| Literature DB >> 27389190 |
Zongshun Huang1,2, Li Zhang1, Yuanhan Chen1, Hong Zhang1, Chunping Yu1, Fangjian Zhou3,4, Zhiling Zhang3,4, Lijuan Jiang3,4, Ruizhao Li1, Jianchao Ma1, Zhuo Li1, Yuxiong Lai1, Ting Lin1, Xinchen Zhao1, Qianmei Zhang1, Bin Zhang1, Zhiming Ye1, Shuangxin Liu1, Wenjian Wang1, Xinling Liang1, Ruyi Liao1, Wei Shi5.
Abstract
BACKGROUND: Podocyte apoptosis is a major mechanism that leads to proteinuria in many kidney diseases. However, the concert mechanisms that cause podocyte apoptosis in these kidney diseases are not fully understood. RhoA is one of Rho GTPases that has been well studied and plays a key role in regulating cytoskeletal architecture. Previous study showed that insufficient RhoA could result in rat aortic smooth muscle cell apoptosis. However, whether RhoA is involved in podocyte apoptosis remains unknown.Entities:
Keywords: Apoptosis; Dendrin; RhoA; Stress fibers; YAP; mDia
Mesh:
Substances:
Year: 2016 PMID: 27389190 PMCID: PMC4936208 DOI: 10.1186/s12882-016-0287-6
Source DB: PubMed Journal: BMC Nephrol ISSN: 1471-2369 Impact factor: 2.388
Fig 1LPS or ADR induced podocyte apoptosis. a-d Podocytes were stained with Annexin V/PI for flow cytometry analysis. Cell apoptosis rate was significantly increased in LPS or ADR treated podocytes comparing to normal controls. e Bax mRNA expression was increased in LPS or ADR treated podocytes. f-g Bax protein expression was increased in LPS or ADR treated podocytes. Results were expressed as fold Bax of LPS or ADR group in relation to controls normalized to GAPDH. All data were from at least three independent experiments. * P < 0.05 vs controls
Fig 2RhoA expression and activity were decreased in LPS or ADR-injured podocytes. a RhoA mRNA expression was decreased in LPS or ADR-injured podocytes. b RhoA activity was decreased in LPS or ADR injured podocytes. Results were expressed as fold activity of LPS or ADR stimulated group in relation to non-stimulated controls normalized to total RhoA protein content. c-d Total RhoA protein expression was decreased in LPS or ADR-injured podocytes. All results were expressed as fold RhoA of LPS or ADR group in relation to controls normalized to GAPDH. Data were from at least three independent experiments. * P < 0.05 vs controls
Fig 3Loss of RhoA, mDia or YAP induced podocyte apoptosis. a-c Con and Con-siRNA were short for blank control and control siRNA respectively. RhoA and its downstream effector mDia and YAP protein expression was knockdown to 20 %, 31.7 % and 7.3 % respectively in siRNA treated podocytes. d-i Podocytes were stained with Annexin V/PI for flow cytometry analysis. Cell apoptosis rate was significantly increased in RhoA, mDia or YAP knockdown podocytes. j Bax mRNA expression was obviously increased in RhoA, mDia or YAP knockdown podocytes. k-l Bax protein expression was remarkably increased in RhoA, mDia or YAP knockdown podocytes. Results were expressed as fold Bax of RhoA-siRNA, mDia-RNA or YAP-siRNA group in relation to con-siRNA group normalized to GAPDH. There is no significant difference between control group and con-siRNA group. Data were from at least three independent experiments. * P < 0.05 vs con-siRNA group
Fig 4YAP expression was reduced in LPS or ADR-injured podocytes. a Confocal images of podocytes showing expression of YAP (green), Phalloidin-stained stress fiber (red) and DAPI-stained nuclei (blue). Compared to controls, nuclear and cytoplasmic YAP and stress fiber were reduced in LPS or ADR-injured podocytes. Scale bar = 50 μm. b & d WB results show that nuclear YAP protein expression was reduced in both LPS and ADR treated podocytes. c & e WB results show that total YAP protein expression was reduced in both LPS and ADR treated podocytes. All results were expressed as fold YAP of LPS or ADR group in relation to controls normalized to Histone or GAPDH. Data were from at least three independent experiments. * P < 0.05 vs controls
Fig 5YAP expression was reduced in RhoA or mDia knockdown podocytes. a Con and Con-siRNA were short for blank control and control siRNA respectively. Confocal images of podocytes showing expression of YAP (green), Phalloidin-stained stress fiber (red) and DAPI-stained nuclei (blue). Compared to con-siRNA, nuclear and cytoplasmic YAP and stress fiber were obviously reduced in RhoA-siRNA or mDia-RNA treated podocytes. Scale bar = 50 μm. b & d WB results show that nuclear YAP protein expression was reduced in RhoA-siRNA or mDia-RNA treated podocytes. c & e Total YAP protein expression was reduced in RhoA-siRNA or mDia-RNA treated podocytes. All results were expressed as fold YAP of RhoA-siRNA or mDia-RNA group in relation to con-siRNA group normalized to Histone or GAPDH. There is no significant difference between control group and con-siRNA group. Data were from at least three independent experiments. * P < 0.05 vs con-siRNA group
Fig 6Dendrin mediated RhoA/mDia/YAP deficiency-induced podocyte apoptosis. a Dendrin protein expression was knockdown to about 35 % in Den-siRNA treated podocytes. b-i Con-siRNA, Den&RhoA-siRNA, Den&mDia-siRNA, Den&YAP-siRNA were short for control siRNA, Dendrin-siRNA plus RhoA-siRNA, Dendrin-siRNA plus mDia-siRNA, Dendrin-siRNA plus YAP-siRNA respectively. Podocytes were stained with Annexin V/PI for flow cytometry analysis. Cell apoptosis rate was obviously increased in RhoA, mDia or YAP knockdown podocytes. Knocking down dendrin expression with siRNA significantly abolished RhoA, mDia or YAP deficiency-induced podocyte apoptosis. All data were from at least three independent experiments. * P < 0.05 vs con-siRNA group. # P < 0.05
Fig 7The proposed mechanism of RhoA deficiency-induced podocyte apoptosis. Black arrows indicate positive regulation, whereas red lines indicate negative regulation