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SRX8403299: Ribosome profiling of rattus norvegicus: hippocampal cultures
1 ILLUMINA (NextSeq 500) run: 92.5M spots, 4.8G bases, 1.4Gb downloads

Design: Cells were homogenized in polysome lysis buffer, lysate was clarified with high speed spin. Ribosome footprint libraries were prepared according to McGlincy and Ingolia et al. 2017. The corresponding control samples are Hippocampal_Neurons_control_0s_01, Hippocampal_Neurons_control_0s_02 and Hippocampal_Neurons_control_0s_03.
Submitted by: Max-Planck Institute for Brain Research
Study: The mRNA translation landscape in the synaptic neuropil
show Abstracthide Abstract
To form and modify synaptic connections and store information, neurons continuously remodel their proteomes. The impressive length of dendrites and axons imposes unique logistical challenges to maintain synaptic proteins at locations remote from the transcription source (the nucleus). The discovery of thousands of mRNAs near synapses suggested that neurons overcome distance and gain autonomy by producing proteins locally. It is not known, however if, how and when localized mRNAs are translated into protein. To investigate the translational landscape in neuronal subregions, we performed simultaneous RNA-seq and Ribo-seq from microdissected rodent brain slices to identify and quantify the transcriptome and translatome in cell bodies and the dendrites and axons (neuropil). More than 4800 transcripts were translated in synaptic regions. Thousands of transcripts were found differentially translated between somatic and synaptic regions, with scaffold and signaling molecules mostly arising from local sources. Furthermore, specific mRNA features were identified that regulate the efficiency of mRNA translation. The findings overturn the view that local translation is a minor source of synaptic protein and indicate that on-site translational control is an important mechanism to control synaptic strength.
Sample: Ribosome profiling
SAMN15014699 • SRS6715864 • All experiments • All runs
Library:
Name: Hippocampal_Neurons_harringtonine_15s_01
Instrument: NextSeq 500
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: SINGLE
Runs: 1 run, 92.5M spots, 4.8G bases, 1.4Gb
Run# of Spots# of BasesSizePublished
SRR1185316192,508,7194.8G1.4Gb2021-06-01

ID:
10928952

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