Home LiteratureArticle Details
PMID: 18508260 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Review

The determination of projection neuron identity in the developing cerebral cortex.

Current opinion in neurobiology ·Vol. 18 ·No. 1 ·2008-02-00 ·Pages 28-35

Leone DP, Srinivasan K, Chen B, Alcamo E, McConnell SK

Abstract

Here we review the mechanisms that determine projection neuron identity during cortical development. Pyramidal neurons in the mammalian cerebral cortex can be classified into two major classes: corticocortical projection neurons, which are concentrated in the upper layers of the cortex, and subcortical projection neurons, which are found in the deep layers. Early progenitor cells in the ventricular zone produce deep layer neurons that express transcription factors including Sox5, Fezf2, and Ctip2, which play important roles in the specification of subcortically projecting axons. Upper layer neurons are produced from progenitors in the subventricular zone, and the expression of Satb2 in these differentiating neurons is required for the formation of axonal projections that connect the two cerebral hemispheres. The Fezf2/Ctip2 and Satb2 pathways appear to be mutually repressive, thus ensuring that individual neurons adopt either a subcortical or callosal projection neuron identity at early times during development. The molecular mechanisms by which Satb2 regulates gene expression involves long-term epigenetic changes in chromatin configuration, which may enable cell fate decisions to be maintained during development.

MeSH Terms
Animals Cell Differentiation/genetics Cell Lineage/genetics Cell Proliferation Cerebral Cortex/cytology,embryology,metabolism Efferent Pathways/cytology,embryology,metabolism Gene Expression Regulation, Developmental/genetics Humans Phenotype Pyramidal Cells/cytology,metabolism Stem Cells/cytology,metabolism Transcription Factors/genetics,metabolism
Chemicals
Transcription Factors
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Leone Dino P
Department of Biology, Stanford University, Stanford, CA 94305, USA.
Srinivasan Karpagam
Chen Bin
Alcamo Elizabeth
McConnell Susan K
References (51)
51 references, click to expand
  1. Cortical upper layer neurons derive from the subventricular zone as indicated by Svet1 gene expression.
    Development. 2001 Jun;128(11):1983-93 PMID: 11493521
  2. Otx1 and Otx2 define layers and regions in developing cerebral cortex and cerebellum.
    J Neurosci. 1994 Oct;14(10):5725-40 PMID: 7931541
  3. Neurons derived from radial glial cells establish radial units in neocortex.
    Nature. 2001 Feb 8;409(6821):714-20 PMID: 11217860
  4. Asymmetric inheritance of radial glial fibers by cortical neurons.
    Neuron. 2001 Sep 13;31(5):727-41 PMID: 11567613
  5. Role of the Otx1 gene in cell differentiation of mammalian cortex.
    Eur J Neurosci. 2004 May;19(10):2893-902 PMID: 15147323
  6. The timing of cortical neurogenesis is encoded within lineages of individual progenitor cells.
    Nat Neurosci. 2006 Jun;9(6):743-51 PMID: 16680166
  7. Asymmetric production of surface-dividing and non-surface-dividing cortical progenitor cells.
    Development. 2004 Jul;131(13):3133-45 PMID: 15175243
  8. Role of Sox2 in the development of the mouse neocortex.
    Dev Biol. 2006 Jul 1;295(1):52-66 PMID: 16631155
  9. Dynamics of Cux2 expression suggests that an early pool of SVZ precursors is fated to become upper cortical layer neurons.
    Cereb Cortex. 2004 Dec;14(12):1408-20 PMID: 15238450
  10. Expression of Cux-1 and Cux-2 in the subventricular zone and upper layers II-IV of the cerebral cortex.
    J Comp Neurol. 2004 Nov 8;479(2):168-80 PMID: 15452856
  11. Keep your fingers off my DNA: protein-protein interactions mediated by C2H2 zinc finger domains.
    Cell Biochem Biophys. 2008;50(3):111-31 PMID: 18253864
  12. SOX5 controls the sequential generation of distinct corticofugal neuron subtypes.
    Neuron. 2008 Jan 24;57(2):232-47 PMID: 18215621
  13. Restriction of late cerebral cortical progenitors to an upper-layer fate.
    Neuron. 1996 Jul;17(1):55-61 PMID: 8755478
  14. Isolation and characterization of SATB2, a novel AT-rich DNA binding protein expressed in development- and cell-specific manner in the rat brain.
    Neurochem Res. 2006 Feb;31(2):237-46 PMID: 16604441
  15. Neurons arise in the basal neuroepithelium of the early mammalian telencephalon: a major site of neurogenesis.
    Proc Natl Acad Sci U S A. 2004 Mar 2;101(9):3196-201 PMID: 14963232
  16. The generation of neuronal diversity in the central nervous system.
    Annu Rev Neurosci. 1991;14:269-300 PMID: 2031572
  17. Expression pattern of the Tbr2 (Eomesodermin) gene during mouse and chick brain development.
    Mech Dev. 1999 Jun;84(1-2):133-8 PMID: 10473127
  18. Subplate neurons regulate maturation of cortical inhibition and outcome of ocular dominance plasticity.
    Neuron. 2006 Sep 7;51(5):627-38 PMID: 16950160
  19. Recruitment of chromatin-modifying enzymes by CTIP2 promotes HIV-1 transcriptional silencing.
    EMBO J. 2007 Jan 24;26(2):412-23 PMID: 17245431
  20. Cell cycle dependence of laminar determination in developing neocortex.
    Science. 1991 Oct 11;254(5029):282-5 PMID: 1925583
  21. Growth patterns in the lateral wall of the mouse telencephalon. II. Histological changes during and subsequent to the period of isocortical neuron production.
    J Anat. 1982 May;134(Pt 3):415-42 PMID: 7107510
  22. CTIP2 associates with the NuRD complex on the promoter of p57KIP2, a newly identified CTIP2 target gene.
    J Biol Chem. 2006 Oct 27;281(43):32272-83 PMID: 16950772
  23. The origin and specification of cortical interneurons.
    Nat Rev Neurosci. 2006 Sep;7(9):687-96 PMID: 16883309
  24. Connectional distinction between callosal and subcortically projecting cortical neurons is determined prior to axon extension.
    Dev Biol. 1993 Nov;160(1):1-14 PMID: 8224528
  25. The protein-binding potential of C2H2 zinc finger domains.
    Cell Biochem Biophys. 2008;51(1):9-19 PMID: 18286240
  26. The temporal and spatial origins of cortical interneurons predict their physiological subtype.
    Neuron. 2005 Nov 23;48(4):591-604 PMID: 16301176
  27. Eomesodermin is required for mouse trophoblast development and mesoderm formation.
    Nature. 2000 Mar 2;404(6773):95-9 PMID: 10716450
  28. Fezl regulates the differentiation and axon targeting of layer 5 subcortical projection neurons in cerebral cortex.
    Proc Natl Acad Sci U S A. 2005 Nov 22;102(47):17184-9 PMID: 16284245
  29. Asymmetric distribution of the apical plasma membrane during neurogenic divisions of mammalian neuroepithelial cells.
    EMBO J. 2004 Jun 2;23(11):2314-24 PMID: 15141162
  30. Neuronal subtype-specific genes that control corticospinal motor neuron development in vivo.
    Neuron. 2005 Jan 20;45(2):207-21 PMID: 15664173
  31. Distinct behaviors of neural stem and progenitor cells underlie cortical neurogenesis.
    J Comp Neurol. 2008 May 1;508(1):28-44 PMID: 18288691
  32. Multiple origins of Cajal-Retzius cells at the borders of the developing pallium.
    Nat Neurosci. 2005 Aug;8(8):1002-12 PMID: 16041369
  33. Dynamic expression of murine Cux2 in craniofacial, limb, urogenital and neuronal primordia.
    Gene Expr Patterns. 2003 Oct;3(5):571-7 PMID: 12971989
  34. Satb2 is a postmitotic determinant for upper-layer neuron specification in the neocortex.
    Neuron. 2008 Feb 7;57(3):378-92 PMID: 18255031
  35. Fezl is required for the birth and specification of corticospinal motor neurons.
    Neuron. 2005 Sep 15;47(6):817-31 PMID: 16157277
  36. Dividing precursor cells of the embryonic cortical ventricular zone have morphological and molecular characteristics of radial glia.
    J Neurosci. 2002 Apr 15;22(8):3161-73 PMID: 11943818
  37. Cleavage orientation and the asymmetric inheritance of Notch1 immunoreactivity in mammalian neurogenesis.
    Cell. 1995 Aug 25;82(4):631-41 PMID: 7664342
  38. Brn-1 and Brn-2 share crucial roles in the production and positioning of mouse neocortical neurons.
    Genes Dev. 2002 Jul 15;16(14):1760-5 PMID: 12130536
  39. Tbr1 regulates differentiation of the preplate and layer 6.
    Neuron. 2001 Feb;29(2):353-66 PMID: 11239428
  40. Pax6, Tbr2, and Tbr1 are expressed sequentially by radial glia, intermediate progenitor cells, and postmitotic neurons in developing neocortex.
    J Neurosci. 2005 Jan 5;25(1):247-51 PMID: 15634788
  41. Cortical neurons arise in symmetric and asymmetric division zones and migrate through specific phases.
    Nat Neurosci. 2004 Feb;7(2):136-44 PMID: 14703572
  42. SATB2 interacts with chromatin-remodeling molecules in differentiating cortical neurons.
    Eur J Neurosci. 2008 Feb;27(4):865-73 PMID: 18333962
  43. Zfp312 is required for subcortical axonal projections and dendritic morphology of deep-layer pyramidal neurons of the cerebral cortex.
    Proc Natl Acad Sci U S A. 2005 Dec 6;102(49):17792-7 PMID: 16314561
  44. A transgenic marker mouse line labels Cajal-Retzius cells from the cortical hem and thalamocortical axons.
    Brain Res. 2006 Mar 10;1077(1):48-53 PMID: 16490185
  45. Cloning and cortical expression of rat Emx2 and adenovirus-mediated overexpression to assess its regulation of area-specific targeting of thalamocortical axons.
    Cereb Cortex. 2003 Jun;13(6):648-60 PMID: 12764041
  46. Transformation of pin-like ventricular zone cells into cortical neurons.
    Neurosci Res. 2007 Feb;57(2):326-9 PMID: 17141905
  47. Fez1 is layer-specifically expressed in the adult mouse neocortex.
    Eur J Neurosci. 2004 Dec;20(11):2909-16 PMID: 15579145
  48. Zinc finger gene fez-like functions in the formation of subplate neurons and thalamocortical axons.
    Dev Dyn. 2004 Jul;230(3):546-56 PMID: 15188439
  49. Satb2 regulates callosal projection neuron identity in the developing cerebral cortex.
    Neuron. 2008 Feb 7;57(3):364-77 PMID: 18255030
  50. Progressive restriction in fate potential by neural progenitors during cerebral cortical development.
    Development. 2000 Jul;127(13):2863-72 PMID: 10851131
  51. Cux-2 controls the proliferation of neuronal intermediate precursors of the cortical subventricular zone.
    Cereb Cortex. 2008 Aug;18(8):1758-70 PMID: 18033766
Article Info
Journal
Current opinion in neurobiology
Abbr.
Curr Opin Neurobiol
ISSN
0959-4388
Published
2008-02-00
Epub
2008-00-26
Pages
28-35
Language
English
Region
England
NLM ID
9111376
PMCID
PMC2483251
Subset
IM
Grants
NEI NIH HHS · R01 EY008411 · United States
NEI NIH HHS · R01 EY008411-19 · United States
NEI NIH HHS · EY 08411 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]