textabstractProtein correlation profiling might assist in defining co-assembled proteins and subcellular distribution. Here, we quantified the proteomes of five biochemically isolated mouse brain cellular sub-fractions, with emphasis on synaptic compartments, from three brain regions, hippocampus, cortex and cerebellum. We demonstrated the expected co-fractionation of canonical synaptic proteins belonging to the same functional groups. The enrichment profiles also suggested the presence of many novel pre- and post-synaptic proteins. Using super-resolution microscopy on primary neuronal culture we confirmed the postsynaptic localization of PLEKHA5 and ADGRA1. We further detected profound brain region specific differences in the extent of enr...
Brain transcriptome and connectome maps are being generated, but an equivalent effort on the proteom...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
The synapse is the most characteristic feature of the brain that allows the flow of information enco...
Protein correlation profiling might assist in defining co-assembled proteins and subcellular distrib...
The proteome of the postsynaptic terminal of excitatory synapses comprises over one thousand protein...
Organelle proteomics is the method of choice for global analysis of cellular proteins. However, it i...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
Synapses form the nuts and bolts of the brain. Synaptic transmission involves an intricate network o...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
In recent years, the remarkable molecular complexity of synapses has been revealed, with over 1000 p...
Characterization of the composition of the postsynaptic proteome (PSP) provides a framework for unde...
Fast excitatory synaptic transmission in the brain is mediated by glutamate acting on postsynaptic A...
Quantitative analysis of synaptic proteomes from specific brain regions is important for our underst...
We have correlated transcriptomics, proteomics and toponomics analyses of hippocampus tissue of inbr...
Brain transcriptome and connectome maps are being generated, but an equivalent effort on the proteom...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
The synapse is the most characteristic feature of the brain that allows the flow of information enco...
Protein correlation profiling might assist in defining co-assembled proteins and subcellular distrib...
The proteome of the postsynaptic terminal of excitatory synapses comprises over one thousand protein...
Organelle proteomics is the method of choice for global analysis of cellular proteins. However, it i...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
Synapses form the nuts and bolts of the brain. Synaptic transmission involves an intricate network o...
Direct comparison of protein components from human and mouse excitatory synapses is important for de...
In recent years, the remarkable molecular complexity of synapses has been revealed, with over 1000 p...
Characterization of the composition of the postsynaptic proteome (PSP) provides a framework for unde...
Fast excitatory synaptic transmission in the brain is mediated by glutamate acting on postsynaptic A...
Quantitative analysis of synaptic proteomes from specific brain regions is important for our underst...
We have correlated transcriptomics, proteomics and toponomics analyses of hippocampus tissue of inbr...
Brain transcriptome and connectome maps are being generated, but an equivalent effort on the proteom...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
The synapse is the most characteristic feature of the brain that allows the flow of information enco...