Hyppää sisältöön
    • FI
    • ENG
  • FI
  • /
  • EN
OuluREPO – Oulun yliopiston julkaisuarkisto / University of Oulu repository
Näytä viite 
  •   OuluREPO etusivu
  • Oulun yliopisto
  • Avoin saatavuus
  • Näytä viite
  •   OuluREPO etusivu
  • Oulun yliopisto
  • Avoin saatavuus
  • Näytä viite
JavaScript is disabled for your browser. Some features of this site may not work without it.

Collagen XIII is required for neuromuscular synapse regeneration and functional recovery after peripheral nerve injury

Zainul, Zarin; Heikkinen, Anne; Koivisto, Hennariikka; Rautalahti, Iina; Kallio, Mika; Lin, Shuo; Härönen, Heli; Norman, Oula; Rüegg, Markus A.; Tanila, Heikki; Pihlajaniemi, Taina (2018-04-25)

 
Avaa tiedosto
nbnfi-fe201901101873.pdf (5.593Mt)
nbnfi-fe201901101873_meta.xml (55.50Kt)
nbnfi-fe201901101873_solr.xml (43.08Kt)
Lataukset: 

URL:
https://doi.org/10.1523/JNEUROSCI.3119-17.2018

Zainul, Zarin
Heikkinen, Anne
Koivisto, Hennariikka
Rautalahti, Iina
Kallio, Mika
Lin, Shuo
Härönen, Heli
Norman, Oula
Rüegg, Markus A.
Tanila, Heikki
Pihlajaniemi, Taina
Society for Neuroscience
25.04.2018

Zarin Zainul, Anne Heikkinen, Hennariikka Koivisto, Iina Rautalahti, Mika Kallio, Shuo Lin, Heli Härönen, Oula Norman, Markus A. Rüegg, Heikki Tanila, Taina Pihlajaniemi. Collagen XIII Is Required for Neuromuscular Synapse Regeneration and Functional Recovery after Peripheral Nerve Injury. Journal of Neuroscience 25 April 2018, 38 (17) 4243-4258; DOI: 10.1523/JNEUROSCI.3119-17.2018

https://rightsstatements.org/vocab/InC/1.0/
Copyright © 2018 the authors.
https://rightsstatements.org/vocab/InC/1.0/
doi:https://doi.org/10.1523/JNEUROSCI.3119-17.2018
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe201901101873
Tiivistelmä

Abstract

Collagen XIII occurs as both a transmembrane-bound and a shed extracellular protein and is able to regulate the formation and function of neuromuscular synapses. Its absence results in myasthenia: presynaptic and postsynaptic defects at the neuromuscular junction (NMJ), leading to destabilization of the motor nerves, muscle regeneration and atrophy. Mutations in COL13A1 have recently been found to cause congenital myasthenic syndrome, characterized by fatigue and chronic muscle weakness, which may be lethal. We show here that muscle defects in collagen XIII-deficient mice stabilize in adulthood, so that the disease is not progressive until very late. Sciatic nerve crush was performed to examine how the lack of collagen XIII or forced expression of its transmembrane form affects the neuromuscular synapse regeneration and functional recovery following injury. We show that collagen XIII-deficient male mice are unable to achieve complete NMJ regeneration and functional recovery. This is mainly attributable to presynaptic defects that already existed in the absence of collagen XIII before injury. Shedding of the ectodomain is not required, as the transmembrane form of collagen XIII alone fully rescues the phenotype. Thus, collagen XIII could serve as a therapeutic agent in cases of injury-induced PNS regeneration and functional recovery. We conclude that intrinsic alterations at the NMJ in Col13a1−/− mice contribute to impaired and incomplete NMJ regeneration and functional recovery after peripheral nerve injury. However, such alterations do not progress once they have stabilized in early adulthood, emphasizing the role of collagen XIII in NMJ maturation.

Kokoelmat
  • Avoin saatavuus [38821]
oulurepo@oulu.fiOulun yliopiston kirjastoOuluCRISLaturiMuuntaja
SaavutettavuusselosteTietosuojailmoitusYlläpidon kirjautuminen
 

Selaa kokoelmaa

NimekkeetTekijätJulkaisuajatAsiasanatUusimmatSivukartta

Omat tiedot

Kirjaudu sisäänRekisteröidy
oulurepo@oulu.fiOulun yliopiston kirjastoOuluCRISLaturiMuuntaja
SaavutettavuusselosteTietosuojailmoitusYlläpidon kirjautuminen