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Series GSE196098 Query DataSets for GSE196098
Status Public on Feb 10, 2022
Title Regulation of stem cell identity by miR-200a during spinal cord regeneration
Organism Ambystoma mexicanum
Experiment type Expression profiling by high throughput sequencing
Summary Salamanders have the remarkable ability to functionally regenerate after spinal cord transection. In response to injury, GFAP+ glial cells in the axolotl spinal cord proliferate and migrate to replace the missing neural tube and create a permissive environment for axon regeneration. In this paper we show that miR-200a acts to repress expression of Brachyury in sox2 positive progenitor cells in the axoltol spinal cord after spinal cord injury but after tail amputation when multiple tissue types must be regenerated then mir-200a is downregualted allowing progenitor cells in the spinal cord to naturally become bipotent progenitors which can give rise to muscle and neural cell types. When miR-200a is inhibited after spinal cord injury then these cells also express BRachyury cna can form muscle.
 
Overall design All axolotls used in these experiments were bred in the axolotl facility at the University of Minnesota or at the MBL under the IACUC protocols #1710-35242A, #18-49. Axolotls of 2–3 cm were used for all in vivo experiments, and animals were kept in separate containers and fed daily with artemia; water was changed daily. Animals were anesthetized in 0.01% p-amino benzocaine (Sigma) before microinjection was performed.
 
Contributor(s) Walker S, Sabin K, Gearhart M, Yamamoto K, Echeverri K
Citation(s) 35156681
Submission date Feb 03, 2022
Last update date Apr 05, 2022
Contact name Karen Echeverri
E-mail(s) kecheverri@mbl.edu
Organization name MARINE BIOLOGICAL LAB
Department Eugene Bell Center for Regeneration Biology and Tissue Engineering
Lab Echeverri Lab
Street address 7 MBL ST
City Woods hole
State/province MA
ZIP/Postal code 02543
Country USA
 
Platforms (1)
GPL22800 Illumina HiSeq 2500 (Ambystoma mexicanum)
Samples (12)
GSM5859987 Cntl Uninj 1 S1
GSM5859988 Cntl Uninj S2
GSM5859989 Cntl Uninj 5 S3
Relations
BioProject PRJNA803256

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Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE196098_Table_S1.xls.gz 2.3 Mb (ftp)(http) XLS
SRA Run SelectorHelp
Raw data are available in SRA
Processed data are available on Series record

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