|  Help  |  About  |  Contact Us

Publication : Genetic evidence that relative synaptic efficacy biases the outcome of synaptic competition.

First Author  Buffelli M Year  2003
Journal  Nature Volume  424
Issue  6947 Pages  430-4
PubMed ID  12879071 Mgi Jnum  J:89596
Mgi Id  MGI:3040771 Doi  10.1038/nature01844
Citation  Buffelli M, et al. (2003) Genetic evidence that relative synaptic efficacy biases the outcome of synaptic competition. Nature 424(6947):430-4
abstractText  Synaptic activity drives synaptic rearrangement in the vertebrate nervous system; indeed, this appears to be a main way in which experience shapes neural connectivity. One rearrangement that occurs in many parts of the nervous system during early postnatal life is a competitive process called 'synapse elimination'. At the neuromuscular junction, where synapse elimination has been analysed in detail, muscle fibres are initially innervated by multiple axons, then all but one are withdrawn and the 'winner' enlarges. In support of the idea that synapse elimination is activity dependent, it is slowed or speeded when total neuromuscular activity is decreased or increased, respectively. However, most hypotheses about synaptic rearrangement postulate that change depends less on total activity than on the relative activity of the competitors. Intuitively, it seems that the input best able to excite its postsynaptic target would be most likely to win the competition, but some theories and results make other predictions. Here we use a genetic method to selectively inhibit neurotransmission from one of two inputs to a single target cell. We show that more powerful inputs are strongly favoured competitors during synapse elimination.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

15 Bio Entities

Trail: Publication

0 Expression