ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte

Aim Podocyte injury plays an important role in diabetic nephropathy (DN), yet the underlying molecular mechanisms of podocyte injury in DN is not clear. Here, we investigated the role of activating transcription factor 4 (ATF4) and HO-1 in DN-induced podocyte injury. Methods Protein expression was m...

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Published in:Renal Failure
Main Authors: Shizhu Yuan, Xudong Liang, Wenfang He, Mingzhu Liang, Juan Jin, Qiang He
Format: Article
Language:English
Published: Taylor & Francis Group 2021-01-01
Subjects:
Online Access:http://dx.doi.org/10.1080/0886022X.2021.1936040
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author Shizhu Yuan
Xudong Liang
Wenfang He
Mingzhu Liang
Juan Jin
Qiang He
author_facet Shizhu Yuan
Xudong Liang
Wenfang He
Mingzhu Liang
Juan Jin
Qiang He
author_sort Shizhu Yuan
collection DOAJ
container_title Renal Failure
description Aim Podocyte injury plays an important role in diabetic nephropathy (DN), yet the underlying molecular mechanisms of podocyte injury in DN is not clear. Here, we investigated the role of activating transcription factor 4 (ATF4) and HO-1 in DN-induced podocyte injury. Methods Protein expression was measured by western blotting (WB) and immunofluorescence. Cellular apoptosis was quantified by flow cytometry. ATF4 siRNA knockdown and HO-1 overexpression in podocyte were employed to evaluate the role of ER stress in DN-induced apoptosis and autophagy response. Urinary protein levels, nephrin expression, serum creatinine and BUN were evaluated and glomerulosclerosis was quantified by Periodic Acid-Schiff staining. Results Expression of ATF4 was increased in podocytes exposed to serum from DN mice. ATF4 knockdown enhanced DN-induced podocyte apoptosis. HO-1 overexpression reduced the decline of DN-induced podocyte autophagy and inhibited apoptosis and the beneficial effects of HO-1 overexpression in DN were blocked by ATF4 knockdown. The diabetic mice were significantly ameliorated by HO-1 agonist hemin treatment. Conclusions ATF4 induces autophagy by enhancing the expression of HO-1, and inhibits podocyte apoptosis in DN. Treatment with the HO-1 agonist reduced proteinuria, apoptosis, and enhanced autophagy response, and thus improved renal function in DN mice.
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spelling doaj-art-fa4bc29289094e20b1bb16f23ef65f972025-08-19T19:53:16ZengTaylor & Francis GroupRenal Failure0886-022X1525-60492021-01-0143196897910.1080/0886022X.2021.19360401936040ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyteShizhu Yuan0Xudong Liang1Wenfang He2Mingzhu Liang3Juan Jin4Qiang He5The Second Clinical Medical College, Zhejiang Chinese Medical UniversityDepartment of Nephrology, People’s Hospital of Beilun DistrictDepartment of Nephrology, People’s Hospital of Hangzhou Medical College, Zhejiang Provincial People’s HospitalDepartment of Nephrology, People’s Hospital of Hangzhou Medical College, Zhejiang Provincial People’s HospitalDepartment of Nephrology, The First People’s Hospital of Hangzhou Lin'an District, Affiliated Lin'an People's Hospital, Hangzhou Medical CollegeDepartment of Nephrology, People’s Hospital of Hangzhou Medical College, Zhejiang Provincial People’s HospitalAim Podocyte injury plays an important role in diabetic nephropathy (DN), yet the underlying molecular mechanisms of podocyte injury in DN is not clear. Here, we investigated the role of activating transcription factor 4 (ATF4) and HO-1 in DN-induced podocyte injury. Methods Protein expression was measured by western blotting (WB) and immunofluorescence. Cellular apoptosis was quantified by flow cytometry. ATF4 siRNA knockdown and HO-1 overexpression in podocyte were employed to evaluate the role of ER stress in DN-induced apoptosis and autophagy response. Urinary protein levels, nephrin expression, serum creatinine and BUN were evaluated and glomerulosclerosis was quantified by Periodic Acid-Schiff staining. Results Expression of ATF4 was increased in podocytes exposed to serum from DN mice. ATF4 knockdown enhanced DN-induced podocyte apoptosis. HO-1 overexpression reduced the decline of DN-induced podocyte autophagy and inhibited apoptosis and the beneficial effects of HO-1 overexpression in DN were blocked by ATF4 knockdown. The diabetic mice were significantly ameliorated by HO-1 agonist hemin treatment. Conclusions ATF4 induces autophagy by enhancing the expression of HO-1, and inhibits podocyte apoptosis in DN. Treatment with the HO-1 agonist reduced proteinuria, apoptosis, and enhanced autophagy response, and thus improved renal function in DN mice.http://dx.doi.org/10.1080/0886022X.2021.1936040podocyteautophagyho-1atf4diabetic nephropathy
spellingShingle Shizhu Yuan
Xudong Liang
Wenfang He
Mingzhu Liang
Juan Jin
Qiang He
ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
podocyte
autophagy
ho-1
atf4
diabetic nephropathy
title ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
title_full ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
title_fullStr ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
title_full_unstemmed ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
title_short ATF4-dependent heme-oxygenase-1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
title_sort atf4 dependent heme oxygenase 1 attenuates diabetic nephropathy by inducing autophagy and inhibiting apoptosis in podocyte
topic podocyte
autophagy
ho-1
atf4
diabetic nephropathy
url http://dx.doi.org/10.1080/0886022X.2021.1936040
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AT xudongliang atf4dependenthemeoxygenase1attenuatesdiabeticnephropathybyinducingautophagyandinhibitingapoptosisinpodocyte
AT wenfanghe atf4dependenthemeoxygenase1attenuatesdiabeticnephropathybyinducingautophagyandinhibitingapoptosisinpodocyte
AT mingzhuliang atf4dependenthemeoxygenase1attenuatesdiabeticnephropathybyinducingautophagyandinhibitingapoptosisinpodocyte
AT juanjin atf4dependenthemeoxygenase1attenuatesdiabeticnephropathybyinducingautophagyandinhibitingapoptosisinpodocyte
AT qianghe atf4dependenthemeoxygenase1attenuatesdiabeticnephropathybyinducingautophagyandinhibitingapoptosisinpodocyte