Quantitative Map of Proteome Dynamics during Neuronal Differentiation

Publication date

2017-02-07

Authors

Frese, C.ISNI 0000000391991067
Mikhaylova, MarinaISNI 0000000077177518
Stucchi, RiccardoISNI 0000000436351611
Gautier, VioletteISNI 0000000442078527
Liu, Q.ISNI 0000000506026196
Mohammed, ShabazISNI 0000000390338429
Heck, Albert J RORCID 0000-0002-2405-4404ISNI 0000000393921118
Altelaar, MaartenORCID 0000-0001-5093-5945ISNI 0000000393438329
Hoogenraad, C.C.ISNI 0000000396512854

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Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Neuronal differentiation is a multistep process that shapes and re-shapes neurons by progressing through several typical stages, including axon outgrowth, dendritogenesis, and synapse formation. To systematically profile proteome dynamics throughout neuronal differentiation, we took cultured rat hippocampal neurons at different developmental stages and monitored changes in protein abundance using a combination of stable isotope labeling and high-resolution liquid chromatography-tandem mass spectrometry (LC-MS/MS). Almost one third of all 4,500 proteins quantified underwent a more than 2-fold expression change during neuronal differentiation, indicating extensive remodeling of the neuron proteome. To highlight the strength of our resource, we studied the neural-cell-adhesion molecule 1 (NCAM1) and found that it stimulates dendritic arbor development by promoting actin filament growth at the dendritic growth cone. We anticipate that our quantitative map of neuronal proteome dynamics is a rich resource for further analyses of the many identified proteins in various neurodevelopmental processes.

Keywords

neuronal differentiation, neuronal development, dendrite outgrowth, neuroproteomics, NCAM1, adhesion molecule, proteome, quantitative proteomics, stable isotope labeling, mass spectrometry

Citation

Frese, C K, Mikhaylova, M, Stucchi, R, Gautier, V, Liu, Q, Mohammed, S, Heck, A J R, Altelaar, A F M & Hoogenraad, C C 2017, 'Quantitative Map of Proteome Dynamics during Neuronal Differentiation', Cell Reports, vol. 18, no. 6, pp. 1527-1542. https://doi.org/10.1016/j.celrep.2017.01.025