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Publication : Differential localization of NT-3 and TrpM5 in glomeruli of the olfactory bulb of mice.

First Author  Rolen SH Year  2014
Journal  J Comp Neurol Volume  522
Issue  8 Pages  1929-40
PubMed ID  24288162 Mgi Jnum  J:244929
Mgi Id  MGI:5913708 Doi  10.1002/cne.23512
Citation  Rolen SH, et al. (2014) Differential localization of NT-3 and TrpM5 in glomeruli of the olfactory bulb of mice. J Comp Neurol 522(8):1929-40
abstractText  Olfactory sensory neurons that express transient receptor potential channel M5 (TrpM5) or neurotrophin-3 (NT-3) project to defined clusters of glomeruli situated ventrally in the main olfactory bulb. Using genetically labeled mice, we investigated whether expression of NT-3-driven betagal and TrpM5-driven GFP marked overlapping sets of glomeruli and whether expression of these markers was coordinated. Our results indicate that these markers largely characterize independent sets of olfactory sensory neuron axons and glomeruli. Further, in glomeruli in which both TrpM5-GFP and NT-3-betagal labeled axons occur, they are expressed independently. The nature of staining for these two markers also differs within glomeruli. Within each labeled TrpM5-positive glomerulus, the level of TrpM5-GFP expression was similar throughout the glomerular neuropil. In contrast, NT-3-driven betagal expression levels are heterogeneous even within heavily labeled glomeruli. In addition, a population of very small TrpM5-GFP positive glomeruli is apparent while no similar populations of NT-3-betagal glomeruli are evident. Taken together, these data suggest that TrpM5 and NT-3 characterize two largely independent receptor populations both conveying odorant information to the ventral olfactory bulb.
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