Literature DB >> 32004443

Basement Membrane Regulates Fibronectin Organization Using Sliding Focal Adhesions Driven by a Contractile Winch.

Jiaoyang Lu1, Andrew D Doyle2, Yoshinari Shinsato2, Shaohe Wang2, Molly A Bodendorfer2, Minhua Zheng3, Kenneth M Yamada4.   

Abstract

We have discovered that basement membrane and its major components can induce rapid, strikingly robust fibronectin organization. In this new matrix assembly mechanism, α5β1 integrin-based focal adhesions slide actively on the underlying matrix toward the ventral cell center through the dynamic shortening of myosin IIA-associated actin stress fibers to drive rapid fibronectin fibrillogenesis distal to the adhesion. This mechanism contrasts with classical fibronectin assembly based on stable or fixed-position focal adhesions containing αVβ3 integrins plus α5β1 integrin translocation into proximal fibrillar adhesions. On basement membrane components, these sliding focal adhesions contain standard focal adhesion constituents but completely lack classical αVβ3 integrins. Instead, peripheral α3β1 or α2β1 adhesions mediate initial cell attachment but over time are switched to α5β1 integrin-based sliding focal adhesions to assemble fibronectin matrix. This basement-membrane-triggered mechanism produces rapid fibronectin fibrillogenesis, providing a mechanistic explanation for the well-known widespread accumulation of fibronectin at many organ basement membranes. Published by Elsevier Inc.

Entities:  

Keywords:  basement membrane; extracellular matrix; fibrillogenesis; fibronectin; focal adhesion; integrin; matrix assembly

Mesh:

Substances:

Year:  2020        PMID: 32004443      PMCID: PMC8335633          DOI: 10.1016/j.devcel.2020.01.007

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  69 in total

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