Published February 15, 2019 | Version Supplemental Material + Accepted Version + Submitted
Journal Article Open

Draxin alters laminin organization during basement membrane remodeling to control cranial neural crest EMT

  • 1. ROR icon California Institute of Technology

Abstract

Premigratory neural crest cells arise within the dorsal neural tube and subsequently undergo an epithelial-to-mesenchymal transition (EMT) to leave the neuroepithelium and initiate migration. Draxin is a Wnt modulator that has been shown to control the timing of cranial neural crest EMT. Here we show that this process is accompanied by three stages of remodeling of the basement membrane protein laminin, from regression to expansion and channel formation. Loss of Draxin results in blocking laminin remodeling at the regression stage, whereas ectopic maintenance of Draxin blocks remodeling at the expansion stage. The latter effect is rescued by addition of Snail2, previously shown to be downstream of Draxin. Our results demonstrate an essential function for the Wnt modulator Draxin in regulating basement membrane remodeling during cranial neural crest EMT.

Additional Information

© 2018 Elsevier. Received 31 August 2018, Revised 19 December 2018, Accepted 19 December 2018, Available online 21 December 2018. We thank Dr. M. Simoes-Costa for providing the NC1.1 M3:EGFP construct, and Dr. M. Cheung for providing the pCIG-V5-Snail2-IRES-nls-GFP construct (Addgene plasmid # 44282). This work was supported by a National Institutes of Health grant (R01DE024157 and PO1HD037105 to M.E. Bronner), and a Ruth L. Kirschstein National Research Service Award (F32DE026355 to E.J. Hutchins). The authors declare no competing interests.

Attached Files

Accepted Version - 1-s2.0-S001216061830589X-main_acc.pdf

Accepted Version - nihms-1517618.pdf

Submitted - 407882.full.pdf

Supplemental Material - 1-s2.0-S001216061830589X-mmc1.pdf

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Additional details

Additional titles

Alternative title
Draxin alters laminin expression during basement membrane reorganization to control cranial neural crest EMT

Identifiers

PMCID
PMC6368465
Eprint ID
90005
Resolver ID
CaltechAUTHORS:20180927-114224386

Related works

Describes
10.1101/407882 (DOI)

Funding

NIH
R01DE024157
NIH
P01HD037105
NIH Postdoctoral Fellowship
F32DE026355

Dates

Created
2018-09-27
Created from EPrint's datestamp field
Updated
2023-06-01
Created from EPrint's last_modified field