Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression

Persistent diabetic complications despite controlled blood glucose levels, known as hyperglycemic memory, remain a poorly understood phenomenon in diabetic kidney disease. Here the authors identify senescence-associated gene p21 as a regulator of hyperglycemic memory, the suppression of which improv...

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Main Authors: Moh’d Mohanad Al-Dabet, Khurrum Shahzad, Ahmed Elwakiel, Alba Sulaj, Stefan Kopf, Fabian Bock, Ihsan Gadi, Silke Zimmermann, Rajiv Rana, Shruthi Krishnan, Dheerendra Gupta, Jayakumar Manoharan, Sameen Fatima, Sumra Nazir, Constantin Schwab, Ronny Baber, Markus Scholz, Robert Geffers, Peter Rene Mertens, Peter P. Nawroth, John H. Griffin, Maria Keller, Chris Dockendorff, Shrey Kohli, Berend Isermann
Format: Article
Language:English
Published: Nature Portfolio 2022-08-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-022-32477-9
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author Moh’d Mohanad Al-Dabet
Khurrum Shahzad
Ahmed Elwakiel
Alba Sulaj
Stefan Kopf
Fabian Bock
Ihsan Gadi
Silke Zimmermann
Rajiv Rana
Shruthi Krishnan
Dheerendra Gupta
Jayakumar Manoharan
Sameen Fatima
Sumra Nazir
Constantin Schwab
Ronny Baber
Markus Scholz
Robert Geffers
Peter Rene Mertens
Peter P. Nawroth
John H. Griffin
Maria Keller
Chris Dockendorff
Shrey Kohli
Berend Isermann
author_facet Moh’d Mohanad Al-Dabet
Khurrum Shahzad
Ahmed Elwakiel
Alba Sulaj
Stefan Kopf
Fabian Bock
Ihsan Gadi
Silke Zimmermann
Rajiv Rana
Shruthi Krishnan
Dheerendra Gupta
Jayakumar Manoharan
Sameen Fatima
Sumra Nazir
Constantin Schwab
Ronny Baber
Markus Scholz
Robert Geffers
Peter Rene Mertens
Peter P. Nawroth
John H. Griffin
Maria Keller
Chris Dockendorff
Shrey Kohli
Berend Isermann
author_sort Moh’d Mohanad Al-Dabet
collection DOAJ
description Persistent diabetic complications despite controlled blood glucose levels, known as hyperglycemic memory, remain a poorly understood phenomenon in diabetic kidney disease. Here the authors identify senescence-associated gene p21 as a regulator of hyperglycemic memory, the suppression of which improves hyperglycemic memory and renal function.
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spelling doaj.art-e0c24968fbe44886ac4eb5d91d955ed82022-12-22T04:18:56ZengNature PortfolioNature Communications2041-17232022-08-0113111710.1038/s41467-022-32477-9Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expressionMoh’d Mohanad Al-Dabet0Khurrum Shahzad1Ahmed Elwakiel2Alba Sulaj3Stefan Kopf4Fabian Bock5Ihsan Gadi6Silke Zimmermann7Rajiv Rana8Shruthi Krishnan9Dheerendra Gupta10Jayakumar Manoharan11Sameen Fatima12Sumra Nazir13Constantin Schwab14Ronny Baber15Markus Scholz16Robert Geffers17Peter Rene Mertens18Peter P. Nawroth19John H. Griffin20Maria Keller21Chris Dockendorff22Shrey Kohli23Berend Isermann24Institute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInternal Medicine I and Clinical Chemistry, German Diabetes Center (DZD), University of HeidelbergInternal Medicine I and Clinical Chemistry, German Diabetes Center (DZD), University of HeidelbergInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Pathology, University of HeidelbergInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute for Medical Informatics, Statistics and Epidemiology, Leipzig UniversityGenome Analytics, Helmholtz Centre for Infection ResearchClinic of Nephrology and Hypertension, Diabetes and Endocrinology, Otto-von-Guericke UniversityInternal Medicine I and Clinical Chemistry, German Diabetes Center (DZD), University of HeidelbergDepartment of Molecular Medicine, The Scripps Research InstituteHelmholtz Institute for Metabolic, Obesity and Vascular Research (HI-MAG) of the Helmholtz Center Munich at the University of Leipzig and University Hospital LeipzigDepartment of Chemistry, Marquette UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityInstitute of Laboratory Medicine, Clinical Chemistry and Molecular Diagnostics, Universitätsklinikum Leipzig, Leipzig UniversityPersistent diabetic complications despite controlled blood glucose levels, known as hyperglycemic memory, remain a poorly understood phenomenon in diabetic kidney disease. Here the authors identify senescence-associated gene p21 as a regulator of hyperglycemic memory, the suppression of which improves hyperglycemic memory and renal function.https://doi.org/10.1038/s41467-022-32477-9
spellingShingle Moh’d Mohanad Al-Dabet
Khurrum Shahzad
Ahmed Elwakiel
Alba Sulaj
Stefan Kopf
Fabian Bock
Ihsan Gadi
Silke Zimmermann
Rajiv Rana
Shruthi Krishnan
Dheerendra Gupta
Jayakumar Manoharan
Sameen Fatima
Sumra Nazir
Constantin Schwab
Ronny Baber
Markus Scholz
Robert Geffers
Peter Rene Mertens
Peter P. Nawroth
John H. Griffin
Maria Keller
Chris Dockendorff
Shrey Kohli
Berend Isermann
Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
Nature Communications
title Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
title_full Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
title_fullStr Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
title_full_unstemmed Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
title_short Reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
title_sort reversal of the renal hyperglycemic memory in diabetic kidney disease by targeting sustained tubular p21 expression
url https://doi.org/10.1038/s41467-022-32477-9
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