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Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?

Regulated in Development and DNA Damage Response 1 (REDD1)/DNA Damage-Induced Transcript 4 (DDIT4) is an immediate early response gene activated by different stress conditions, including growth factor depletion, hypoxia, DNA damage, and stress hormones, i.e., glucocorticoids. The most known function...

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Autores principales: Zhidkova, Ekaterina M., Lylova, Evgeniya S., Grigoreva, Diana D., Kirsanov, Kirill I., Osipova, Alena V., Kulikov, Evgeny P., Mertsalov, Sergey A., Belitsky, Gennady A., Budunova, Irina, Yakubovskaya, Marianna G., Lesovaya, Ekaterina A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456073/
https://www.ncbi.nlm.nih.gov/pubmed/36077083
http://dx.doi.org/10.3390/ijms23179686
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author Zhidkova, Ekaterina M.
Lylova, Evgeniya S.
Grigoreva, Diana D.
Kirsanov, Kirill I.
Osipova, Alena V.
Kulikov, Evgeny P.
Mertsalov, Sergey A.
Belitsky, Gennady A.
Budunova, Irina
Yakubovskaya, Marianna G.
Lesovaya, Ekaterina A.
author_facet Zhidkova, Ekaterina M.
Lylova, Evgeniya S.
Grigoreva, Diana D.
Kirsanov, Kirill I.
Osipova, Alena V.
Kulikov, Evgeny P.
Mertsalov, Sergey A.
Belitsky, Gennady A.
Budunova, Irina
Yakubovskaya, Marianna G.
Lesovaya, Ekaterina A.
author_sort Zhidkova, Ekaterina M.
collection PubMed
description Regulated in Development and DNA Damage Response 1 (REDD1)/DNA Damage-Induced Transcript 4 (DDIT4) is an immediate early response gene activated by different stress conditions, including growth factor depletion, hypoxia, DNA damage, and stress hormones, i.e., glucocorticoids. The most known functions of REDD1 are the inhibition of proliferative signaling and the regulation of metabolism via the repression of the central regulator of these processes, the mammalian target of rapamycin (mTOR). The involvement of REDD1 in cell growth, apoptosis, metabolism, and oxidative stress implies its role in various pathological conditions, including cancer and inflammatory diseases. Recently, REDD1 was identified as one of the central genes mechanistically involved in undesirable atrophic effects induced by chronic topical and systemic glucocorticoids widely used for the treatment of blood cancer and inflammatory diseases. In this review, we discuss the role of REDD1 in the regulation of cell signaling and processes in normal and cancer cells, its involvement in the pathogenesis of different diseases, and the approach to safer glucocorticoid receptor (GR)-targeted therapies via a combination of glucocorticoids and REDD1 inhibitors to decrease the adverse atrophogenic effects of these steroids.
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spelling pubmed-94560732022-09-09 Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe? Zhidkova, Ekaterina M. Lylova, Evgeniya S. Grigoreva, Diana D. Kirsanov, Kirill I. Osipova, Alena V. Kulikov, Evgeny P. Mertsalov, Sergey A. Belitsky, Gennady A. Budunova, Irina Yakubovskaya, Marianna G. Lesovaya, Ekaterina A. Int J Mol Sci Review Regulated in Development and DNA Damage Response 1 (REDD1)/DNA Damage-Induced Transcript 4 (DDIT4) is an immediate early response gene activated by different stress conditions, including growth factor depletion, hypoxia, DNA damage, and stress hormones, i.e., glucocorticoids. The most known functions of REDD1 are the inhibition of proliferative signaling and the regulation of metabolism via the repression of the central regulator of these processes, the mammalian target of rapamycin (mTOR). The involvement of REDD1 in cell growth, apoptosis, metabolism, and oxidative stress implies its role in various pathological conditions, including cancer and inflammatory diseases. Recently, REDD1 was identified as one of the central genes mechanistically involved in undesirable atrophic effects induced by chronic topical and systemic glucocorticoids widely used for the treatment of blood cancer and inflammatory diseases. In this review, we discuss the role of REDD1 in the regulation of cell signaling and processes in normal and cancer cells, its involvement in the pathogenesis of different diseases, and the approach to safer glucocorticoid receptor (GR)-targeted therapies via a combination of glucocorticoids and REDD1 inhibitors to decrease the adverse atrophogenic effects of these steroids. MDPI 2022-08-26 /pmc/articles/PMC9456073/ /pubmed/36077083 http://dx.doi.org/10.3390/ijms23179686 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Zhidkova, Ekaterina M.
Lylova, Evgeniya S.
Grigoreva, Diana D.
Kirsanov, Kirill I.
Osipova, Alena V.
Kulikov, Evgeny P.
Mertsalov, Sergey A.
Belitsky, Gennady A.
Budunova, Irina
Yakubovskaya, Marianna G.
Lesovaya, Ekaterina A.
Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title_full Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title_fullStr Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title_full_unstemmed Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title_short Nutritional Sensor REDD1 in Cancer and Inflammation: Friend or Foe?
title_sort nutritional sensor redd1 in cancer and inflammation: friend or foe?
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9456073/
https://www.ncbi.nlm.nih.gov/pubmed/36077083
http://dx.doi.org/10.3390/ijms23179686
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