RNA-binding protein nucleolin in disease

Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in several aspects of DNA metabolism, and participates extensively in RNA regulatory mechanisms, including transcription, ribosome assembly, mRN...

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Vydané v:RNA biology Ročník 9; číslo 6; s. 799 - 808
Hlavní autori: Abdelmohsen, Kotb, Gorospe, Myriam
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States Taylor & Francis 01.06.2012
Landes Bioscience
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ISSN:1547-6286, 1555-8584, 1555-8584
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Abstract Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in several aspects of DNA metabolism, and participates extensively in RNA regulatory mechanisms, including transcription, ribosome assembly, mRNA stability and translation, and microRNA processing. Nucleolin's implication in disease is linked to its ability to associate with target RNAs via its four RNA-binding domains and its arginine/glycin-rich domain. By modulating the post-transcriptional fate of target mRNAs, which typically bear AU-rich and/or G-rich elements, nucleolin has been linked to cellular events that influence disease, notably cell proliferation and protection against apoptotic death. Through its diverse RNA functions, nucleolin is increasingly implicated in pathological processes, particularly cancer and viral infection. Here, we review the RNA-binding activities of nucleolin, its influence on gene expression patterns, and its impact upon diseases. We also discuss the rising interest in targeting nucleolin therapeutically.
AbstractList Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in several aspects of DNA metabolism, and participates extensively in RNA regulatory mechanisms, including transcription, ribosome assembly, mRNA stability and translation, and microRNA processing. Nucleolin's implication in disease is linked to its ability to associate with target RNAs via its four RNA-binding domains and its arginine/glycin-rich domain. By modulating the post-transcriptional fate of target mRNAs, which typically bear AU-rich and/or G-rich elements, nucleolin has been linked to cellular events that influence disease, notably cell proliferation and protection against apoptotic death. Through its diverse RNA functions, nucleolin is increasingly implicated in pathological processes, particularly cancer and viral infection. Here, we review the RNA-binding activities of nucleolin, its influence on gene expression patterns, and its impact upon diseases. We also discuss the rising interest in targeting nucleolin therapeutically.Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in several aspects of DNA metabolism, and participates extensively in RNA regulatory mechanisms, including transcription, ribosome assembly, mRNA stability and translation, and microRNA processing. Nucleolin's implication in disease is linked to its ability to associate with target RNAs via its four RNA-binding domains and its arginine/glycin-rich domain. By modulating the post-transcriptional fate of target mRNAs, which typically bear AU-rich and/or G-rich elements, nucleolin has been linked to cellular events that influence disease, notably cell proliferation and protection against apoptotic death. Through its diverse RNA functions, nucleolin is increasingly implicated in pathological processes, particularly cancer and viral infection. Here, we review the RNA-binding activities of nucleolin, its influence on gene expression patterns, and its impact upon diseases. We also discuss the rising interest in targeting nucleolin therapeutically.
Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in several aspects of DNA metabolism, and participates extensively in RNA regulatory mechanisms, including transcription, ribosome assembly, mRNA stability and translation, and microRNA processing. Nucleolin’s implication in disease is linked to its ability to associate with target RNAs via its four RNA-binding domains and its arginine/glycin-rich domain. By modulating the post-transcriptional fate of target mRNAs, which typically bear AU-rich and/or G-rich elements, nucleolin has been linked to cellular events that influence disease, notably cell proliferation and protection against apoptotic death. Through its diverse RNA functions, nucleolin is increasingly implicated in pathological processes, particularly cancer and viral infection. Here, we review the RNA-binding activities of nucleolin, its influence on gene expression patterns, and its impact upon diseases. We also discuss the rising interest in targeting nucleolin therapeutically.
Author Gorospe, Myriam
Abdelmohsen, Kotb
AuthorAffiliation Laboratory of Molecular Biology and Immunology; National Institute on Aging-Intramural Research Program; National Institutes of Health; Baltimore, MD USA
AuthorAffiliation_xml – name: Laboratory of Molecular Biology and Immunology; National Institute on Aging-Intramural Research Program; National Institutes of Health; Baltimore, MD USA
Author_xml – sequence: 1
  givenname: Kotb
  surname: Abdelmohsen
  fullname: Abdelmohsen, Kotb
  email: abdelmohsenk@grc.nia.nih.gov
– sequence: 2
  givenname: Myriam
  surname: Gorospe
  fullname: Gorospe, Myriam
BackLink https://www.ncbi.nlm.nih.gov/pubmed/22617883$$D View this record in MEDLINE/PubMed
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Snippet Nucleolin is a multifunctional protein localized primarily in the nucleolus, but also found in the nucleoplasm, cytoplasm and cell membrane. It is involved in...
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SubjectTerms Animals
apoptosis
AU-rich elements
Binding
Biology
Bioscience
Calcium
Cancer
Cell
cell membranes
cell nucleolus
cell proliferation
Cycle
DNA
G-rich sequences
gene expression
Gene Expression Regulation
Humans
Landes
metabolism
microRNA
Molecular Targeted Therapy
mRNA stability
mRNA translation
Neoplasms - drug therapy
Neoplasms - metabolism
Nucleolin
Organogenesis
Phosphoproteins - physiology
post-transcriptional gene regulation
Protein Processing, Post-Translational
Protein Transport
Proteins
Review
ribosomes
RNA Stability
RNA-binding proteins
RNA-Binding Proteins - physiology
therapy
transcriptome
Title RNA-binding protein nucleolin in disease
URI https://www.tandfonline.com/doi/abs/10.4161/rna.19718
http://www.landesbioscience.com/journals/rnabiology/article/19718/
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