Telomerase as a “stemness” enzyme
Pluripotent or multipotent stem cells are involved in development and tissue homeostasis;they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties,stem cells must undergo sustained or unlimited proliferation that requires the stabiliza...
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Published in | Science China. Life sciences Vol. 57; no. 6; pp. 564 - 570 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Beijing
Science China Press
01.06.2014
Springer Nature B.V |
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Abstract | Pluripotent or multipotent stem cells are involved in development and tissue homeostasis;they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties,stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres,which are essential for chromosome end protection. Telomerase,an RNA-dependent DNA polymerase,synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended,or indefinite proliferation is conferred;this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications. |
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AbstractList | Pluripotent or multipotent stem cells are involved in development and tissue homeostasis;they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties,stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres,which are essential for chromosome end protection. Telomerase,an RNA-dependent DNA polymerase,synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended,or indefinite proliferation is conferred;this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications. Pluripotent or multipotent stem cells are involved in development and tissue homeostasis; they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties, stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres, which are essential for chromosome end protection. Telomerase, an RNA-dependent DNA polymerase, synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended, or indefinite proliferation is conferred; this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications. Pluripotent or multipotent stem cells are involved in development and tissue homeostasis; they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties, stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres, which are essential for chromosome end protection. Telomerase, an RNA-dependent DNA polymerase, synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended, or indefinite proliferation is conferred; this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications.Pluripotent or multipotent stem cells are involved in development and tissue homeostasis; they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties, stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres, which are essential for chromosome end protection. Telomerase, an RNA-dependent DNA polymerase, synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended, or indefinite proliferation is conferred; this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications. Issue Title: Special Topic: Stem cells and regenerative medicine (561-595) Pluripotent or multipotent stem cells are involved in development and tissue homeostasis; they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties, stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres, which are essential for chromosome end protection. Telomerase, an RNA-dependent DNA polymerase, synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended, or indefinite proliferation is conferred; this is intimately associated with stem cell phenotype. This review highlights our current understanding of Telomerase as a "stemness" enzyme and discusses the underlying implications.[PUBLICATION ABSTRACT] |
Author | KONG Feng ZHENG ChengYun XU DaWei |
AuthorAffiliation | Central Research Laboratory, the Second Hospital of Shandong University, Jinan 250033, China Department of Hematology, the Second Hospital of Shandong University, Jinan 250033, China Department of Medicine, Division of Hematology and Centre for Molecular Medicine, Karolinska lnstitutet and Karolinska University Hospital Solna, Stockholm, SE-171 76, Sweden |
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Notes | 11-5841/Q stem cells;telomerase;telomere;genomic stability;iPS cells;TERC;TERT Pluripotent or multipotent stem cells are involved in development and tissue homeostasis;they have the ability to self-renew and differentiate into various types of functional cells. To maintain these properties,stem cells must undergo sustained or unlimited proliferation that requires the stabilization of telomeres,which are essential for chromosome end protection. Telomerase,an RNA-dependent DNA polymerase,synthesizes telomeric DNA. Through the lengthening of telomeres the lifespans of cells are extended,or indefinite proliferation is conferred;this is intimately associated with stem cell phenotype. This review highlights our current understanding of telomerase as a "stemness" enzyme and discusses the underlying implications. SourceType-Scholarly Journals-1 ObjectType-Feature-1 content type line 14 ObjectType-Article-1 ObjectType-Feature-2 ObjectType-Review-3 content type line 23 |
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Snippet | Pluripotent or multipotent stem cells are involved in development and tissue homeostasis;they have the ability to self-renew and differentiate into various... Pluripotent or multipotent stem cells are involved in development and tissue homeostasis; they have the ability to self-renew and differentiate into various... Issue Title: Special Topic: Stem cells and regenerative medicine (561-595) Pluripotent or multipotent stem cells are involved in development and tissue... |
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SubjectTerms | Animals Biomedical and Life Sciences DNA聚合酶 Gene Expression Humans Induced Pluripotent Stem Cells - enzymology Life Sciences Neoplasms - enzymology Neoplasms - genetics Neoplastic Stem Cells - enzymology Protein Subunits Review Stem Cells - enzymology Telomerase - chemistry Telomerase - genetics Telomerase - physiology Telomere Homeostasis - genetics Telomere Homeostasis - physiology 寿命延长 干性 干细胞 端粒DNA 端粒酶 细胞表型 自我更新 |
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Title | Telomerase as a “stemness” enzyme |
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