BACKGROUND: All studies aimed at understanding complex molecular changes occurring at synapses face the problem of how a complete view of the synaptic proteome and of its changes can be efficiently met. This is highly desirable when synaptic plasticity processes are analyzed since the structure and the biochemistry of neurons and synapses get completely reshaped. Because most molecular studies of synapses are nowadays mainly or at least in part based on protein extracts from neuronal cultures, this is not a feasible option: these simplified versions of the brain tissue on one hand provide an homogeneous pure population of neurons but on the other yield only tiny amounts of proteins, many orders of magnitude smaller than conventional brain t...
In recent years, the remarkable molecular complexity of synapses has been revealed, with over 1000 p...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
BACKGROUND: All studies aimed at understanding complex molecular changes occurring at synapses face ...
Abstract Background All studies aimed at understanding complex molecular changes occurring at synaps...
30, sintaxin 1A; 45, β-synuclein; 56, α-synuclein (for complete list see table 1).<p><b>Copyright in...
D silver stained. B) Distributions of spot intensities (black histograms) and background noise (grey...
Synaptic plasticity is the dynamic regulation of the strength of synaptic communication between nerv...
Quantitative analysis of synaptic proteomes from specific brain regions is important for our underst...
The mammalian nervous system is an immensely heterogeneous organ composed of a diverse collection of...
Neuronal differentiation is a multistep process that shapes and re-shapes neurons by progressing thr...
Neuronal differentiation is a multistep process that shapes and re-shapes neurons by progressing thr...
Chapter 2 first establishes that the probability of detection in proteomics depends on the concentra...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
In recent years, the remarkable molecular complexity of synapses has been revealed, with over 1000 p...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
BACKGROUND: All studies aimed at understanding complex molecular changes occurring at synapses face ...
Abstract Background All studies aimed at understanding complex molecular changes occurring at synaps...
30, sintaxin 1A; 45, β-synuclein; 56, α-synuclein (for complete list see table 1).<p><b>Copyright in...
D silver stained. B) Distributions of spot intensities (black histograms) and background noise (grey...
Synaptic plasticity is the dynamic regulation of the strength of synaptic communication between nerv...
Quantitative analysis of synaptic proteomes from specific brain regions is important for our underst...
The mammalian nervous system is an immensely heterogeneous organ composed of a diverse collection of...
Neuronal differentiation is a multistep process that shapes and re-shapes neurons by progressing thr...
Neuronal differentiation is a multistep process that shapes and re-shapes neurons by progressing thr...
Chapter 2 first establishes that the probability of detection in proteomics depends on the concentra...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
In recent years, the remarkable molecular complexity of synapses has been revealed, with over 1000 p...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...
Key to the human brain’s unique capacities are a myriad of neural cell types, specialized molecular ...