Literature DB >> 8625802

A comparison of the properties of Sox-3 with Sry and two related genes, Sox-1 and Sox-2.

J Collignon1, S Sockanathan, A Hacker, M Cohen-Tannoudji, D Norris, S Rastan, M Stevanovic, P N Goodfellow, R Lovell-Badge.   

Abstract

The Sox gene family consists of a large number of embryonically expressed genes related via the possession of a 79-amino-acid DNA-binding domain known as the HMG box. Partial clones for the first three Sox genes (al-a3) were isolated by homology to the HMG box of the testis-determining gene Sry and are now termed Sox-1, Sox-2 and Sox-3, Sox-3 is highly conserved amongst mammalian species and is located on the X chromosome. This has led to the proposal that Sry evolved from Sox-3. We present the cloning and sequencing of Sox-1, Sox-2 and Sox-3 from the mouse and show that Sox-3 is most closely relate to Sry. We also confirm that mouse Sox-3 is located on the X chromosome between Hprt and Dmd. Analysis of the distribution of Sox-3 RNA shows that its main site of expression is in the developing central nervous system, suggesting a role for Sox-3 in neural development. Moreover, we demonstrate that Sox-3, as well as Sox-1 and Sox-2, are expressed in the urogenital ridge and that their protein products are able to bind the same DNA sequence motif as Sry in vitro, but with different affinities. These observations prompt discussion of an evolutionary link between the genes and support the model that Sry has evolved from Sox-3. However our findings imply that if this is true, then Sry has undergone concomitant changes resulting in loss of CNS expression and altered DNA-binding properties.

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Year:  1996        PMID: 8625802     DOI: 10.1242/dev.122.2.509

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  122 in total

1.  Mutation analysis of subjects with 46, XX sex reversal and 46, XY gonadal dysgenesis does not support the involvement of SOX3 in testis determination.

Authors:  H N Lim; G D Berkovitz; I A Hughes; J R Hawkins
Journal:  Hum Genet       Date:  2000-11-14       Impact factor: 4.132

2.  Members of the SRY family regulate the human LINE retrotransposons.

Authors:  T Tchénio; J F Casella; T Heidmann
Journal:  Nucleic Acids Res       Date:  2000-01-15       Impact factor: 16.971

3.  Serological identification of embryonic neural proteins as highly immunogenic tumor antigens in small cell lung cancer.

Authors:  A O Güre; E Stockert; M J Scanlan; R S Keresztes; D Jäger; N K Altorki; L J Old; Y T Chen
Journal:  Proc Natl Acad Sci U S A       Date:  2000-04-11       Impact factor: 11.205

4.  The glial transcription factor Sox10 binds to DNA both as monomer and dimer with different functional consequences.

Authors:  R I Peirano; M Wegner
Journal:  Nucleic Acids Res       Date:  2000-08-15       Impact factor: 16.971

Review 5.  Evolution of neural crest and placodes: amphioxus as a model for the ancestral vertebrate?

Authors:  L Z Holland; N D Holland
Journal:  J Anat       Date:  2001 Jul-Aug       Impact factor: 2.610

6.  Mice null for sox18 are viable and display a mild coat defect.

Authors:  D Pennisi; J Bowles; A Nagy; G Muscat; P Koopman
Journal:  Mol Cell Biol       Date:  2000-12       Impact factor: 4.272

7.  Lineage allocation and asymmetries in the early mouse embryo.

Authors:  Janet Rossant; Claire Chazaud; Yojiro Yamanaka
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2003-08-29       Impact factor: 6.237

8.  Identification of Sox-2 regulatory region which is under the control of Oct-3/4-Sox-2 complex.

Authors:  Mizuho Tomioka; Masazumi Nishimoto; Satoru Miyagi; Tomoko Katayanagi; Nobutaka Fukui; Hitoshi Niwa; Masami Muramatsu; Akihiko Okuda
Journal:  Nucleic Acids Res       Date:  2002-07-15       Impact factor: 16.971

9.  Genetic and functional differences between multipotent neural and pluripotent embryonic stem cells.

Authors:  Kevin A D'Amour; Fred H Gage
Journal:  Proc Natl Acad Sci U S A       Date:  2003-08-15       Impact factor: 11.205

10.  SOX2 is a dose-dependent regulator of retinal neural progenitor competence.

Authors:  Olena V Taranova; Scott T Magness; B Matthew Fagan; Yongqin Wu; Natalie Surzenko; Scott R Hutton; Larysa H Pevny
Journal:  Genes Dev       Date:  2006-05-01       Impact factor: 11.361

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