Literature DB >> 31736534

Tissue cell differentiation and multicellular evolution via cytoskeletal stiffening in mechanically stressed microenvironments.

Junwei Chen1,2, Ning Wang1,2.   

Abstract

Evolution of eukaryotes from simple cells to complex multicellular organisms remains a mystery. Our postulate is that cytoskeletal stiffening is a necessary condition for evolution of complex multicellular organisms from early simple eukaryotes. Recent findings show that embryonic stem cells are as soft as primitive eukaryotes-amoebae and that differentiated tissue cells can be two orders of magnitude stiffer than embryonic stem cells. Soft embryonic stem cells become stiff as they differentiate into tissue cells of the complex multicellular organisms to match their microenvironment stiffness. We perhaps see in differentiation of embryonic stem cells (derived from inner cell mass cells) the echo of those early evolutionary events. Early soft unicellular organisms might have evolved to stiffen their cytoskeleton to protect their structural integrity from external mechanical stresses while being able to maintain form, to change shape, and to move.

Entities:  

Keywords:  Amoebae; Bacteria; Cytoskeleton; Eukaryotes; Force

Year:  2018        PMID: 31736534      PMCID: PMC6857630          DOI: 10.1007/s10409-018-0814-8

Source DB:  PubMed          Journal:  Acta Mech Sin        ISSN: 0567-7718            Impact factor:   1.975


  55 in total

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