A master of all trades – linking retinoids to different signalling pathways through the multi-purpose receptor STRA6

Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis and vision. From ingestion to metabolism and the subsequent cellular effects, retinoid levels are tightly regulated in the organism to preve...

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Published inCell death discovery Vol. 7; no. 1; pp. 1 - 8
Main Authors Dhokia, Vinesh, Macip, Salvador
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 16.11.2021
Springer Nature B.V
Nature Publishing Group
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Abstract Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis and vision. From ingestion to metabolism and the subsequent cellular effects, retinoid levels are tightly regulated in the organism to prevent toxicity. One component of this network, the membrane receptor STRA6, has been shown to be essential in facilitating the cellular entry and exit of retinol. However, recent data suggests that STRA6 may not function merely as a retinoid transporter but also act as a complex signalling hub in its own right, being able to affect cell fate through the integration of retinoid signalling with other key pathways, such as those involving p53, JAK/STAT, Wnt/β catenin and calcium. This may open new therapeutic strategies in diseases like cancer, where these pathways are often compromised. Here, we look at the growing evidence regarding the novel roles of STRA6 beyond its well characterized classic functions.
AbstractList Abstract Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis and vision. From ingestion to metabolism and the subsequent cellular effects, retinoid levels are tightly regulated in the organism to prevent toxicity. One component of this network, the membrane receptor STRA6, has been shown to be essential in facilitating the cellular entry and exit of retinol. However, recent data suggests that STRA6 may not function merely as a retinoid transporter but also act as a complex signalling hub in its own right, being able to affect cell fate through the integration of retinoid signalling with other key pathways, such as those involving p53, JAK/STAT, Wnt/β catenin and calcium. This may open new therapeutic strategies in diseases like cancer, where these pathways are often compromised. Here, we look at the growing evidence regarding the novel roles of STRA6 beyond its well characterized classic functions.
Abstract Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis and vision. From ingestion to metabolism and the subsequent cellular effects, retinoid levels are tightly regulated in the organism to prevent toxicity. One component of this network, the membrane receptor STRA6, has been shown to be essential in facilitating the cellular entry and exit of retinol. However, recent data suggests that STRA6 may not function merely as a retinoid transporter but also act as a complex signalling hub in its own right, being able to affect cell fate through the integration of retinoid signalling with other key pathways, such as those involving p53, JAK/STAT, Wnt/β catenin and calcium. This may open new therapeutic strategies in diseases like cancer, where these pathways are often compromised. Here, we look at the growing evidence regarding the novel roles of STRA6 beyond its well characterized classic functions.
Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis and vision. From ingestion to metabolism and the subsequent cellular effects, retinoid levels are tightly regulated in the organism to prevent toxicity. One component of this network, the membrane receptor STRA6, has been shown to be essential in facilitating the cellular entry and exit of retinol. However, recent data suggests that STRA6 may not function merely as a retinoid transporter but also act as a complex signalling hub in its own right, being able to affect cell fate through the integration of retinoid signalling with other key pathways, such as those involving p53, JAK/STAT, Wnt/β catenin and calcium. This may open new therapeutic strategies in diseases like cancer, where these pathways are often compromised. Here, we look at the growing evidence regarding the novel roles of STRA6 beyond its well characterized classic functions.
ArticleNumber 358
Author Dhokia, Vinesh
Macip, Salvador
Author_xml – sequence: 1
  givenname: Vinesh
  surname: Dhokia
  fullname: Dhokia, Vinesh
  organization: Mechanisms of Cancer and Aging Laboratory, Department of Molecular and Cell Biology, University of Leicester
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  givenname: Salvador
  orcidid: 0000-0003-1963-8840
  surname: Macip
  fullname: Macip, Salvador
  email: sm460@le.ac.uk
  organization: Mechanisms of Cancer and Aging Laboratory, Department of Molecular and Cell Biology, University of Leicester, FoodLab, Faculty of Health Sciences, Universitat Oberta de Catalunya
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SSID ssj0001574783
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Snippet Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including embryogenesis...
Abstract Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including...
Abstract Retinoids are a group of vitamin A-related chemicals that are essential to chordate mammals. They regulate a number of basic processes, including...
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SubjectTerms 631/67/1059/602
631/80/509
631/80/86/1999
631/80/86/388
631/80/86/820
Acids
Apoptosis
Biochemistry
Biomedical and Life Sciences
Cancer
Cell Biology
Cell Cycle Analysis
Cell fate
Dehydrogenases
Embryogenesis
Life Sciences
Ligands
Liver
Metabolism
Metabolites
Nobel prizes
Proteins
Retinoids
Review
Review Article
Signal transduction
Stem Cells
Toxicity
Vitamin A
Wnt protein
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Title A master of all trades – linking retinoids to different signalling pathways through the multi-purpose receptor STRA6
URI https://link.springer.com/article/10.1038/s41420-021-00754-z
https://www.proquest.com/docview/2597935887
https://pubmed.ncbi.nlm.nih.gov/PMC8595884
https://doaj.org/article/fbd0826fab0c4e14846d06a65b526d2d
Volume 7
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