Roles of prion proteins in mammalian development

Prion protein (PrP) is highly conserved and is expressed in most tissues in a developmental stage-specific manner. Glycosylated cellular prion protein (PrPC) is found in most cells and subcellular areas as a physiological regulating molecule. On the other hand, the amyloid form of PrPC, scrapie PrP...

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Published in:Animal Cells and Systems
Main Authors: Yong-Pil Cheon, Chongsuk Ryou, Željko M. Svedružić
Format: Article
Language:English
Published: Taylor & Francis Group 2024-12-01
Subjects:
Online Access:https://www.tandfonline.com/doi/10.1080/19768354.2024.2436860
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author Yong-Pil Cheon
Chongsuk Ryou
Željko M. Svedružić
author_facet Yong-Pil Cheon
Chongsuk Ryou
Željko M. Svedružić
author_sort Yong-Pil Cheon
collection DOAJ
container_title Animal Cells and Systems
description Prion protein (PrP) is highly conserved and is expressed in most tissues in a developmental stage-specific manner. Glycosylated cellular prion protein (PrPC) is found in most cells and subcellular areas as a physiological regulating molecule. On the other hand, the amyloid form of PrPC, scrapie PrP (PrPSC), causes transmissible pathogenesis in the central nervous system and induces degeneration of the nervous system. Although many amyloids are reversible and critical in determining the fate, differentiation, and physiological functions of cells, thus far, PrPSC originating from PrPC is not. Although many studies have focused on disorders involving PrPC and the deletion mammalian models for PrPC have no severe phenotype, it has been suggested that PrPC has a role in normal development. It is conserved and expressed from gametes to adult somatic cells. In addition, severe developmental phenotypes appear in PrP null zebrafish embryos and in various mammalian cell model systems. In addition, it has been well established that PrPC is strongly involved in the stemness and differentiation of embryonic stem cells and progenitors. Thus far, many studies on PrPC have focused mostly on disease-associated conditions with physiological roles as a complex platform but not on development. The known roles of PrPC depend on the interacting molecules through its flexible tail and domains. PrPC interacts with membrane, and various intracellular and extracellular molecules. In addition, PrPC and amyloid can stimulate signaling pathways differentially. In this review, we summarize the function of prion protein and discuss its role in development.
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spelling doaj-art-e3cb7edca1bc4c0190232cd782ff0f832025-08-20T02:16:33ZengTaylor & Francis GroupAnimal Cells and Systems1976-83542151-24852024-12-0128155156610.1080/19768354.2024.2436860Roles of prion proteins in mammalian developmentYong-Pil Cheon0Chongsuk Ryou1Željko M. Svedružić2Division of Developmental Biology and Physiology, Department of Biotechnology, Institute for Basic Sciences, Sungshin University, Seoul, KoreaDepartment of Pharmacy, College of Pharmacy, Hanyang University, ekcho Ansan, KoreaDepartment of Biotechnology, University of Rijeka, Rijeka, CroatiaPrion protein (PrP) is highly conserved and is expressed in most tissues in a developmental stage-specific manner. Glycosylated cellular prion protein (PrPC) is found in most cells and subcellular areas as a physiological regulating molecule. On the other hand, the amyloid form of PrPC, scrapie PrP (PrPSC), causes transmissible pathogenesis in the central nervous system and induces degeneration of the nervous system. Although many amyloids are reversible and critical in determining the fate, differentiation, and physiological functions of cells, thus far, PrPSC originating from PrPC is not. Although many studies have focused on disorders involving PrPC and the deletion mammalian models for PrPC have no severe phenotype, it has been suggested that PrPC has a role in normal development. It is conserved and expressed from gametes to adult somatic cells. In addition, severe developmental phenotypes appear in PrP null zebrafish embryos and in various mammalian cell model systems. In addition, it has been well established that PrPC is strongly involved in the stemness and differentiation of embryonic stem cells and progenitors. Thus far, many studies on PrPC have focused mostly on disease-associated conditions with physiological roles as a complex platform but not on development. The known roles of PrPC depend on the interacting molecules through its flexible tail and domains. PrPC interacts with membrane, and various intracellular and extracellular molecules. In addition, PrPC and amyloid can stimulate signaling pathways differentially. In this review, we summarize the function of prion protein and discuss its role in development.https://www.tandfonline.com/doi/10.1080/19768354.2024.2436860Cellular prion proteinphysiologyprionphysiologydevelopment
spellingShingle Yong-Pil Cheon
Chongsuk Ryou
Željko M. Svedružić
Roles of prion proteins in mammalian development
Cellular prion protein
physiology
prion
physiology
development
title Roles of prion proteins in mammalian development
title_full Roles of prion proteins in mammalian development
title_fullStr Roles of prion proteins in mammalian development
title_full_unstemmed Roles of prion proteins in mammalian development
title_short Roles of prion proteins in mammalian development
title_sort roles of prion proteins in mammalian development
topic Cellular prion protein
physiology
prion
physiology
development
url https://www.tandfonline.com/doi/10.1080/19768354.2024.2436860
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AT chongsukryou rolesofprionproteinsinmammaliandevelopment
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