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 PMID:19369542  

Functionally reduced sensorimotor connections form with normal specificity despite abnormal muscle spindle development: the role of spindle-derived neurotrophin 3.

Neil A Shneider | George Z Mentis | Joshua Schustak | Michael J O'Donovan
The Journal of neuroscience : the official journal of the Society for Neuroscience | 2009

The mechanisms controlling the formation of synaptic connections between muscle spindle afferents and spinal motor neurons are believed to be regulated by factors originating from muscle spindles. Here, we find that the connections form with appropriate specificity in mice with abnormal spindle development caused by the conditional elimination of the neuregulin 1 receptor ErbB2 from muscle precursors. However, despite a modest ( approximately 30%) decrease in the number of afferent terminals on motor neuron somata, the amplitude of afferent-evoked synaptic potentials recorded in motor neurons was reduced by approximately 80%, suggesting that many of the connections that form are functionally silent. The selective elimination of neurotrophin 3 (NT3) from muscle spindles had no effect on the amplitude of afferent-evoked ventral root potentials until the second postnatal week, revealing a late role for spindle-derived NT3 in the functional maintenance of the connections. These findings indicate that spindle-derived factors regulate the strength of the connections but not their initial formation or their specificity.

Pubmed ID: 19369542

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Associated grants

  • Agency: Intramural NIH HHS, United States
    Id: Z01 NS002787-19

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B6.129S4-Ntf3tm2Jae/J (organism)

RRID:IMSR_JAX:003541

Mus musculus with name B6.129S4-Ntf3tm2Jae/J from IMSR.

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STOCK Ntf3tm1Lfr/Mmucd (organism)

RRID:MMRRC_000191-UCD

Mus musculus with name STOCK Ntf3tm1Lfr/Mmucd from MMRRC.

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