Neurons in the auditory system of vertebrates encode the intensity, frequency and location of sounds through the time of their firing. Their ability to encode timing precisely results from adaptations at the cellular and molecular level of individual neurons and their interconnections. Preliminary evidence suggests that glutamate receptors of the AMPA (-amino-3-hydroxy-5-methyl-4-isoxazole-propionate) class, which mediate excitatory transmission at many stages of the auditory pathway, are also specialized for audition. The expression of unique receptor subtypes may be critical to processing auditory input; defects, either direct or indirect, in the control of receptor expression could significantly impair normal function. I propose to examine the biophysical properties of AMPA receptor subtypes in identified neurons in auditory brain stem nuclei of mice. In these same cell types, I will then correlate the kinetic and permeation characteristics of receptors with the behavior of functioning synapses. Recordings will be made from cells in brain slices maintained in vitro. Whole-cell and excised membrane patch recordings will be made of synaptic activity and of responses to agonists of glutamate receptors. Neurons will be identified by dye injection and subsequent morphological reconstruction. In addition, I will apply these techniques to genetically engineered mice with knockouts of the subunits of specific glutamate receptors, to assess the role of each subunit in the function of the native, subsynaptic AMPA receptor in auditory neurons. Finally, in a separate study, we will test the hypothesis that specializations in receptor expression arise from neuronal interactions within a given pathway using a cell culture model of the cochlear nucleus. Neurons from auditory and non-auditory sources will be co-cultured. We will determine the kinetic properties of glutamate receptors expressed under different culture conditions using whole-cell and excised patch techniques. Together, the results from these experiments will provide new information regarding how neurons which perform particular tasks in the brain develop specialized biophysical and molecular properties.

Agency
National Institute of Health (NIH)
Institute
National Institute on Deafness and Other Communication Disorders (NIDCD)
Type
Research Project (R01)
Project #
5R01DC002004-04
Application #
2749227
Study Section
Hearing Research Study Section (HAR)
Project Start
1995-08-01
Project End
1999-07-31
Budget Start
1998-08-01
Budget End
1999-07-31
Support Year
4
Fiscal Year
1998
Total Cost
Indirect Cost
Name
University of Wisconsin Madison
Department
Physiology
Type
Schools of Medicine
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Kuo, Chi-Chien; Lee, Pei-Lung; Chen, Chun-Hsung et al. (2015) Surveillance of potential hosts and vectors of scrub typhus in Taiwan. Parasit Vectors 8:611
Blackmer, Trillium; Kuo, Sidney P; Bender, Kevin J et al. (2009) Dendritic calcium channels and their activation by synaptic signals in auditory coincidence detector neurons. J Neurophysiol 102:1218-26
Burns, Joseph; Christophel, J Jared; Collado, Maria Sol et al. (2008) Reinforcement of cell junctions correlates with the absence of hair cell regeneration in mammals and its occurrence in birds. J Comp Neurol 511:396-414
Lu, Tao; Trussell, Laurence O (2007) Development and elimination of endbulb synapses in the chick cochlear nucleus. J Neurosci 27:808-17
Lawrence, J Josh; Brenowitz, Stephan; Trussell, Laurence O (2003) The mechanism of action of aniracetam at synaptic alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors: indirect and direct effects on desensitization. Mol Pharmacol 64:269-78
Brenowitz, S; Trussell, L O (2001) Maturation of synaptic transmission at end-bulb synapses of the cochlear nucleus. J Neurosci 21:9487-98
Gardner, S M; Trussell, L O; Oertel, D (2001) Correlation of AMPA receptor subunit composition with synaptic input in the mammalian cochlear nuclei. J Neurosci 21:7428-37
Lawrence, J J; Trussell, L O (2000) Long-term specification of AMPA receptor properties after synapse formation. J Neurosci 20:4864-70
Lu, T; Trussell, L O (2000) Inhibitory transmission mediated by asynchronous transmitter release. Neuron 26:683-94
Gardner, S M; Trussell, L O; Oertel, D (1999) Time course and permeation of synaptic AMPA receptors in cochlear nuclear neurons correlate with input. J Neurosci 19:8721-9

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