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Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins

Serine Protease inhibitors (Serpins) like antithrombin, antitrypsin, neuroserpin, antichymotrypsin, protein C-inhibitor and plasminogen activator inhibitor is involved in important biological functions like blood coagulation, fibrinolysis, inflammation, cell migration and complement activation. Serp...

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Autores principales: Singh, Poonam, Jairajpuri, Mohamad Aman
Formato: Texto
Lenguaje:English
Publicado: Biomedical Informatics 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3046034/
https://www.ncbi.nlm.nih.gov/pubmed/21383917
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author Singh, Poonam
Jairajpuri, Mohamad Aman
author_facet Singh, Poonam
Jairajpuri, Mohamad Aman
author_sort Singh, Poonam
collection PubMed
description Serine Protease inhibitors (Serpins) like antithrombin, antitrypsin, neuroserpin, antichymotrypsin, protein C-inhibitor and plasminogen activator inhibitor is involved in important biological functions like blood coagulation, fibrinolysis, inflammation, cell migration and complement activation. Serpins native state is metastable, which undergoes transformation to a more stable state during the process of protease inhibition. Serpins are prone to conformation defects, however little is known about the factors and mechanisms which promote its conformational change and misfolding. Helix B region in serpins is with several point mutations which result in pathological conditions due to polymerization. Helix B analysis for residue burial and cavity was undertaken to understand its role in serpin structure function. A structural overlap and an accessible surface area analysis showed the deformation of strand 6B and exposure of helix B at N-terminal end in cleaved conformation but not in the native and latent conformation of various inhibitory serpins. A cleaved polymer like conformation of antitrypsin also showed deformation of s6B and helix B exposure. Cavity analysis showed that helix B residues were part of the largest cavity in most of the serpins in the native state which increase in size during the transformation to cleaved and latent states. These data for the first time show the importance of strand 6B deformation and exposure of helix B in smooth insertion of the reactive center loop during serpin inhibition and indicate that helix B exposure due to variants may increase its polymer propensity. ABBREVIATIONS: serpin -serine protease inhibitors RCL -reactive center loop ASA -accessible surface area
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spelling pubmed-30460342011-03-07 Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins Singh, Poonam Jairajpuri, Mohamad Aman Bioinformation Hypothesis Serine Protease inhibitors (Serpins) like antithrombin, antitrypsin, neuroserpin, antichymotrypsin, protein C-inhibitor and plasminogen activator inhibitor is involved in important biological functions like blood coagulation, fibrinolysis, inflammation, cell migration and complement activation. Serpins native state is metastable, which undergoes transformation to a more stable state during the process of protease inhibition. Serpins are prone to conformation defects, however little is known about the factors and mechanisms which promote its conformational change and misfolding. Helix B region in serpins is with several point mutations which result in pathological conditions due to polymerization. Helix B analysis for residue burial and cavity was undertaken to understand its role in serpin structure function. A structural overlap and an accessible surface area analysis showed the deformation of strand 6B and exposure of helix B at N-terminal end in cleaved conformation but not in the native and latent conformation of various inhibitory serpins. A cleaved polymer like conformation of antitrypsin also showed deformation of s6B and helix B exposure. Cavity analysis showed that helix B residues were part of the largest cavity in most of the serpins in the native state which increase in size during the transformation to cleaved and latent states. These data for the first time show the importance of strand 6B deformation and exposure of helix B in smooth insertion of the reactive center loop during serpin inhibition and indicate that helix B exposure due to variants may increase its polymer propensity. ABBREVIATIONS: serpin -serine protease inhibitors RCL -reactive center loop ASA -accessible surface area Biomedical Informatics 2011-01-22 /pmc/articles/PMC3046034/ /pubmed/21383917 Text en © 2011 Biomedical This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Singh, Poonam
Jairajpuri, Mohamad Aman
Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title_full Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title_fullStr Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title_full_unstemmed Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title_short Strand 6B deformation and residues exposure towards N-terminal end of helix B during proteinase inhibition by Serpins
title_sort strand 6b deformation and residues exposure towards n-terminal end of helix b during proteinase inhibition by serpins
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3046034/
https://www.ncbi.nlm.nih.gov/pubmed/21383917
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