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甲状腺中的Keap1/Nrf2信号通路——2020年更新版

The Keap1/Nrf2 Signaling Pathway in the Thyroid-2020 Update.

作者信息

Thanas Christina, Ziros Panos G, Chartoumpekis Dionysios V, Renaud Cédric O, Sykiotis Gerasimos P

机构信息

Service of Endocrinology, Diabetology and Metabolism, Lausanne University Hospital and University of Lausanne, CH-1011 Lausanne, Switzerland.

Division of Endocrinology, Department of Internal Medicine, School of Medicine, University of Patras, GR-26500 Patras, Greece.

出版信息

Antioxidants (Basel). 2020 Nov 4;9(11):1082. doi: 10.3390/antiox9111082.


DOI:10.3390/antiox9111082
PMID:33158045
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7693470/
Abstract

The thyroid gland has a special relationship with oxidative stress. On the one hand, like all other tissues, it must defend itself against reactive oxygen species (ROS). On the other hand, unlike most other tissues, it must also produce reactive oxygen species in order to synthesize its hormones that contribute to the homeostasis of other tissues. The thyroid must therefore also rely on antioxidant defense systems to maintain its own homeostasis in the face of continuous self-exposure to ROS. One of the main endogenous antioxidant systems is the pathway centered on the transcription factor Nuclear factor erythroid 2-related factor 2 (Nrf2) and its cytoplasmic inhibitor Kelch-like ECH-associated protein 1 (Keap1). Over the last few years, multiple links have emerged between the Keap1/Nrf2 pathway and thyroid physiology, as well as various thyroid pathologies, including autoimmunity, goiter, hypothyroidism, hyperthyroidism, and cancer. In the present mini-review, we summarize recent studies shedding new light into the roles of Keap1/Nrf2 signaling in the thyroid.

摘要

甲状腺与氧化应激有着特殊的关系。一方面,与所有其他组织一样,它必须抵御活性氧(ROS)。另一方面,与大多数其他组织不同,它还必须产生活性氧,以便合成有助于其他组织稳态的激素。因此,面对持续的自身ROS暴露,甲状腺也必须依靠抗氧化防御系统来维持自身的稳态。主要的内源性抗氧化系统之一是以转录因子核因子红细胞2相关因子2(Nrf2)及其细胞质抑制剂 Kelch样ECH相关蛋白1(Keap1)为中心的途径。在过去几年中,Keap1/Nrf2途径与甲状腺生理学以及各种甲状腺疾病(包括自身免疫、甲状腺肿、甲状腺功能减退、甲状腺功能亢进和癌症)之间出现了多种联系。在本综述中,我们总结了最近的研究,这些研究为Keap1/Nrf2信号在甲状腺中的作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d0f/7693470/b96db647aa1a/antioxidants-09-01082-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d0f/7693470/78d94f9a67a4/antioxidants-09-01082-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d0f/7693470/b96db647aa1a/antioxidants-09-01082-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d0f/7693470/78d94f9a67a4/antioxidants-09-01082-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d0f/7693470/b96db647aa1a/antioxidants-09-01082-g002.jpg

相似文献

[1]
The Keap1/Nrf2 Signaling Pathway in the Thyroid-2020 Update.

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[2]
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[3]
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[4]
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[5]
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[6]
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[7]
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[7]
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[8]
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本文引用的文献

[1]
The Transcriptomic Response of the Murine Thyroid Gland to Iodide Overload and the Role of the Nrf2 Antioxidant System.

Antioxidants (Basel). 2020-9-18

[2]
and Gene Expression and Regulation by MicroRNAs in Thyroid Papillary Cancer and Colloid Goiter.

Genes (Basel). 2020-8-19

[3]
Hashimoto's thyroiditis: An update on pathogenic mechanisms, diagnostic protocols, therapeutic strategies, and potential malignant transformation.

Autoimmun Rev. 2020-8-15

[4]
Mice Hypomorphic for , a Negative Regulator of the Nrf2 Antioxidant Response, Show Age-Dependent Diffuse Goiter with Elevated Thyrotropin Levels.

Thyroid. 2021-1

[5]
Quercetin alleviates hyperthyroidism-induced liver damage via Nrf2 Signaling pathway.

Biofactors. 2020-7

[6]
New insights into the pathogenesis and nonsurgical management of Graves orbitopathy.

Nat Rev Endocrinol. 2019-12-30

[7]
Role of diets and exercise in ameliorating obesity-related hepatic steatosis: Insights at the microRNA-dependent thyroid hormone synthesis and action.

Life Sci. 2019-12-18

[8]
Next-generation sequencing identified somatic alterations that may underlie the etiology of Chinese papillary thyroid carcinoma.

Eur J Cancer Prev. 2023-5-1

[9]
Polydatin attenuates orbital oxidative stress in Graves' orbitopathy through the NRF2 pathway.

Chem Biol Interact. 2019-11-6

[10]
LncRNA LUCAT1 as a novel prognostic biomarker for patients with papillary thyroid cancer.

Sci Rep. 2019-10-7

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