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Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction

Menopause and associated renal complications are linked to systemic redox stress, and the causal factors remain unclear. As the role of Hypericum perforatum L. (HPL) in menopause-induced kidney disease therapy is still ambiguous, we aim to explore the effects of HPL on systemic redox stress under ov...

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Autores principales: Liu, Yan-Ru, Yang, Ning-Juan, Zhao, Meng-Li, Tang, Zhi-Shu, Duan, Jin-Ao, Zhou, Rui, Chen, Lin, Sun, Jing, Song, Zhong-Xing, Hu, Jin-Hang, Shi, Xin-Bo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8109178/
https://www.ncbi.nlm.nih.gov/pubmed/33981220
http://dx.doi.org/10.3389/fphar.2021.628651
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author Liu, Yan-Ru
Yang, Ning-Juan
Zhao, Meng-Li
Tang, Zhi-Shu
Duan, Jin-Ao
Zhou, Rui
Chen, Lin
Sun, Jing
Song, Zhong-Xing
Hu, Jin-Hang
Shi, Xin-Bo
author_facet Liu, Yan-Ru
Yang, Ning-Juan
Zhao, Meng-Li
Tang, Zhi-Shu
Duan, Jin-Ao
Zhou, Rui
Chen, Lin
Sun, Jing
Song, Zhong-Xing
Hu, Jin-Hang
Shi, Xin-Bo
author_sort Liu, Yan-Ru
collection PubMed
description Menopause and associated renal complications are linked to systemic redox stress, and the causal factors remain unclear. As the role of Hypericum perforatum L. (HPL) in menopause-induced kidney disease therapy is still ambiguous, we aim to explore the effects of HPL on systemic redox stress under ovariectomy (OVX)-induced kidney dysfunction conditions. Here, using combined proteomic and metabolomic approaches, we constructed a multi-scaled “HPL-disease-gene-metabolite” network to generate a therapeutic “big picture” that indicated an important link between glutathione redox stress and kidney impairment. HPL exhibited the potential to maintain cellular redox homeostasis by inhibiting gamma-glutamyltransferase 1 (Ggt1) overexpression, along with promoting the efflux of accumulated toxic amino acids and their metabolites. Moreover, HPL restored alanyl-aminopeptidase (Anpep) expression and metabolite shifts, promoting antioxidative metabolite processing, and recovery. These findings provide a comprehensive description of OVX-induced glutathione redox stress at multiple levels and support HPL therapy as an effective modulator in renal tissues to locally influence the glutathione metabolism pathway and subsequent redox homeostasis.
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spelling pubmed-81091782021-05-11 Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction Liu, Yan-Ru Yang, Ning-Juan Zhao, Meng-Li Tang, Zhi-Shu Duan, Jin-Ao Zhou, Rui Chen, Lin Sun, Jing Song, Zhong-Xing Hu, Jin-Hang Shi, Xin-Bo Front Pharmacol Pharmacology Menopause and associated renal complications are linked to systemic redox stress, and the causal factors remain unclear. As the role of Hypericum perforatum L. (HPL) in menopause-induced kidney disease therapy is still ambiguous, we aim to explore the effects of HPL on systemic redox stress under ovariectomy (OVX)-induced kidney dysfunction conditions. Here, using combined proteomic and metabolomic approaches, we constructed a multi-scaled “HPL-disease-gene-metabolite” network to generate a therapeutic “big picture” that indicated an important link between glutathione redox stress and kidney impairment. HPL exhibited the potential to maintain cellular redox homeostasis by inhibiting gamma-glutamyltransferase 1 (Ggt1) overexpression, along with promoting the efflux of accumulated toxic amino acids and their metabolites. Moreover, HPL restored alanyl-aminopeptidase (Anpep) expression and metabolite shifts, promoting antioxidative metabolite processing, and recovery. These findings provide a comprehensive description of OVX-induced glutathione redox stress at multiple levels and support HPL therapy as an effective modulator in renal tissues to locally influence the glutathione metabolism pathway and subsequent redox homeostasis. Frontiers Media S.A. 2021-04-26 /pmc/articles/PMC8109178/ /pubmed/33981220 http://dx.doi.org/10.3389/fphar.2021.628651 Text en Copyright © 2021 Liu, Yang, Zhao, Tang, Duan, Zhou, Chen, Sun, Song, Hu and Shi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Pharmacology
Liu, Yan-Ru
Yang, Ning-Juan
Zhao, Meng-Li
Tang, Zhi-Shu
Duan, Jin-Ao
Zhou, Rui
Chen, Lin
Sun, Jing
Song, Zhong-Xing
Hu, Jin-Hang
Shi, Xin-Bo
Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title_full Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title_fullStr Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title_full_unstemmed Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title_short Hypericum perforatum L. Regulates Glutathione Redox Stress and Normalizes Ggt1/Anpep Signaling to Alleviate OVX-Induced Kidney Dysfunction
title_sort hypericum perforatum l. regulates glutathione redox stress and normalizes ggt1/anpep signaling to alleviate ovx-induced kidney dysfunction
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8109178/
https://www.ncbi.nlm.nih.gov/pubmed/33981220
http://dx.doi.org/10.3389/fphar.2021.628651
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