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PMID: 12966212 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Beyond laminar fate: toward a molecular classification of cortical projection/pyramidal neurons.

Developmental neuroscience ·Vol. 25 ·No. 2-4 ·2003-00-00 ·Pages 139-51

Hevner RF, Daza RA, Rubenstein JL, Stunnenberg H, Olavarria JF, Englund C

Abstract

Cortical projection neurons exhibit diverse morphological, physiological, and molecular phenotypes, but it is unknown how many distinct types exist. Many projection cell phenotypes are associated with laminar fate (radial position), but each layer may also contain multiple types of projection cells. We have investigated two hypotheses: (1) that different projection cell types exhibit characteristic molecular expression profiles and (2) that laminar fates are determined primarily by molecular phenotype. We found that several transcription factors were differentially expressed by projection neurons, even within the same layer: Otx1 and Er81, for example, were expressed by different neurons in layer 5. Retrograde tracing showed that Er81 was expressed in corticospinal and corticocortical neurons. In contrast, Otx1 has been detected only in corticobulbar neurons [Weimann et al., Neuron 1999;24:819-831]. Birthdating demonstrated that different molecularly defined types were produced sequentially, in overlapping waves. Cells adopted laminar fates characteristic of their molecular phenotypes, regardless of cell birthday. Molecular markers also revealed the locations of different projection cell types in the malformed cortex of reeler mice. These studies suggest that molecular profiles can be used advantageously for classifying cortical projection cells, for analyzing their neurogenesis and fate specification, and for evaluating cortical malformations.

MeSH Terms
Animals Animals, Newborn Biomarkers/analysis Brain/embryology,growth & development Bromodeoxyuridine Embryo, Mammalian Embryonic and Fetal Development/physiology Female Fluorescent Antibody Technique Gene Expression Regulation, Developmental Mice Mice, Neurologic Mutants Microscopy, Confocal Microscopy, Fluorescence Neurons/classification,cytology,metabolism Pregnancy Pyramidal Cells/cytology,metabolism Transcription Factors/biosynthesis
Chemicals
Biomarkers Transcription Factors Bromodeoxyuridine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Hevner Robert F
Department of Pathology, University of Washington, Harborview Medical Center, Seattle, Wash 98104-2499, USA. [email protected]
Daza Ray A M
Rubenstein John L R
Stunnenberg Henk
Olavarria Jaime F
Englund Chris
Article Info
Journal
Developmental neuroscience
Abbr.
Dev Neurosci
ISSN
0378-5866
Published
2003-00-00
Pages
139-51
Language
English
Region
Switzerland
NLM ID
7809375
Subset
IM
Grants
NINDS NIH HHS · NS01937 · United States
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