Sandbox Reserved 1120

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The binding of SRY on DNA is specific. The DNA target site is a DNA octamer :
The binding of SRY on DNA is specific. The DNA target site is a DNA octamer :
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<center><div style="width:90%; padding-top: 10px; padding-bottom: 10px;border: 1px dashed #A0A0A0; text-align: center;background: #DCFEDA;"><small>
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<center><div style="width:30%; padding-top: 10px; padding-bottom: 10px;border: 1px dashed #A0A0A0; text-align: center;background: #DCFEDA;"><small>
(5'-dGCACAAAC)<br/>
(5'-dGCACAAAC)<br/>
(5'-dGTTTGTGC)
(5'-dGTTTGTGC)
</small></div></center>
</small></div></center>
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This sequenece is found in the promoters of genes expressed during the testicular development
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This sequence is found in the promoters of genes expressed during the testicular development.
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The bend of DNA permits the recruitment of different proteins and the build of massives proteins-DNA complexes that could change the expression of different genes. It is the role of a transcription factor.<ref>PMID:11563911</ref>
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The bend of DNA enables the recruitment of different proteins and the building of massive proteins-DNA complexes that could change the expression of different genes<ref>PMID:11563911</ref>.
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Even if the most important function of the HMG box is its capacity of binding and bending DNA, it is also involved in DNA condensation, recombination and DNA repair.
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Even if the most important function of the HMG box is binding and bending DNA, it is also involved in DNA condensation, recombination and repair.
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There are 2 kinds of protein that contain a HMG box
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There are two kinds of proteins that contain a HMG box:
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* HMG1 : It is expressed in few cell types. It is found in transcription factors that contain a single HMG box. The bind to a DNA sequence is specific.
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* '''HMG1''' : It is expressed in few cell types. It is found in transcription factors that contain a single HMG box. The binding of a DNA sequence is specific.
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* HMG2 : Are found in all cell types and are abundant in chromatin. This proteins can contain two or more HMG boxes that can nonspecifically bind DNA.
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* '''HMG2''' : It is found in all cell types and is abundant in chromatin. These proteins can contain two or more HMG boxes that can non-specifically bind DNA.
===General structure of SRY===
===General structure of SRY===
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The overall structure of SRY is organized aroud the HMG-box.
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The overall structure of SRY is organized around the HMG-box.
3 domains:
3 domains:
* N-term domain
* N-term domain
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===Sex determining===
===Sex determining===
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:It acts like a sex determinator thanks to it transcriptionnal activity. It inhibits the developpement of female sex structure in th embryonnic individual.
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It acts like a sex determining factor thanks to its transcriptional activity. It inhibits the development of female sex structures in the embryonic individual.
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The SRY protein is a transcription factor, which contains nuclear localization domains in N terminal and C terminal. An acetylation on these domains allows to export the protein SRY in the nucleus. <ref>Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [http://press.endocrine.org/doi/10.1210/er.2002-0025?url_ver=Z39.88-2003&rfr_id=ori%3Arid%3Acrossref.org&rfr_dat=cr_pub%3Dpubmed&]</ref>
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The SRY protein contains nuclear localization signals in N and C terminals. An acetylation of these domains allows the exportation of the SRY protein to the nucleus<ref>Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [http://press.endocrine.org/doi/10.1210/er.2002-0025?url_ver=Z39.88-2003&rfr_id=ori%3Arid%3Acrossref.org&rfr_dat=cr_pub%3Dpubmed&]</ref>.
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The SRY protein activates the SOX9 (SRY-box9) gene <ref> McElreavey K, Barbaux S, Ion A, Fellous M. The genetic basis of murine and human sex determination: a review. Heredity. 1995 Dec;75 ( Pt 6):599–611. [http://www.ncbi.nlm.nih.gov/pubmed/8575930]</ref>., this gene is found in the 17 chromosom in the long arm 24.3 <ref> NCBI [http://www.ncbi.nlm.nih.gov/gene/6662] </ref> and is implicated in the stimulation of the differentiation of pre-Sertori cells as Sertoli cells rather than granulosa cells.
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The SRY protein activates the ''SOX9'' (SRY-box9) gene <ref> McElreavey K, Barbaux S, Ion A, Fellous M. The genetic basis of murine and human sex determination: a review. Heredity. 1995 Dec;75 ( Pt 6):599–611. [http://www.ncbi.nlm.nih.gov/pubmed/8575930]</ref>. This gene is found in long arm 24.3 of the chromosome 17<ref> NCBI [http://www.ncbi.nlm.nih.gov/gene/6662] </ref> and is implicated in the stimulation of the differentiation of pre-Sertori into Sertoli cells rather than granulosa cells.
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The activation of sox 9 are done with protein SRY and another transcriptional factor: SF1 (steroidogenic factor 1). These transcriptional factors are bind in an enhancers called: TESCO (testis-specific enhancer of Sox9 core element). The fixation of transcriptional factor in enhancer provokes a curvature of DNA (90°C) allowing a stabilisation of the elongation complex on the SOX9 promoter. The SOX 9 protein activates the gene AMH (anti-mullerian hormone)<ref>[http://www.ebi.ac.uk/interpro/entry/IPR006799?q=AMH] </ref> allows the reduction of the channels of Müller in male. <ref>Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [http://press.endocrine.org/doi/10.1210/er.2002-0025?url_ver=Z39.88-2003&rfr_id=ori%3Arid%3Acrossref.org&rfr_dat=cr_pub%3Dpubmed&]</ref>
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The activation of ''SOX''9 is done by the SRY protein and another transcriptional factor: SF1 (steroidogenic factor 1). These transcriptional factors are bound on an enhancer called: TESCO (Testis-Specific Enhancer of ''SOX9'' core element). The binding of a transcriptional factor on an enhancer provokes a curvature of the DNA (≈75°), allowing a stabilization of the elongation complex on the ''SOX9'' promoter. The SOX9 protein activates the gene ''AMH'' (Anti-Mullerian Hormone)<ref>[http://www.ebi.ac.uk/interpro/entry/IPR006799?q=AMH] </ref>. Therefor, it allows the reduction of the channels of Müller in male. <ref>Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [http://press.endocrine.org/doi/10.1210/er.2002-0025?url_ver=Z39.88-2003&rfr_id=ori%3Arid%3Acrossref.org&rfr_dat=cr_pub%3Dpubmed&]</ref>

Revision as of 22:29, 29 January 2016

This Sandbox is Reserved from 15/12/2015, through 15/06/2016 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1120 through Sandbox Reserved 1159.
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SRY protein (AKA TDF protein)

The SRY protein linked to DNA

Drag the structure with the mouse to rotate

References

Genetic Home reference

  1. Tang Y, Nilsson L. Interaction of human SRY protein with DNA: a molecular dynamics study. Proteins. 1998 Jun 1;31(4):417-33. PMID:9626701
  2. Sumner, A. T. Sex Chromosomes and Sex Determination. Chromosomes: Organization and Function, 97-108. [1]
  3. Bridges CB. TRIPLOID INTERSEXES IN DROSOPHILA MELANOGASTER. Science. 1921 Sep 16;54(1394):252-4. PMID:17769897 doi:http://dx.doi.org/10.1126/science.54.1394.252
  4. Goodfellow PN, Darling SM. Genetics of sex determination in man and mouse. Development. 1988 Feb;102(2):251-8. PMID:3046910
  5. Jost A. Becoming a male. Adv Biosci. 1973;10:3-13. PMID:4805859
  6. Goodfellow PN, Darling SM. Genetics of sex determination in man and mouse. Development. 1988 Feb;102(2):251-8. PMID:3046910
  7. Gubbay J, Collignon J, Koopman P, Capel B, Economou A, Munsterberg A, Vivian N, Goodfellow P, Lovell-Badge R. A gene mapping to the sex-determining region of the mouse Y chromosome is a member of a novel family of embryonically expressed genes. Nature. 1990 Jul 19;346(6281):245-50. PMID:2374589 doi:http://dx.doi.org/10.1038/346245a0
  8. Sinclair AH, Berta P, Palmer MS, Hawkins JR, Griffiths BL, Smith MJ, Foster JW, Frischauf AM, Lovell-Badge R, Goodfellow PN. A gene from the human sex-determining region encodes a protein with homology to a conserved DNA-binding motif. Nature. 1990 Jul 19;346(6281):240-4. PMID:1695712 doi:http://dx.doi.org/10.1038/346240a0
  9. Werner MH, Huth JR, Gronenborn AM, Clore GM. Molecular basis of human 46X,Y sex reversal revealed from the three-dimensional solution structure of the human SRY-DNA complex. Cell. 1995 Jun 2;81(5):705-14. PMID:7774012
  10. [2]
  11. McElreavey K, Barbaux S, Ion A, Fellous M. The genetic basis of murine and human sex determination: a review. Heredity. 1995 Dec;75 ( Pt 6):599–611. [3]
  12. Sekido R, Lovell-Badge R. Genetic control of testis development. Sex Dev Genet Mol Biol Evol Endocrinol Embryol Pathol Sex Determ Differ. 2013;7(1-3):21–32
  13. [4]
  14. Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [5]
  15. Larney C, Bailey TL, Koopman P. Switching on sex: transcriptional regulation of the testis-determining gene Sry. Dev Camb Engl. 2014 Jun;141(11):2195–205
  16. Tang Y, Nilsson L. Interaction of human SRY protein with DNA: a molecular dynamics study. Proteins. 1998 Jun 1;31(4):417-33. PMID:9626701
  17. Murphy EC, Zhurkin VB, Louis JM, Cornilescu G, Clore GM. Structural basis for SRY-dependent 46-X,Y sex reversal: modulation of DNA bending by a naturally occurring point mutation. J Mol Biol. 2001 Sep 21;312(3):481-99. PMID:11563911 doi:http://dx.doi.org/10.1006/jmbi.2001.4977
  18. Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [6]
  19. McElreavey K, Barbaux S, Ion A, Fellous M. The genetic basis of murine and human sex determination: a review. Heredity. 1995 Dec;75 ( Pt 6):599–611. [7]
  20. NCBI [8]
  21. [9]
  22. Harley VR, Clarkson MJ, Argentaro A. The Molecular Action and Regulation of the Testis-Determining Factors, SRY (Sex-Determining Region on the Y Chromosome) and SOX9 [SRY-Related High-Mobility Group (HMG) Box 9]. Endocr Rev. 2003 Aug 1;24(4):466–87. [10]
  23. Prokop JW, Watanabe IK, Turner ME, Underwood AC, Martins AS, Milsted A. From rat to human: regulation of Renin-Angiotensin system genes by sry. Int J Hypertens. 2012;2012:724240. doi: 10.1155/2012/724240. Epub 2012 Jan 22. PMID:22315667 doi:http://dx.doi.org/10.1155/2012/724240
  24. Veitia RA. Of adrenaline and SRY in males (comment on DOI 10.1002/bies.201100159). Bioessays. 2014 May;36(5):438. doi: 10.1002/bies.201400026. Epub 2014 Mar 7. PMID:24604382 doi:http://dx.doi.org/10.1002/bies.201400026
  25. Veitia RA. Of adrenaline and SRY in males (comment on DOI 10.1002/bies.201100159). Bioessays. 2014 May;36(5):438. doi: 10.1002/bies.201400026. Epub 2014 Mar 7. PMID:24604382 doi:http://dx.doi.org/10.1002/bies.201400026
  26. Cohen, Tamara. The 'macho' gene that makes men behave aggressively has been found. The Daily Mail (2012). [11]
  27. de la Chapelle A. Analytic review: nature and origin of males with XX sex chromosomes. Am J Hum Genet. 1972 Jan;24(1):71-105. PMID:4622299
  28. Xue TC, Zhang L, Ren ZG, Chen RX, Cui JF, Ge NL, Ye SL. Sex-determination gene SRY potentially associates with poor prognosis but not sex bias in hepatocellular carcinoma. Dig Dis Sci. 2015 Feb;60(2):427-35. doi: 10.1007/s10620-014-3377-y. Epub 2014 Oct, 2. PMID:25274159 doi:http://dx.doi.org/10.1007/s10620-014-3377-y
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