Tubular cells produce FGF2 via autophagy after acute kidney injury leading to fibroblast activation and renal fibrosis

被引:138
作者
Livingston, Man J. [1 ,2 ]
Shu, Shaoqun [3 ]
Fan, Ying [4 ]
Li, Ze [4 ]
Jiao, Qiong [5 ]
Yin, Xiao-Ming [6 ]
Venkatachalam, Manjeri A. [7 ]
Dong, Zheng [1 ,2 ]
机构
[1] Augusta Univ, Med Coll Georgia, Dept Cellular Biol & Anat, 1460 Laney Walker Blvd, Augusta, GA 30912 USA
[2] Charlie Norwood VA Med Ctr, Res Dept, Augusta, GA USA
[3] Cent South Univ, Xiangya Hosp 2, Dept Nephrol, Changsha, Hunan, Peoples R China
[4] Shanghai Jiao Tong Univ, Dept Nephrol, Affiliated Peoples Hosp Shanghai 6, Shanghai, Peoples R China
[5] Shanghai Jiao Tong Univ, Dept Pathol, Affiliated Peoples Hosp 6, Shanghai, Peoples R China
[6] Tulane Univ, Dept Pathol & Lab Med, Sch Med, New Orleans, LA USA
[7] Univ Texas Hlth Sci Ctr, Dept Pathol, San Antonio, TX USA
基金
美国国家卫生研究院;
关键词
Autophagy; FGF2; interstitial fibrosis; kidney repair; proximal tubule; renal ischemia-reperfusion; PROXIMAL TUBULE; INTERSTITIAL FIBROSIS; DISEASE; DIFFERENTIATION; REPAIR; PATHOPHYSIOLOGY; INHIBITION; EXPRESSION; SECRETION; PROTECTS;
D O I
10.1080/15548627.2022.2072054
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Following acute kidney injury (AKI), renal tubular cells may stimulate fibroblasts in a paracrine fashion leading to interstitial fibrosis, but the paracrine factors and their regulation under this condition remain elusive. Here we identify a macroautophagy/autophagy-dependent FGF2 (fibroblast growth factor 2) production in tubular cells. Upon induction, FGF2 acts as a key paracrine factor to activate fibroblasts for renal fibrosis. After ischemic AKI in mice, autophagy activation persisted for weeks in renal tubular cells. In inducible, renal tubule-specific atg7 (autophagy related 7) knockout (iRT-atg7-KO) mice, autophagy deficiency induced after AKI suppressed the pro-fibrotic phenotype in tubular cells and reduced fibrosis. Among the major cytokines, tubular autophagy deficiency in iRT-atg7-KO mice specifically diminished FGF2. Autophagy inhibition also attenuated FGF2 expression in TGFB1/TGF-beta 1 (transforming growth factor, beta 1)-treated renal tubular cells. Consistent with a paracrine action, the culture medium of TGFB1-treated tubular cells stimulated renal fibroblasts, and this effect was suppressed by FGF2 neutralizing antibody and also by fgf2- or atg7-deletion in tubular cells. In human, compared with non-AKI, the renal biopsies from post-AKI patients had higher levels of autophagy and FGF2 in tubular cells, which showed significant correlations with renal fibrosis. These results indicate that persistent autophagy after AKI induces pro-fibrotic phenotype transformation in tubular cells leading to the expression and secretion of FGF2, which activates fibroblasts for renal fibrosis during maladaptive kidney repair.
引用
收藏
页码:256 / 277
页数:22
相关论文
共 65 条
[31]   Impairment of starvation-induced and constitutive autophagy in Atg7-deficient mice [J].
Komatsu, M ;
Waguri, S ;
Ueno, T ;
Iwata, J ;
Murata, S ;
Tanida, I ;
Ezaki, J ;
Mizushima, N ;
Ohsumi, Y ;
Uchiyama, Y ;
Kominami, E ;
Tanaka, K ;
Chiba, T .
JOURNAL OF CELL BIOLOGY, 2005, 169 (03) :425-434
[32]   Cellular and molecular pathways of renal repair after acute kidney injury [J].
Kumar, Sanjeev .
KIDNEY INTERNATIONAL, 2018, 93 (01) :27-40
[33]   Mitochondrial Pathology and Glycolytic Shift during Proximal Tubule Atrophy after Ischemic AKI [J].
Lan, Rongpei ;
Geng, Hui ;
Singha, Prajjal K. ;
Saikumar, Pothana ;
Bottinger, Erwin P. ;
Weinberg, Joel M. ;
Venkatachalam, Manjeri A. .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2016, 27 (11) :3356-3367
[34]   PTEN loss defines a TGF-β-induced tubule phenotype of failed differentiation and JNK signaling during renal fibrosis [J].
Lan, Rongpei ;
Geng, Hui ;
Polichnowski, Aaron J. ;
Singha, Prajjal K. ;
Saikumar, Pothana ;
McEwen, Donald G. ;
Griffin, Karen A. ;
Koesters, Robert ;
Weinberg, Joel M. ;
Bidani, Anil K. ;
Kriz, Wilhelm ;
Venkatachalam, Manjeri A. .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2012, 302 (09) :F1210-F1223
[35]   The LC3-conjugation machinery specifies the loading of RNA-binding proteins into extracellular vesicles [J].
Leidal, Andrew M. ;
Huang, Hector H. ;
Marsh, Timothy ;
Solvik, Tina ;
Zhang, Dachuan ;
Ye, Jordan ;
Kai, FuiBoon ;
Goldsmith, Juliet ;
Liu, Jennifer Y. ;
Huang, Yu-Hsin ;
Monkkonen, Teresa ;
Vlahakis, Ariadne ;
Huang, Eric J. ;
Goodarzi, Hani ;
Yu, Li ;
Wiita, Arun P. ;
Debnath, Jayanta .
NATURE CELL BIOLOGY, 2020, 22 (02) :187-+
[36]   Atg5-mediated autophagy deficiency in proximal tubules promotes cell cycle G2/M arrest and renal fibrosis [J].
Li, Huiyan ;
Peng, Xuan ;
Wang, Yating ;
Cao, Shirong ;
Xiong, Liping ;
Fan, Jinjin ;
Wang, Yihan ;
Zhuang, Shougang ;
Yu, Xueqing ;
Mao, Haiping .
AUTOPHAGY, 2016, 12 (09) :1472-1486
[37]   FoxO3 activation in hypoxic tubules prevents chronic kidney disease [J].
Li, Ling ;
Kang, Huimin ;
Zhang, Qing ;
D'Agati, Vivette D. ;
Al-Awqati, Qais ;
Lin, Fangming .
JOURNAL OF CLINICAL INVESTIGATION, 2019, 129 (06) :2374-2389
[38]   New Autophagy Reporter Mice Reveal Dynamics of Proximal Tubular Autophagy [J].
Li, Ling ;
Wang, Zhao V. ;
Hill, Joseph A. ;
Lin, Fangming .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2014, 25 (02) :305-315
[39]   Renal tubule injury: a driving force toward chronic kidney disease [J].
Liu, Bi-Cheng ;
Tang, Tao-Tao ;
Lv, Lin-Li ;
Lan, Hui-Yao .
KIDNEY INTERNATIONAL, 2018, 93 (03) :568-579
[40]   Autophagy plays a critical role in kidney tubule maintenance, aging and ischemia-reperfusion injury [J].
Liu, Shuya ;
Hartleben, Bjoern ;
Kretz, Oliver ;
Wiech, Thorsten ;
Igarashi, Peter ;
Mizushima, Noboru ;
Walz, Gerd ;
Huber, Tobias B. .
AUTOPHAGY, 2012, 8 (05) :826-837