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  4. Developmental expression of Synaptotagmin isoforms in single calyx of Held-generating neurons
 
research article

Developmental expression of Synaptotagmin isoforms in single calyx of Held-generating neurons

Xiao, Le  
•
Han, Yunyun  
•
Runne, Heike
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2010
Molecular And Cellular Neuroscience

The large glutamatergic calyx of Held synapse in the auditory brainstem has become a powerful model for studying transmitter release mechanisms, but the molecular bases of presynaptic function at this synapse are not well known. Here, we have used single-cell quantitative PCR (qPCR) to study the developmental expression of all major Synaptotagmin (Syt) isoforms in putative calyx of Held-generating neurons (globular bushy cells) of the ventral cochlear nucleus. Using electrophysiological criteria and the expression of marker genes including VGluTs (vesicular glutamate transporters), Ca2+ binding proteins, and the transcription factor Math5, we identified a subset of the recorded neurons as putative calyx of Held-generating bushy cells. At postnatal days 12-15 these neurons expressed Syt-2 and Syt-11, and also Syt-3, -4, -7 and -13 at lower levels, whereas Syt-1 and -9 were absent. Interestingly, early in development (at P3-P6), immature bushy cells expressed a larger number of Syt-isoforms, with Syt-1, Syt-5, Syt-9 and Syt-13 detected in a significantly higher percentage of neurons. Our study sheds light on the molecular properties of putative calyx of Held-generating neurons and shows the developmental regulation of the Syt-isoform expression profile in a single neuron type. (C) 2010 Elsevier Inc. All rights reserved.

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Type
research article
DOI
10.1016/j.mcn.2010.05.002
Web of Science ID

WOS:000279525600007

Author(s)
Xiao, Le  
Han, Yunyun  
Runne, Heike
Murray, Heather
Kochubey, Olexiy  
Luthi-Carter, Ruth  
Schneggenburger, Ralf  
Date Issued

2010

Published in
Molecular And Cellular Neuroscience
Volume

44

Start page

374

End page

385

Subjects

Quantitative PCR

•

mRNA

•

Gene expression profiling

•

Presynaptic protein

•

Auditory

•

Bushy cell

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Ca2+ sensor

•

Ventral Cochlear Nucleus

•

Auditory Brain-Stem

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Calcium-Binding Proteins

•

Presynaptic Active Zones

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Bushy Cell Axons

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Neurotransmitter Release

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Transmitter Release

•

Trapezoid Body

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Synaptic Vesicles

•

Medial Nucleus

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNGF  
LSYM  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/75354
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