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An Abundance of Free Proteasomal Regulatory (19S) Particles Regulate Neuronal Synapses Independent of the Proteasome

View ORCID ProfileChao Sun, Kristina Desch, Belquis Nassim-Assir, View ORCID ProfileStefano L. Giandomenico, View ORCID ProfilePaulina Nemcova, Julian D. Langer, Erin M. Schuman
doi: https://doi.org/10.1101/2022.10.17.512557
Chao Sun
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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Kristina Desch
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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Belquis Nassim-Assir
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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Stefano L. Giandomenico
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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  • ORCID record for Stefano L. Giandomenico
Paulina Nemcova
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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Julian D. Langer
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
2Max Planck Institute for Biophysics; Frankfurt am Main, Germany
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Erin M. Schuman
1Max Planck Institute for Brain Research; Frankfurt am Main, Germany
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  • For correspondence: erin.schuman@brain.mpg.de
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Posted October 17, 2022.
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An Abundance of Free Proteasomal Regulatory (19S) Particles Regulate Neuronal Synapses Independent of the Proteasome
Chao Sun, Kristina Desch, Belquis Nassim-Assir, Stefano L. Giandomenico, Paulina Nemcova, Julian D. Langer, Erin M. Schuman
bioRxiv 2022.10.17.512557; doi: https://doi.org/10.1101/2022.10.17.512557
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An Abundance of Free Proteasomal Regulatory (19S) Particles Regulate Neuronal Synapses Independent of the Proteasome
Chao Sun, Kristina Desch, Belquis Nassim-Assir, Stefano L. Giandomenico, Paulina Nemcova, Julian D. Langer, Erin M. Schuman
bioRxiv 2022.10.17.512557; doi: https://doi.org/10.1101/2022.10.17.512557

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