Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb.

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Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb. / Treloar, Helen B; Ray, Arundhati; Dinglasan, Lu Anne; Schachner, Melitta; Greer, Charles A.

in: J NEUROSCI, Jahrgang 29, Nr. 30, 30, 2009, S. 9405-9416.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

Harvard

Treloar, HB, Ray, A, Dinglasan, LA, Schachner, M & Greer, CA 2009, 'Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb.', J NEUROSCI, Jg. 29, Nr. 30, 30, S. 9405-9416. <http://www.ncbi.nlm.nih.gov/pubmed/19641104?dopt=Citation>

APA

Treloar, H. B., Ray, A., Dinglasan, L. A., Schachner, M., & Greer, C. A. (2009). Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb. J NEUROSCI, 29(30), 9405-9416. [30]. http://www.ncbi.nlm.nih.gov/pubmed/19641104?dopt=Citation

Vancouver

Treloar HB, Ray A, Dinglasan LA, Schachner M, Greer CA. Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb. J NEUROSCI. 2009;29(30):9405-9416. 30.

Bibtex

@article{bc0ebbdd2f714fe1a031dfdf5f417ef5,
title = "Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb.",
abstract = "We recently described the boundary-like expression pattern of the extracellular matrix molecule tenascin-C (Tnc) in the developing mouse olfactory bulb (OB) (Shay et al., 2008). In the present study, we test the hypothesis that Tnc inhibits olfactory sensory neuron (OSN) axon growth in the developing OB before glomerulogenesis. The period of time before glomerular formation begins, when axons remain restricted to the developing olfactory nerve layer (ONL), is crucial for axon sorting. Here, we show with in vitro analyses that OSN neurite outgrowth is inhibited by Tnc in a dose-dependent manner and that, in stripe assays, axons preferentially avoid Tnc. Using Tnc-null mice, we also show that that glomerular development is delayed in the absence of Tnc. In wild-type mice, OSN axons coalesce into immature or protoglomeruli, which further differentiate and segregate into glomeruli. Glomeruli are first identifiable as discrete structures at birth. In null mice, glomeruli appear immature at birth, remain fused to the ONL, and have a significantly larger diameter compared with wild-type controls. By postnatal day 4, null glomeruli are indistinguishable from controls. Thus, OSN axons appear delayed in their coalescence into glomerular structures. These data correlate with behavioral reports of Tnc-null mice, which are delayed by 24 h in their acquisition of an olfactory behavior (de Chevigny et al., 2006). Collectively, these data demonstrate that Tnc is an inhibitory boundary molecule in the developing OB during a key period of development.",
author = "Treloar, {Helen B} and Arundhati Ray and Dinglasan, {Lu Anne} and Melitta Schachner and Greer, {Charles A}",
year = "2009",
language = "Deutsch",
volume = "29",
pages = "9405--9416",
journal = "J NEUROSCI",
issn = "0270-6474",
publisher = "Society for Neuroscience",
number = "30",

}

RIS

TY - JOUR

T1 - Tenascin-C is an inhibitory boundary molecule in the developing olfactory bulb.

AU - Treloar, Helen B

AU - Ray, Arundhati

AU - Dinglasan, Lu Anne

AU - Schachner, Melitta

AU - Greer, Charles A

PY - 2009

Y1 - 2009

N2 - We recently described the boundary-like expression pattern of the extracellular matrix molecule tenascin-C (Tnc) in the developing mouse olfactory bulb (OB) (Shay et al., 2008). In the present study, we test the hypothesis that Tnc inhibits olfactory sensory neuron (OSN) axon growth in the developing OB before glomerulogenesis. The period of time before glomerular formation begins, when axons remain restricted to the developing olfactory nerve layer (ONL), is crucial for axon sorting. Here, we show with in vitro analyses that OSN neurite outgrowth is inhibited by Tnc in a dose-dependent manner and that, in stripe assays, axons preferentially avoid Tnc. Using Tnc-null mice, we also show that that glomerular development is delayed in the absence of Tnc. In wild-type mice, OSN axons coalesce into immature or protoglomeruli, which further differentiate and segregate into glomeruli. Glomeruli are first identifiable as discrete structures at birth. In null mice, glomeruli appear immature at birth, remain fused to the ONL, and have a significantly larger diameter compared with wild-type controls. By postnatal day 4, null glomeruli are indistinguishable from controls. Thus, OSN axons appear delayed in their coalescence into glomerular structures. These data correlate with behavioral reports of Tnc-null mice, which are delayed by 24 h in their acquisition of an olfactory behavior (de Chevigny et al., 2006). Collectively, these data demonstrate that Tnc is an inhibitory boundary molecule in the developing OB during a key period of development.

AB - We recently described the boundary-like expression pattern of the extracellular matrix molecule tenascin-C (Tnc) in the developing mouse olfactory bulb (OB) (Shay et al., 2008). In the present study, we test the hypothesis that Tnc inhibits olfactory sensory neuron (OSN) axon growth in the developing OB before glomerulogenesis. The period of time before glomerular formation begins, when axons remain restricted to the developing olfactory nerve layer (ONL), is crucial for axon sorting. Here, we show with in vitro analyses that OSN neurite outgrowth is inhibited by Tnc in a dose-dependent manner and that, in stripe assays, axons preferentially avoid Tnc. Using Tnc-null mice, we also show that that glomerular development is delayed in the absence of Tnc. In wild-type mice, OSN axons coalesce into immature or protoglomeruli, which further differentiate and segregate into glomeruli. Glomeruli are first identifiable as discrete structures at birth. In null mice, glomeruli appear immature at birth, remain fused to the ONL, and have a significantly larger diameter compared with wild-type controls. By postnatal day 4, null glomeruli are indistinguishable from controls. Thus, OSN axons appear delayed in their coalescence into glomerular structures. These data correlate with behavioral reports of Tnc-null mice, which are delayed by 24 h in their acquisition of an olfactory behavior (de Chevigny et al., 2006). Collectively, these data demonstrate that Tnc is an inhibitory boundary molecule in the developing OB during a key period of development.

M3 - SCORING: Zeitschriftenaufsatz

VL - 29

SP - 9405

EP - 9416

JO - J NEUROSCI

JF - J NEUROSCI

SN - 0270-6474

IS - 30

M1 - 30

ER -