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Extracellular LGALS3BP regulates neural progenitor position and relates to human cortical complexity

  • Christina Kyrousi
  • , Adam C. O’Neill
  • , Agnieska Brazovskaja
  • , Zhisong He
  • , Pavel Kielkowski
  • , Laure Coquand
  • , Rossella Di Giaimo
  • , Pierpaolo D’ Andrea
  • , Alexander Belka
  • , Andrea Forero Echeverry
  • , Davide Mei
  • , Matteo Lenge
  • , Cristiana Cruceanu
  • , Isabel Y. Buchsbaum
  • , Shahryar Khattak
  • , Guimiot Fabien
  • , Elisabeth Binder
  • , Frances Elmslie
  • , Renzo Guerrini
  • , Alexandre D. Baffet
  • Stephan A. Sieber, Barbara Treutlein, Stephen P. Robertson, Silvia Cappello
  • Max Planck Institute of Psychiatry
  • National and Kapodistrian University of Athens
  • University of Otago
  • Max Planck Institute for Evolutionary Anthropology
  • ETH Zürich
  • Technical University of Munich
  • Ludwig-Maximilians-Universität München
  • École Normale Supérieure and Paris Sciences and Lettres (PSL) Research University
  • Università degli Studi di Napoli Federico II
  • University of Florence
  • Center for Regenerative Therapies Dresden
  • Royal College of Surgeons Ireland (RCSI) in Bahrain
  • Hôpital Robert Debré
  • St. George's University of London

Research output: Contribution to journalArticlepeer-review

50 Scopus citations

Abstract

Basal progenitors (BPs), including intermediate progenitors and basal radial glia, are generated from apical radial glia and are enriched in gyrencephalic species like humans, contributing to neuronal expansion. Shortly after generation, BPs delaminate towards the subventricular zone, where they further proliferate before differentiation. Gene expression alterations involved in BP delamination and function in humans are poorly understood. Here, we study the role of LGALS3BP, so far known as a cancer biomarker, which is a secreted protein enriched in human neural progenitors (NPCs). We show that individuals with LGALS3BP de novo variants exhibit altered local gyrification, sulcal depth, surface area and thickness in their cortex. Additionally, using cerebral organoids, human fetal tissues and mice, we show that LGALS3BP regulates the position of NPCs. Single-cell RNA-sequencing and proteomics reveal that LGALS3BP-mediated mechanisms involve the extracellular matrix in NPCs’ anchoring and migration within the human brain. We propose that its temporal expression influences NPCs’ delamination, corticogenesis and gyrification extrinsically.

Original languageEnglish
Article number6298
JournalNature Communications
Volume12
Issue number1
DOIs
StatePublished - 1 Dec 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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