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Pregled bibliografske jedinice broj: 66452

Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H


Križ, Jasna; Zhu, Qinzang; Julien, Jean_Pierre; Padjen, Ante L.
Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H // Brain Research, 885 (2000), 32-44 (međunarodna recenzija, članak, znanstveni)


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Naslov
Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H

Autori
Križ, Jasna ; Zhu, Qinzang ; Julien, Jean_Pierre ; Padjen, Ante L.

Izvornik
Brain Research (0006-8993) 885 (2000); 32-44

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
neurofilament; transgenic mouse; myelinated axon; intraaxonal recording

Sažetak
Neurofilament proteins ( NFs ) are made by co-polymerization of three intermediate filament proteins, NF-L, NF-M and NF-H and constitute the most abundant cytoskeletal element in large myelinated axons. NFs have a well-established role as intrinsic determinants of axon caliber with all the functional implications, but the role of each individual NF subunit is much less clear. The aim of our study was to examine functional properties of large myelinated axons with altered morphologyfrom mice bearing a targeted disruption of each NF genes ( NF-L -/-, NF-M -/- and NF-H -/- mice ). Membrane properties, action potentials and single axon refractory period were measured in isolated sciatic nerves in vitro, using intra-axonal microelectrode recording in conjunction with current-clamp technique. Some results were obtained from whole nerves by sucrose-gap recording. The NF-knockout mice showed several deficits in physiological properties of low-threshold fibers. In keeping with smaller axon diameter, the conduction velocity was significantly decreased in NF-L -/- and NF-M -/- transgenic animals ( control, 39.9ą1.8 m/s, NF-M -/-; 23.5ą1.4 m/s, and NF-L -/-; 12.0ą0.7 m/s, meanąSEM; intra-axonal recording; similar ratios obtained by sucrose-gap recordings; 22-26şC ). However, in spite of their preserved caliber, large myelinated axons in NF-H -/- mice also showed a significant decrease in conduction velocity ( 22.8ą1.0 m/s, meanąS.E.M. ). Although action potential amplitudes, duration and shape did not differ between control axons and transgenic animals, the refractory period was prolonged in NF-H -/- and NF-M -/- animals. Intracellular injections of 200 ms depolarizing and hyperpolarizing currents revealed outward and inward rectification in all animal groups. In comparison to control animals, NF-H -/- mice expressed a significant decrease in outward rectification. Potassium channel blockers ( 4AP and TEA ) and cesium ions were able to block outward and inward rectification in all myelinated axons in qualitatively the same manner. These results suggest that NF-H may have a specific role in modulating ion channel functions in large myelinated fibers.

Izvorni jezik
Engleski

Znanstvena područja
Kliničke medicinske znanosti



POVEZANOST RADA


Projekti:
062019

Ustanove:
Medicinski fakultet, Rijeka

Profili:

Avatar Url Jasna Križ (autor)


Citiraj ovu publikaciju:

Križ, Jasna; Zhu, Qinzang; Julien, Jean_Pierre; Padjen, Ante L.
Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H // Brain Research, 885 (2000), 32-44 (međunarodna recenzija, članak, znanstveni)
Križ, J., Zhu, Q., Julien, J. & Padjen, A. (2000) Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H. Brain Research, 885, 32-44.
@article{article, author = {Kri\v{z}, Jasna and Zhu, Qinzang and Julien, Jean\_Pierre and Padjen, Ante L.}, year = {2000}, pages = {32-44}, keywords = {neurofilament, transgenic mouse, myelinated axon, intraaxonal recording}, journal = {Brain Research}, volume = {885}, issn = {0006-8993}, title = {Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H}, keyword = {neurofilament, transgenic mouse, myelinated axon, intraaxonal recording} }
@article{article, author = {Kri\v{z}, Jasna and Zhu, Qinzang and Julien, Jean\_Pierre and Padjen, Ante L.}, year = {2000}, pages = {32-44}, keywords = {neurofilament, transgenic mouse, myelinated axon, intraaxonal recording}, journal = {Brain Research}, volume = {885}, issn = {0006-8993}, title = {Electrophysiological properties of axons in mice lacking neurofilament subunit genes: disparity between conduction velocity and axon diameter in absence of NF-H}, keyword = {neurofilament, transgenic mouse, myelinated axon, intraaxonal recording} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE





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