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Ultrastructural sublaminar-specific diversity of excitatory synaptic boutons in layer 1 of the adult human temporal lobe neocortex

Astrid Rollenhagen, Akram Sadeghi Dastjerdi, Bernd Walkenfort, Claus C. Hilgetag, Kurt Sätzler, View ORCID ProfileJoachim HR Lübke
doi: https://doi.org/10.1101/2024.06.14.599047
Astrid Rollenhagen
1Institute of Neuroscience and Medicine INM-10, Research Centre Jülich GmbH, Leo-Brandt Str., 52425 Jülich, Germany
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Akram Sadeghi Dastjerdi
1Institute of Neuroscience and Medicine INM-10, Research Centre Jülich GmbH, Leo-Brandt Str., 52425 Jülich, Germany
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Bernd Walkenfort
2Medical Research Centre, IMCES Electron Microscopy Unit (EMU), University Hospital Essen, Hufelandstr.11, 45122 Essen, Germany
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Claus C. Hilgetag
3University Hospital Hamburg-Eppendorf, Center for Experimental Medicine, Institute for Computational Neuroscience, Martinistraße 52, 20246 Hamburg, Germany
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Kurt Sätzler
4School of Biomedical Sciences, University of Ulster, Cromore Rd., BT52 1SA, Londonderry, UK
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Joachim HR Lübke
1Institute of Neuroscience and Medicine INM-10, Research Centre Jülich GmbH, Leo-Brandt Str., 52425 Jülich, Germany
5Department of Psychiatry, Psychotherapy and Psychosomatics, Medical Faculty/RWTH University Hospital Aachen, Pauwelsstr. 30, 52074 Aachen, Germany
6JARA Translational Brain Medicine, Germany
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  • ORCID record for Joachim HR Lübke
  • For correspondence: [email protected]
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Abstract

Layer (L)1, beside receiving massive cortico-cortical, commissural and associational projections, is the termination zone of tufted dendrites of pyramidal neurons and the area of Ca2+ spike initiation. However, its synaptic organization in humans is not known. Quantitative 3D-models of synaptic boutons (SBs) in L1 of the human temporal lobe neocortex were generated from non-epileptic neocortical biopsy tissue using transmission electron microscopy, 3D-volume reconstructions and EM tomography. Particularly, the size of active zones (AZs) and the readily releasable, recycling and resting pool of synaptic vesicles (SVs) were quantified.

SBs had a single large AZ (∼0.20 µm2), a total pool of ∼3500 SVs, a large readily releasable (∼4 SVs), recycling (∼470 SVs) and resting (∼2900 SVs) pool. Astrocytic coverage suggests cross talk at synaptic complexes.

Thus, L1 SBs mediate, integrate and synchronize contextual and cross-modal information, enabling flexible and state-dependent processing of feedforward sensory inputs from other layers of the cortical column.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY 4.0 International license.
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Posted June 15, 2024.
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Ultrastructural sublaminar-specific diversity of excitatory synaptic boutons in layer 1 of the adult human temporal lobe neocortex
Astrid Rollenhagen, Akram Sadeghi Dastjerdi, Bernd Walkenfort, Claus C. Hilgetag, Kurt Sätzler, Joachim HR Lübke
bioRxiv 2024.06.14.599047; doi: https://doi.org/10.1101/2024.06.14.599047
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Ultrastructural sublaminar-specific diversity of excitatory synaptic boutons in layer 1 of the adult human temporal lobe neocortex
Astrid Rollenhagen, Akram Sadeghi Dastjerdi, Bernd Walkenfort, Claus C. Hilgetag, Kurt Sätzler, Joachim HR Lübke
bioRxiv 2024.06.14.599047; doi: https://doi.org/10.1101/2024.06.14.599047

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