Hippo proteins, especially nuclear YAP, and exacerbated podocyte loss of DN. LATS2 knockdown did not reverse the tubular E-Cadherin loss while it also induced podocyte apoptosis. Overall, intervention of LATS1 inhibited tubular dedifferentiation efficiently without affecting YAP and bringing podocyte apoptosis. Further mechanistic investigations revealed that the TGF-β1/Smad, instead of the YAP-TEAD-CTGF signaling, might be the underlying pathway through which verteporfin and LATS1 engaged in the tubular dedifferentiation.In conclusion, verteporfin is not a suitable treatment for DN owing to evitable podocyte loss and apoptosis. Targeting LATS1 is a better choice worthy of further investigation for DN therapy.
科研通智能强力驱动
Strongly Powered by AbleSci AI