Notch: A multi-functional integrating system of microenvironmental signals

The Notch signaling cascade is an evolutionarily ancient system that allows cells to interact with their microenvironmental neighbors through direct cell-cell interactions, thereby directing a variety of developmental processes. Recent research is discovering that Notch signaling is also responsive...

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Published inDevelopmental biology Vol. 418; no. 2; pp. 227 - 241
Main Authors LaFoya, Bryce, Munroe, Jordan A., Mia, Masum M., Detweiler, Michael A., Crow, Jacob J., Wood, Travis, Roth, Steven, Sharma, Bikram, Albig, Allan R.
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 15.10.2016
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Abstract The Notch signaling cascade is an evolutionarily ancient system that allows cells to interact with their microenvironmental neighbors through direct cell-cell interactions, thereby directing a variety of developmental processes. Recent research is discovering that Notch signaling is also responsive to a broad variety of stimuli beyond cell-cell interactions, including: ECM composition, crosstalk with other signaling systems, shear stress, hypoxia, and hyperglycemia. Given this emerging understanding of Notch responsiveness to microenvironmental conditions, it appears that the classical view of Notch as a mechanism enabling cell-cell interactions, is only a part of a broader function to integrate microenvironmental cues. In this review, we summarize and discuss published data supporting the idea that the full function of Notch signaling is to serve as an integrator of microenvironmental signals thus allowing cells to sense and respond to a multitude of conditions around them. •In addition to adjacent cells, Notch responds to a wide variety of microenvironmental signals.•Notch activation by microenvironmental signals might reflect the evolutionary origins of Notch.•The physiological importance of microenvironmental signal integration by Notch is not fully understood.
AbstractList The Notch signaling cascade is an evolutionarily ancient system that allows cells to interact with their microenvironmental neighbors through direct cell-cell interactions, thereby directing a variety of developmental processes. Recent research is discovering that Notch signaling is also responsive to a broad variety of stimuli beyond cell-cell interactions, including: ECM composition, crosstalk with other signaling systems, shear stress, hypoxia, and hyperglycemia. Given this emerging understanding of Notch responsiveness to microenvironmental conditions, it appears that the classical view of Notch as a mechanism enabling cell-cell interactions, is only a part of a broader function to integrate microenvironmental cues. In this review, we summarize and discuss published data supporting the idea that the full function of Notch signaling is to serve as an integrator of microenvironmental signals thus allowing cells to sense and respond to a multitude of conditions around them.
The Notch signaling cascade is an evolutionarily ancient system that allows cells to interact with their microenvironmental neighbors through direct cell-cell interactions, thereby directing a variety of developmental processes. Recent research is discovering that Notch signaling is also responsive to a broad variety of stimuli beyond cell-cell interactions, including: ECM composition, crosstalk with other signaling systems, shear stress, hypoxia, and hyperglycemia. Given this emerging understanding of Notch responsiveness to microenvironmental conditions, it appears that the classical view of Notch as a mechanism enabling cell-cell interactions, is only a part of a broader function to integrate microenvironmental cues. In this review, we summarize and discuss published data supporting the idea that the full function of Notch signaling is to serve as an integrator of microenvironmental signals thus allowing cells to sense and respond to a multitude of conditions around them. •In addition to adjacent cells, Notch responds to a wide variety of microenvironmental signals.•Notch activation by microenvironmental signals might reflect the evolutionary origins of Notch.•The physiological importance of microenvironmental signal integration by Notch is not fully understood.
Author Mia, Masum M.
LaFoya, Bryce
Crow, Jacob J.
Roth, Steven
Detweiler, Michael A.
Albig, Allan R.
Sharma, Bikram
Munroe, Jordan A.
Wood, Travis
AuthorAffiliation 2 Biomolecular Sciences PhD Program. Boise State University. Boise, ID. 83725, USA
1 Department of Biological Sciences. Boise State University. Boise, ID. 83725, USA
3 Department of Biological Sciences. Stanford University, Stanford, CA 94305, USA
AuthorAffiliation_xml – name: 1 Department of Biological Sciences. Boise State University. Boise, ID. 83725, USA
– name: 2 Biomolecular Sciences PhD Program. Boise State University. Boise, ID. 83725, USA
– name: 3 Department of Biological Sciences. Stanford University, Stanford, CA 94305, USA
Author_xml – sequence: 1
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  surname: LaFoya
  fullname: LaFoya, Bryce
  organization: Biomolecular Sciences PhD Program, Boise State University, Boise, ID 83725, USA
– sequence: 2
  givenname: Jordan A.
  surname: Munroe
  fullname: Munroe, Jordan A.
  organization: Department of Biological Sciences, Boise State University, Boise, ID 83725, USA
– sequence: 3
  givenname: Masum M.
  surname: Mia
  fullname: Mia, Masum M.
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  surname: Detweiler
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  surname: Roth
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  surname: Sharma
  fullname: Sharma, Bikram
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  givenname: Allan R.
  surname: Albig
  fullname: Albig, Allan R.
  email: allanalbig@boisestate.edu
  organization: Department of Biological Sciences, Boise State University, Boise, ID 83725, USA
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PublicationYear 2016
Publisher Elsevier Inc
Publisher_xml – name: Elsevier Inc
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Snippet The Notch signaling cascade is an evolutionarily ancient system that allows cells to interact with their microenvironmental neighbors through direct cell-cell...
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SubjectTerms Animals
Cellular Microenvironment - physiology
Extracellular Matrix - physiology
Humans
Hyperglycemia - physiopathology
Hypoxia - physiopathology
Integrins - physiology
Models, Biological
Receptor Cross-Talk - physiology
Receptors, Notch - physiology
Signal Transduction - physiology
Stress, Physiological - physiology
Transforming Growth Factor beta - physiology
Vascular Endothelial Growth Factor A - physiology
Wnt Signaling Pathway - physiology
Title Notch: A multi-functional integrating system of microenvironmental signals
URI https://dx.doi.org/10.1016/j.ydbio.2016.08.023
https://www.ncbi.nlm.nih.gov/pubmed/27565024
https://www.proquest.com/docview/1825213039/abstract/
https://pubmed.ncbi.nlm.nih.gov/PMC5144577
Volume 418
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