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Notch: A multi-functional integrating system of microenvironmental signals. | LitMetric

Notch: A multi-functional integrating system of microenvironmental signals.

Dev Biol

Department of Biological Sciences, Boise State University, Boise, ID 83725, USA; Biomolecular Sciences PhD Program, Boise State University, Boise, ID 83725, USA. Electronic address:

Published: October 2016

AI Article Synopsis

  • The Notch signaling cascade is an ancient system that facilitates direct cell-cell communication, influencing various developmental processes.
  • Recent studies reveal that Notch signaling also responds to factors like ECM composition, other signaling systems, and environmental stresses such as shear stress, hypoxia, and hyperglycemia.
  • This evolving understanding positions Notch not just as a mediator for cell interactions but as a critical integrator of various microenvironmental signals that help cells adapt to their surroundings.

Article 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.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5144577PMC
http://dx.doi.org/10.1016/j.ydbio.2016.08.023DOI Listing

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