Home LiteratureArticle Details
PMID: 12842915 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The Sox9 transcription factor determines glial fate choice in the developing spinal cord.

Genes & development ·Vol. 17 ·No. 13 ·2003-07-01 ·Pages 1677-89

Stolt CC, Lommes P, Sock E, Chaboissier MC, Schedl A, Wegner M

Abstract

The mechanism that causes neural stem cells in the central nervous system to switch from neurogenesis to gliogenesis is poorly understood. Here we analyzed spinal cord development of mice in which the transcription factor Sox9 was specifically ablated from neural stem cells by the CRE/loxP recombination system. These mice exhibit defects in the specification of oligodendrocytes and astrocytes, the two main types of glial cells in the central nervous system. Accompanying an early dramatic reduction in progenitors of the myelin-forming oligodendrocytes, there was a transient increase in motoneurons. Oligodendrocyte progenitor numbers recovered at later stages of development, probably owing to compensatory actions of the related Sox10 and Sox8, both of which overlap with Sox9 in the oligodendrocyte lineage. In agreement, compound loss of Sox9 and Sox10 led to a further decrease in oligodendrocyte progenitors. Astrocyte numbers were also severely reduced in the absence of Sox9 and did not recover at later stages of spinal cord development. Taking the common origin of motoneurons and oligodendrocytes as well as V2 interneurons and some astrocytes into account, stem cells apparently fail to switch from neurogenesis to gliogenesis in at least two domains of the ventricular zone, indicating that Sox9 is a major molecular component of the neuron-glia switch in the developing spinal cord.

MeSH Terms
Animals Astrocytes/physiology Cell Count Central Nervous System/cytology,embryology High Mobility Group Proteins/genetics,metabolism Interneurons/physiology Mice Mice, Transgenic Motor Neurons/physiology Oligodendroglia/physiology Recombination, Genetic SOX9 Transcription Factor Spinal Cord/cytology,embryology,metabolism Stem Cells/physiology Transcription Factors/genetics,metabolism
Chemicals
High Mobility Group Proteins SOX9 Transcription Factor Sox9 protein, mouse Transcription Factors
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Stolt C Claus
Institut für Biochemie, Universität Erlangen-Nuremberg, 91054 Erlangen, Germany.
Lommes Petra
Sock Elisabeth
Chaboissier Marie-Christine
Schedl Andreas
Wegner Michael
References (36)
36 references, click to expand
  1. Identification of a novel family of oligodendrocyte lineage-specific basic helix-loop-helix transcription factors.
    Neuron. 2000 Feb;25(2):331-43 PMID: 10719889
  2. Patterns of programmed cell death in populations of developing spinal motoneurons in chicken, mouse, and rat.
    Dev Biol. 1999 Oct 1;214(1):60-71 PMID: 10491257
  3. From head to toes: the multiple facets of Sox proteins.
    Nucleic Acids Res. 1999 Mar 15;27(6):1409-20 PMID: 10037800
  4. Cooperative function of POU proteins and SOX proteins in glial cells.
    J Biol Chem. 1998 Jun 26;273(26):16050-7 PMID: 9632656
  5. Mutation of the Sry-related Sox10 gene in Dominant megacolon, a mouse model for human Hirschsprung disease.
    Proc Natl Acad Sci U S A. 1998 Apr 28;95(9):5161-5 PMID: 9560246
  6. Disruption of the glucocorticoid receptor gene in the nervous system results in reduced anxiety.
    Nat Genet. 1999 Sep;23(1):99-103 PMID: 10471508
  7. Sox9 is required for cartilage formation.
    Nat Genet. 1999 May;22(1):85-9 PMID: 10319868
  8. Protein zero gene expression is regulated by the glial transcription factor Sox10.
    Mol Cell Biol. 2000 May;20(9):3198-209 PMID: 10757804
  9. Phylogeny of the SOX family of developmental transcription factors based on sequence and structural indicators.
    Dev Biol. 2000 Nov 15;227(2):239-55 PMID: 11071752
  10. The transcription factor Sox10 is a key regulator of peripheral glial development.
    Genes Dev. 2001 Jan 1;15(1):66-78 PMID: 11156606
  11. Neuronal specification in the spinal cord: inductive signals and transcriptional codes.
    Nat Rev Genet. 2000 Oct;1(1):20-9 PMID: 11262869
  12. Haploinsufficiency of Sox9 results in defective cartilage primordia and premature skeletal mineralization.
    Proc Natl Acad Sci U S A. 2001 Jun 5;98(12):6698-703 PMID: 11371614
  13. Localisation of the SRY-related HMG box protein, SOX9, in rodent brain.
    Brain Res. 2001 Jul 6;906(1-2):143-8 PMID: 11430871
  14. Idiopathic weight reduction in mice deficient in the high-mobility-group transcription factor Sox8.
    Mol Cell Biol. 2001 Oct;21(20):6951-9 PMID: 11564878
  15. Ventral neurogenesis and the neuron-glial switch.
    Neuron. 2001 Sep 13;31(5):677-80 PMID: 11567609
  16. The bHLH transcription factor Olig2 promotes oligodendrocyte differentiation in collaboration with Nkx2.2.
    Neuron. 2001 Sep 13;31(5):791-807 PMID: 11567617
  17. Survival and glial fate acquisition of neural crest cells are regulated by an interplay between the transcription factor Sox10 and extrinsic combinatorial signaling.
    Development. 2001 Oct;128(20):3949-61 PMID: 11641219
  18. Terminal differentiation of myelin-forming oligodendrocytes depends on the transcription factor Sox10.
    Genes Dev. 2002 Jan 15;16(2):165-70 PMID: 11799060
  19. The transcription factor Sox9 is required for cranial neural crest development in Xenopus.
    Development. 2002 Jan;129(2):421-32 PMID: 11807034
  20. Dual origin of spinal oligodendrocyte progenitors and evidence for the cooperative role of Olig2 and Nkx2.2 in the control of oligodendrocyte differentiation.
    Development. 2002 Feb;129(3):681-93 PMID: 11830569
  21. The bHLH transcription factors OLIG2 and OLIG1 couple neuronal and glial subtype specification.
    Cell. 2002 Apr 5;109(1):61-73 PMID: 11955447
  22. Common developmental requirement for Olig function indicates a motor neuron/oligodendrocyte connection.
    Cell. 2002 Apr 5;109(1):75-86 PMID: 11955448
  23. The basic helix-loop-helix factor olig2 is essential for the development of motoneuron and oligodendrocyte lineages.
    Curr Biol. 2002 Jul 9;12(13):1157-63 PMID: 12121626
  24. Oligodendrocyte and astrocyte development in rodents: an in situ and immunohistological analysis during embryonic development.
    Glia. 2002 Oct;40(1):25-43 PMID: 12237841
  25. The transcription factor Sox9 has essential roles in successive steps of the chondrocyte differentiation pathway and is required for expression of Sox5 and Sox6.
    Genes Dev. 2002 Nov 1;16(21):2813-28 PMID: 12414734
  26. Fgfr3 expression by astrocytes and their precursors: evidence that astrocytes and oligodendrocytes originate in distinct neuroepithelial domains.
    Development. 2003 Jan;130(1):93-102 PMID: 12441294
  27. Neuronal or glial progeny: regional differences in radial glia fate.
    Neuron. 2003 Mar 6;37(5):751-64 PMID: 12628166
  28. Astrocyte-specific protein and radial glia in the cerebral cortex of newborn rat.
    Nature. 1974 Nov 1;252(5478):55-6 PMID: 4610404
  29. Clonal analysis of astrocyte diversity in neonatal rat spinal cord cultures.
    Development. 1991 Sep;113(1):353-62 PMID: 1765006
  30. Campomelic dysplasia and autosomal sex reversal caused by mutations in an SRY-related gene.
    Nature. 1994 Dec 8;372(6506):525-30 PMID: 7990924
  31. Autosomal sex reversal and campomelic dysplasia are caused by mutations in and around the SRY-related gene SOX9.
    Cell. 1994 Dec 16;79(6):1111-20 PMID: 8001137
  32. The Sry-related gene Sox9 is expressed during chondrogenesis in mouse embryos.
    Nat Genet. 1995 Jan;9(1):15-20 PMID: 7704017
  33. A male-specific role for SOX9 in vertebrate sex determination.
    Development. 1996 Sep;122(9):2813-22 PMID: 8787755
  34. A role for the roof plate and its resident TGFbeta-related proteins in neuronal patterning in the dorsal spinal cord.
    Cell. 1997 Oct 3;91(1):127-38 PMID: 9335341
  35. Sox10, a novel transcriptional modulator in glial cells.
    J Neurosci. 1998 Jan 1;18(1):237-50 PMID: 9412504
  36. Sox10 mutation disrupts neural crest development in Dom Hirschsprung mouse model.
    Nat Genet. 1998 Jan;18(1):60-4 PMID: 9425902
Article Info
Journal
Genes & development
Abbr.
Genes Dev
ISSN
0890-9369
Published
2003-07-01
Pages
1677-89
Language
English
Region
United States
NLM ID
8711660
PMCID
PMC196138
Subset
IM
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]