User:Glauco O. Gavioli Ferreira/Sandbox 1

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====RCL====
====RCL====
Maspin structure does not differ a lot from other clade B serpins. It has three ß-sheets, nine 𝛂-helices and a reactive center loop (RCL). The latter is exposed in ordinary serpins and has a great flexibility.
Maspin structure does not differ a lot from other clade B serpins. It has three ß-sheets, nine 𝛂-helices and a reactive center loop (RCL). The latter is exposed in ordinary serpins and has a great flexibility.
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Serpins that have mutations within their RCL which interfere with the ability to undergo the stressed (S) to relaxed (R) conformational change cannot inhibit proteases and maspin’s RCL is the one among serpins that has the most different sequence <ref name="P" /> <ref name="numero9">PMID: 15501821</ref> <ref name="numero10">PMID: 11435447</ref>.
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Serpins that have mutations within their RCL which interfere with the ability to undergo the stressed (S) to relaxed (R) conformational change cannot inhibit proteases and maspin’s RCL is the one among serpins that has the most different sequence <ref name="P" /><ref name="numero9">PMID: 15501821</ref><ref name="numero10">PMID: 11435447</ref>.
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Maspin does not present the conformational switch already discussed and does not have the consensus motif present in other serpins <ref name="P" />. The intact RCL is necessary for maspin’s activity as a tumor suppressor <ref name="numero11">PMID: 7983035</ref>, but there is no rearrangement of this structure, in other words, there is no S to R conformational change <ref name="numero12">PMID: 7797587</ref> <ref name="numero13">PMID: 12384513</ref>. Besides that, the RCL alone has been related to cell matrix adhesion and inhibition of cell invasion (Ngamkitidechakul, C., Warejcka, D. J., Burke, J. M., O’Brien, W. J., and Twining, S. S. (2003) J. Biol. Chem. 267, 31796 –31806).
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Maspin does not present the conformational switch already discussed and does not have the consensus motif present in other serpins <ref name="P" />. The intact RCL is necessary for maspin’s activity as a tumor suppressor <ref name="numero11">PMID: 7983035</ref>, but there is no rearrangement of this structure, in other words, there is no S to R conformational change <ref name="numero12">PMID: 7797587</ref><ref name="numero13">PMID: 12384513</ref>. Besides that, the RCL alone has been related to cell matrix adhesion and inhibition of cell invasion <ref name="numero14">PMID: 12799381</ref>.
One of the reasons for maspin’s RCL being unable to undergo the conformational switch is its limited flexibility, as it is not flexible like other serpins <ref name="P" />. The RCL of Maspin is shorter by four residues and lies closer to the serpin core of the molecule, it is positioned further “back”, in other words closer to the N-terminal, than all of the other known serpin RCL structures (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties). Besides that, the RCL of Maspin is stabilized by bonding interactions with amino acid side chains of the ß-sheet C, leading to a more rigid structure (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties). Additionally, the breach, where the cleaved RCL is inserted and which is present in other serpins, is not seen on maspin (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties).
One of the reasons for maspin’s RCL being unable to undergo the conformational switch is its limited flexibility, as it is not flexible like other serpins <ref name="P" />. The RCL of Maspin is shorter by four residues and lies closer to the serpin core of the molecule, it is positioned further “back”, in other words closer to the N-terminal, than all of the other known serpin RCL structures (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties). Besides that, the RCL of Maspin is stabilized by bonding interactions with amino acid side chains of the ß-sheet C, leading to a more rigid structure (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties). Additionally, the breach, where the cleaved RCL is inserted and which is present in other serpins, is not seen on maspin (Crystal Structure of Human Maspin, a Serpin with Antitumor Properties).

Revision as of 20:13, 18 June 2022

SerpinB5 (Maspin)

Caption for this structure

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References

  1. 1.0 1.1 1.2 Khalkhali-Ellis Z. Maspin: the new frontier. Clin Cancer Res. 2006 Dec 15;12(24):7279-83. doi: 10.1158/1078-0432.CCR-06-1589. PMID:17189399 doi:http://dx.doi.org/10.1158/1078-0432.CCR-06-1589
  2. 2.0 2.1 Banias L, Jung I, Gurzu S. Subcellular expression of maspin – from normal tissue to tumor cells. World J Meta-Anal 2019; 7(4): 142-155. doi: https://dx.doi.org/10.13105/wjma.v7.i4.142
  3. 3.0 3.1 3.2 3.3 3.4 3.5 3.6 3.7 3.8 3.9 Law RH, Irving JA, Buckle AM, Ruzyla K, Buzza M, Bashtannyk-Puhalovich TA, Beddoe TC, Nguyen K, Worrall DM, Bottomley SP, Bird PI, Rossjohn J, Whisstock JC. The high resolution crystal structure of the human tumor suppressor maspin reveals a novel conformational switch in the G-helix. J Biol Chem. 2005 Jun 10;280(23):22356-64. Epub 2005 Mar 10. PMID:15760906 doi:http://dx.doi.org/10.1074/jbc.M412043200
  4. 4.0 4.1 4.2 4.3 Law RH, Zhang Q, McGowan S, Buckle AM, Silverman GA, Wong W, Rosado CJ, Langendorf CG, Pike RN, Bird PI, Whisstock JC. An overview of the serpin superfamily. Genome Biol. 2006;7(5):216. doi: 10.1186/gb-2006-7-5-216. Epub 2006 May 30. PMID:16737556 doi:http://dx.doi.org/10.1186/gb-2006-7-5-216
  5. Huntington JA, Read RJ, Carrell RW. Structure of a serpin-protease complex shows inhibition by deformation. Nature. 2000 Oct 19;407(6806):923-6. PMID:11057674 doi:10.1038/35038119
  6. Zou Z, Anisowicz A, Hendrix MJ, Thor A, Neveu M, Sheng S, Rafidi K, Seftor E, Sager R. Maspin, a serpin with tumor-suppressing activity in human mammary epithelial cells. Science. 1994 Jan 28;263(5146):526-9. PMID:8290962
  7. Goulet B, Kennette W, Ablack A, Postenka CO, Hague MN, Mymryk JS, Tuck AB, Giguere V, Chambers AF, Lewis JD. Nuclear localization of maspin is essential for its inhibition of tumor growth and metastasis. Lab Invest. 2011 Aug;91(8):1181-7. doi: 10.1038/labinvest.2011.66. Epub 2011 Apr , 18. PMID:21502940 doi:http://dx.doi.org/10.1038/labinvest.2011.66
  8. 8.0 8.1 Bodenstine TM, Seftor RE, Khalkhali-Ellis Z, Seftor EA, Pemberton PA, Hendrix MJ. Maspin: molecular mechanisms and therapeutic implications. Cancer Metastasis Rev. 2012 Dec;31(3-4):529-51. doi: 10.1007/s10555-012-9361-0. PMID:22752408 doi:http://dx.doi.org/10.1007/s10555-012-9361-0
  9. Yin S, Li X, Meng Y, Finley RL Jr, Sakr W, Yang H, Reddy N, Sheng S. Tumor-suppressive maspin regulates cell response to oxidative stress by direct interaction with glutathione S-transferase. J Biol Chem. 2005 Oct 14;280(41):34985-96. doi: 10.1074/jbc.M503522200. Epub 2005, Jul 26. PMID:16049007 doi:http://dx.doi.org/10.1074/jbc.M503522200
  10. Al-Ayyoubi M, Gettins PG, Volz K. Crystal structure of human maspin, a serpin with antitumor properties: reactive center loop of maspin is exposed but constrained. J Biol Chem. 2004 Dec 31;279(53):55540-4. Epub 2004 Oct 22. PMID:15501821 doi:10.1074/jbc.M409957200
  11. Silverman GA, Bird PI, Carrell RW, Church FC, Coughlin PB, Gettins PG, Irving JA, Lomas DA, Luke CJ, Moyer RW, Pemberton PA, Remold-O'Donnell E, Salvesen GS, Travis J, Whisstock JC. The serpins are an expanding superfamily of structurally similar but functionally diverse proteins. Evolution, mechanism of inhibition, novel functions, and a revised nomenclature. J Biol Chem. 2001 Sep 7;276(36):33293-6. doi: 10.1074/jbc.R100016200. Epub 2001, Jul 2. PMID:11435447 doi:http://dx.doi.org/10.1074/jbc.R100016200
  12. Sheng S, Pemberton PA, Sager R. Production, purification, and characterization of recombinant maspin proteins. J Biol Chem. 1994 Dec 9;269(49):30988-93. PMID:7983035
  13. Pemberton PA, Wong DT, Gibson HL, Kiefer MC, Fitzpatrick PA, Sager R, Barr PJ. The tumor suppressor maspin does not undergo the stressed to relaxed transition or inhibit trypsin-like serine proteases. Evidence that maspin is not a protease inhibitory serpin. J Biol Chem. 1995 Jun 30;270(26):15832-7. PMID:7797587
  14. Bass R, Fernandez AM, Ellis V. Maspin inhibits cell migration in the absence of protease inhibitory activity. J Biol Chem. 2002 Dec 6;277(49):46845-8. doi: 10.1074/jbc.C200532200. Epub 2002, Oct 15. PMID:12384513 doi:http://dx.doi.org/10.1074/jbc.C200532200
  15. Ngamkitidechakul C, Warejcka DJ, Burke JM, O'Brien WJ, Twining SS. Sufficiency of the reactive site loop of maspin for induction of cell-matrix adhesion and inhibition of cell invasion. Conversion of ovalbumin to a maspin-like molecule. J Biol Chem. 2003 Aug 22;278(34):31796-806. doi: 10.1074/jbc.M302408200. Epub, 2003 Jun 10. PMID:12799381 doi:http://dx.doi.org/10.1074/jbc.M302408200

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