Sandbox Reserved 1091

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The ASP induced '''proteolysis digestion of proteins''' like [http://en.wikipedia.org/wiki/Kininogen kininogen], [http://en.wikipedia.org/wiki/Thrombin prothrombin], [http://en.wikipedia.org/wiki/Fibrinogen fibrinogen] or [http://en.wikipedia.org/wiki/Prekallikrein prekallikrein] at restricted sites generates fragments, expressing their own activity and therefore inducing specific physiological reactions. The [http://en.wikipedia.org/wiki/Kinin–kallikrein_system kinin system] activation, for example, reduces the blood pressure while the prothrombin system promotes plasma coagulation.
The ASP induced '''proteolysis digestion of proteins''' like [http://en.wikipedia.org/wiki/Kininogen kininogen], [http://en.wikipedia.org/wiki/Thrombin prothrombin], [http://en.wikipedia.org/wiki/Fibrinogen fibrinogen] or [http://en.wikipedia.org/wiki/Prekallikrein prekallikrein] at restricted sites generates fragments, expressing their own activity and therefore inducing specific physiological reactions. The [http://en.wikipedia.org/wiki/Kinin–kallikrein_system kinin system] activation, for example, reduces the blood pressure while the prothrombin system promotes plasma coagulation.
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In the '''kallikrein/kinin system''', the ASP induce the production of kinin from kininogen (low MW or high MW). The kinin also release caused edema at the infection site and shock in the circulation. The schematic representation of this action is represented : [http://www.degruyter.com/viewimg/j/bchm.2017.398.issue-10/hsz-2016-0344/hsz-2016-0344.xml?img=graphic/j_hsz-2016-0344_fig_002.jpg '''acting points of ASP in the kinin system''' ]
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In the '''kallikrein/kinin system''', the ASP induce the production of kinin from kininogen (low MW or high MW). The kinin also release caused edema at the infection site and shock in the circulation.
Experiments have been done in order to try to reduce the virulence activity of ASP. It has been demonstrated that the [http://fr.wikipedia.org/wiki/Alpha-2_macroglobuline α2-macroglobulin], a plasma protein, can limit ASP activity. This protein can bind to ASP which is thus inactivated. <ref>Inhibition of Aeromonas sobria serine protease (ASP) by α2-macroglobulin. Murakami Y et al. Biol Chem. 393(10):1193-200 (2012)</ref>
Experiments have been done in order to try to reduce the virulence activity of ASP. It has been demonstrated that the [http://fr.wikipedia.org/wiki/Alpha-2_macroglobuline α2-macroglobulin], a plasma protein, can limit ASP activity. This protein can bind to ASP which is thus inactivated. <ref>Inhibition of Aeromonas sobria serine protease (ASP) by α2-macroglobulin. Murakami Y et al. Biol Chem. 393(10):1193-200 (2012)</ref>

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This Sandbox is Reserved from 25/11/2019, through 30/9/2020 for use in the course "Structural Biology" taught by Bruno Kieffer at the University of Strasbourg, ESBS. This reservation includes Sandbox Reserved 1091 through Sandbox Reserved 1115.
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The serine protease from Aeromonas sobria : ASP

General structure of ASP protein (with Ca2+ Binding Site and Disulfide Bridges)

Drag the structure with the mouse to rotate

References

  1. Fuller RS, Brake A, Thorner J. Yeast prohormone processing enzyme (KEX2 gene product) is a Ca2+-dependent serine protease. Proc Natl Acad Sci U S A. 1989 Mar;86(5):1434-8. PMID:2646633
  2. Siezen RJ & Leunissen JAM (1997) Subtilase: the superfamily of subtilisin-like serine proteases. Protein Sci 6: 501–523.
  3. Aeromonas sobria serine protease (ASP): a subtilisin family endopeptidase with multiple virulence activities. Takahisa Imamura et al. (2017)
  4. http://www.msdmanuals.com/professional/critical-care-medicine/sepsis-and-septic-shock/sepsis-and-septic-shock
  5. Structural Basis for Action of the External Chaperone for a Propeptide-deficient Serine Protease from Aeromonas sobria. Kobayashi H et al. Biol. Chem. 290(17):11130-43 (2015)
  6. Khan R, Takahashi E, Ramamurthy T, Takeda Y, Okamoto K. Salt in surroundings influences the production of serine protease into milieu by Aeromonas sobria. Microbiol Immunol. 2007;51(10):963-76. PMID:17951986
  7. Aeromonas sobria serine protease (ASP): a subtilisin family endopeptidase with multiple virulence activities. Imamura T, Murakami Y, Nitta H. Biol. Chem. 398 1055-1068 (2017)
  8. Structural Basis for the Kexin-like Serine Protease from Aeromonas sobria as Sepsis-causing Factor. H Kobayashi et al. J Biol Chem. 284(40): 27655–27663 (2009)
  9. http://fr.wikipedia.org/wiki/Fichier:Serine_protease_mechanism_by_snellios.png
  10. Aeromonas sobria serine protease (ASP): a subtilisin family endopeptidase with multiple virulence activities. Imamura T, Murakami Y, Nitta H. Biol. Chem. 398 1055-1068 (2017)
  11. Cleavage specificity of serine protease of Aeromonas sobria, a member of the kexin family of subtilases., H. Kobayashi, Okayama University, Japan,FEMS Microbiology Letters, Volume 256, Issue 1, March 2006, Pages 165–170,
  12. Physicochemical and biological properties od an extracellular serine protease od Aeromonas sobria. Ritsuko Yokoyama, Yoshio Fujii et al. Japan (2002)
  13. Physicochemical and biological properties od an extracellular serine protease od Aeromonas sobria. Ritsuko Yokoyama, Yoshio Fujii et al. Japan (2002)
  14. Joseph, S. W., O. P. Daily, W. S. Hunt, R. J. Seidler, D. A. Allen, and R. R. Colwell. 1979. Aeromonas primary wound infection of a diver in polluted waters. J. Clin. Microbiol. 10:46-49.
  15. Cleavage specificity of serine protease of Aeromonas sobria, a member of the kexin family of subtilases., H. Kobayashi, Okayama University, Japan,FEMS Microbiology Letters, Volume 256, Issue 1, March 2006, Pages 165–170,
  16. Inhibition of Aeromonas sobria serine protease (ASP) by α2-macroglobulin. Murakami Y et al. Biol Chem. 393(10):1193-200 (2012)

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