Neurons are highly compartmentalized cells with tightly controlled subcellular protein organization. While brain transcriptome, connectome and global proteome maps are being generated, system-wide analysis of temporal protein dynamics at the subcellular level are currently lacking. Here, we perform a temporally-resolved surfaceome analysis of primary neuron cultures and reveal dynamic surface protein clusters that reflect the functional requirements during distinct stages of neuronal development. Direct comparison of surface and total protein pools during development and homeostatic synaptic scaling demonstrates system-wide proteostasis-independent remodeling of the neuronal surface, illustrating widespread regulation on the level of surfac...
Protein turnover, the net result of protein synthesis and degradation, enables cells to remodel thei...
Synaptic plasticity is the dynamic regulation of the strength of synaptic communication between nerv...
Mechanisms underlying neural stem cell proliferation, differentiation and maturation play a critical...
Neurons are highly compartmentalized cells with tightly controlled subcellular protein organization....
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...
Synapses form the nuts and bolts of the brain. Synaptic transmission involves an intricate network o...
Homeostatic scaling adjusts the strength of synaptic connections up or down in response to large cha...
SummaryHomeostatic scaling adjusts the strength of synaptic connections up or down in response to la...
Homeostatic scaling adjusts the strength of synaptic connections up or down in response to large cha...
Ubiquitin-dependent receptor endocytosis and subsequent endocytic sorting to the lysosome for degrad...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
Development of the brain involves the formation and maturation of numerous synapses. This process re...
Similarly to the amazon rainforest which is formed by a multitude of different trees, many of them g...
Protein correlation profiling might assist in defining co-assembled proteins and subcellular distrib...
Protein turnover, the net result of protein synthesis and degradation, enables cells to remodel thei...
Synaptic plasticity is the dynamic regulation of the strength of synaptic communication between nerv...
Mechanisms underlying neural stem cell proliferation, differentiation and maturation play a critical...
Neurons are highly compartmentalized cells with tightly controlled subcellular protein organization....
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...
Synapses form the nuts and bolts of the brain. Synaptic transmission involves an intricate network o...
Homeostatic scaling adjusts the strength of synaptic connections up or down in response to large cha...
SummaryHomeostatic scaling adjusts the strength of synaptic connections up or down in response to la...
Homeostatic scaling adjusts the strength of synaptic connections up or down in response to large cha...
Ubiquitin-dependent receptor endocytosis and subsequent endocytic sorting to the lysosome for degrad...
One of the most fascinating features of the brain is its ability to adapt to its surroundings. Synap...
Development of the brain involves the formation and maturation of numerous synapses. This process re...
Similarly to the amazon rainforest which is formed by a multitude of different trees, many of them g...
Protein correlation profiling might assist in defining co-assembled proteins and subcellular distrib...
Protein turnover, the net result of protein synthesis and degradation, enables cells to remodel thei...
Synaptic plasticity is the dynamic regulation of the strength of synaptic communication between nerv...
Mechanisms underlying neural stem cell proliferation, differentiation and maturation play a critical...