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Published on: August 4, 2019
p73 as a Tissue Architect
Laura Maeso-Alonso1, Lorena López-Ferreras1, Margarita M Marques2
1Departamento de Biología Molecular, Instituto de Biomedicina (IBIOMED), University of León, León, Spain.
Abstract:
The TP73 gene belongs to the p53 family comprised by p53, p63, and p73. In response to physiological and pathological signals these transcription factors regulate multiple molecular pathways which merge in an ensemble of interconnected networks, in which the control of cell proliferation and cell death occupies a prominent position. However, the complex phenotype of the Trp73 deficient mice has revealed that the biological relevance of this gene does not exclusively rely on its growth suppression effects, but it is also intertwined with other fundamental roles governing different aspects of tissue physiology. p73 function is essential for the organization and homeostasis of different complex microenvironments, like the neurogenic niche, which supports the neural progenitor cells and the ependyma, the male and female reproductive organs, the respiratory epithelium or the vascular network. We propose that all these, apparently unrelated, developmental roles, have a common denominator: p73 function as a tissue architect. Tissue architecture is defined by the nature and the integrity of its cellular and extracellular compartments, and it is based on proper adhesive cell-cell and cell-extracellular matrix interactions as well as the establishment of cellular polarity. In this work, we will review the current understanding of p73 role as a neurogenic niche architect through the regulation of cell adhesion, cytoskeleton dynamics and Planar Cell Polarity, and give a general overview of TAp73 as a hub modulator of these functions, whose alteration could impinge in many of the Trp73 -/- phenotypes.
Insights
The TP73 gene, encoding p73, acts as a crucial tissue architect, regulating cell adhesion and polarity. Its role extends beyond growth suppression to maintaining tissue homeostasis and organization in various microenvironments.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cell Biology
Background:
- The TP73 gene is part of the p53 family, regulating cell proliferation and death.
- p73's function is vital for tissue homeostasis beyond its growth-suppressive roles.
- p73 is essential for organizing complex microenvironments like neurogenic niches and reproductive organs.
Purpose of the Study:
- To review the role of p73 as a tissue architect.
- To explore p73's regulation of cell adhesion, cytoskeleton dynamics, and Planar Cell Polarity.
- To provide an overview of TAp73 as a central modulator of these functions.
Main Methods:
- Literature review of p73 function in tissue architecture.
- Analysis of p73's role in neurogenic niche organization.
- Overview of TAp73's function as a hub modulator.
Main Results:
- p73 functions as a tissue architect, essential for tissue organization and homeostasis.
- p73 regulates cell adhesion, cytoskeleton dynamics, and Planar Cell Polarity.
- TAp73 acts as a hub modulator influencing multiple cellular functions.
Conclusions:
- p73 is a critical tissue architect, maintaining the integrity of cellular and extracellular compartments.
- Alterations in p73 function can lead to various developmental phenotypes.
- Understanding p73's role is key to comprehending tissue physiology and disease.
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