Skip to main content
Journal cover image

Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex.

Publication ,  Journal Article
Chartrand, T; Dalley, R; Close, J; Goriounova, NA; Lee, BR; Mann, R; Miller, JA; Molnar, G; Mukora, A; Alfiler, L; Baker, K; Bakken, TE ...
Published in: Science
October 13, 2023

Neocortical layer 1 (L1) is a site of convergence between pyramidal-neuron dendrites and feedback axons where local inhibitory signaling can profoundly shape cortical processing. Evolutionary expansion of human neocortex is marked by distinctive pyramidal neurons with extensive L1 branching, but whether L1 interneurons are similarly diverse is underexplored. Using Patch-seq recordings from human neurosurgical tissue, we identified four transcriptomic subclasses with mouse L1 homologs, along with distinct subtypes and types unmatched in mouse L1. Subclass and subtype comparisons showed stronger transcriptomic differences in human L1 and were correlated with strong morphoelectric variability along dimensions distinct from mouse L1 variability. Accompanied by greater layer thickness and other cytoarchitecture changes, these findings suggest that L1 has diverged in evolution, reflecting the demands of regulating the expanded human neocortical circuit.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Science

DOI

EISSN

1095-9203

Publication Date

October 13, 2023

Volume

382

Issue

6667

Start / End Page

eadf0805

Location

United States

Related Subject Headings

  • Transcriptome
  • Pyramidal Cells
  • Neocortex
  • Mice
  • Interneurons
  • Humans
  • General Science & Technology
  • Axons
  • Animals
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Chartrand, T., Dalley, R., Close, J., Goriounova, N. A., Lee, B. R., Mann, R., … Lein, E. S. (2023). Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex. Science, 382(6667), eadf0805. https://doi.org/10.1126/science.adf0805
Chartrand, Thomas, Rachel Dalley, Jennie Close, Natalia A. Goriounova, Brian R. Lee, Rusty Mann, Jeremy A. Miller, et al. “Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex.Science 382, no. 6667 (October 13, 2023): eadf0805. https://doi.org/10.1126/science.adf0805.
Chartrand T, Dalley R, Close J, Goriounova NA, Lee BR, Mann R, et al. Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex. Science. 2023 Oct 13;382(6667):eadf0805.
Chartrand, Thomas, et al. “Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex.Science, vol. 382, no. 6667, Oct. 2023, p. eadf0805. Pubmed, doi:10.1126/science.adf0805.
Chartrand T, Dalley R, Close J, Goriounova NA, Lee BR, Mann R, Miller JA, Molnar G, Mukora A, Alfiler L, Baker K, Bakken TE, Berg J, Bertagnolli D, Braun T, Brouner K, Casper T, Csajbok EA, Dee N, Egdorf T, Enstrom R, Galakhova AA, Gary A, Gelfand E, Goldy J, Hadley K, Heistek TS, Hill D, Jorstad N, Kim L, Kocsis AK, Kruse L, Kunst M, Leon G, Long B, Mallory M, McGraw M, McMillen D, Melief EJ, Mihut N, Ng L, Nyhus J, Oláh G, Ozsvár A, Omstead V, Peterfi Z, Pom A, Potekhina L, Rajanbabu R, Rozsa M, Ruiz A, Sandle J, Sunkin SM, Szots I, Tieu M, Toth M, Trinh J, Vargas S, Vumbaco D, Williams G, Wilson J, Yao Z, Barzo P, Cobbs C, Ellenbogen RG, Esposito L, Ferreira M, Gouwens NW, Grannan B, Gwinn RP, Hauptman JS, Jarsky T, Keene CD, Ko AL, Koch C, Ojemann JG, Patel A, Ruzevick J, Silbergeld DL, Smith K, Sorensen SA, Tasic B, Ting JT, Waters J, de Kock CPJ, Mansvelder HD, Tamas G, Zeng H, Kalmbach B, Lein ES. Morphoelectric and transcriptomic divergence of the layer 1 interneuron repertoire in human versus mouse neocortex. Science. 2023 Oct 13;382(6667):eadf0805.
Journal cover image

Published In

Science

DOI

EISSN

1095-9203

Publication Date

October 13, 2023

Volume

382

Issue

6667

Start / End Page

eadf0805

Location

United States

Related Subject Headings

  • Transcriptome
  • Pyramidal Cells
  • Neocortex
  • Mice
  • Interneurons
  • Humans
  • General Science & Technology
  • Axons
  • Animals