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Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange

Beta‐2‐glycoprotein I (β(2)GPI) is the major antigen for the antiphospholipid antibodies in the antiphospholipid syndrome. The exposed epitope in domain I of β(2)GPI can be recognized by the anti‐β(2)GPI antibody. Here, we prepared the anionic di‐oleoyl‐phosphatidylserine (DOPS) and cardiolipin (CL)...

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Autores principales: Tang, Kuo‐Tung, Wu, Ting‐Yuan, Chen, Hsin‐Hua, Lin, Chi‐Chien, Hsu, Yuan‐Hao Howard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8040858/
https://www.ncbi.nlm.nih.gov/pubmed/33641242
http://dx.doi.org/10.1002/pro.4054
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author Tang, Kuo‐Tung
Wu, Ting‐Yuan
Chen, Hsin‐Hua
Lin, Chi‐Chien
Hsu, Yuan‐Hao Howard
author_facet Tang, Kuo‐Tung
Wu, Ting‐Yuan
Chen, Hsin‐Hua
Lin, Chi‐Chien
Hsu, Yuan‐Hao Howard
author_sort Tang, Kuo‐Tung
collection PubMed
description Beta‐2‐glycoprotein I (β(2)GPI) is the major antigen for the antiphospholipid antibodies in the antiphospholipid syndrome. The exposed epitope in domain I of β(2)GPI can be recognized by the anti‐β(2)GPI antibody. Here, we prepared the anionic di‐oleoyl‐phosphatidylserine (DOPS) and cardiolipin (CL) liposomes to interact with the β(2)GPI. The conformational changes of β(2)GPI upon binding with the liposomes were analyzed using hydrogen/deuterium exchange mass spectrometry. The exchange level of sequences 21–27 significantly increased after β(2)GPI had interacted with DOPS. This change indicated a reduced interaction between domain I and domain V, inferring to a protrusion of the sequences 21–27 from the ring conformation. After β(2)GPI had interacted with CL for 30 min, the exchange levels in 4 of the 5 domains increased significantly. The deuteration levels of sequences 1–20, 21–27, 196–205, 273–279 and 297–306 increased, suggesting that these regions had become more exposed, and the domain I was no longer in contact with domain V. The increasing deuteration levels in sequences 70–86, 153–162, 191–198, 196–205 and 273–279 indicated β(2)GPI undergoing conformational changes to expose these inner regions, suggesting a structural transition. Overall, DOPS and CL induced minor conformational changes of β(2)GPI at sequences 21–27 and forms an intermediate conformation after 10 min of interaction. After a complete protein–lipid interaction, high negatively charged CL membrane induced a major conformation transition of β(2)GPI.
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spelling pubmed-80408582021-04-15 Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange Tang, Kuo‐Tung Wu, Ting‐Yuan Chen, Hsin‐Hua Lin, Chi‐Chien Hsu, Yuan‐Hao Howard Protein Sci Full‐Length Papers Beta‐2‐glycoprotein I (β(2)GPI) is the major antigen for the antiphospholipid antibodies in the antiphospholipid syndrome. The exposed epitope in domain I of β(2)GPI can be recognized by the anti‐β(2)GPI antibody. Here, we prepared the anionic di‐oleoyl‐phosphatidylserine (DOPS) and cardiolipin (CL) liposomes to interact with the β(2)GPI. The conformational changes of β(2)GPI upon binding with the liposomes were analyzed using hydrogen/deuterium exchange mass spectrometry. The exchange level of sequences 21–27 significantly increased after β(2)GPI had interacted with DOPS. This change indicated a reduced interaction between domain I and domain V, inferring to a protrusion of the sequences 21–27 from the ring conformation. After β(2)GPI had interacted with CL for 30 min, the exchange levels in 4 of the 5 domains increased significantly. The deuteration levels of sequences 1–20, 21–27, 196–205, 273–279 and 297–306 increased, suggesting that these regions had become more exposed, and the domain I was no longer in contact with domain V. The increasing deuteration levels in sequences 70–86, 153–162, 191–198, 196–205 and 273–279 indicated β(2)GPI undergoing conformational changes to expose these inner regions, suggesting a structural transition. Overall, DOPS and CL induced minor conformational changes of β(2)GPI at sequences 21–27 and forms an intermediate conformation after 10 min of interaction. After a complete protein–lipid interaction, high negatively charged CL membrane induced a major conformation transition of β(2)GPI. John Wiley & Sons, Inc. 2021-03-15 2021-05 /pmc/articles/PMC8040858/ /pubmed/33641242 http://dx.doi.org/10.1002/pro.4054 Text en © 2021 The Authors. Protein Science published by Wiley Periodicals LLC on behalf of The Protein Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Full‐Length Papers
Tang, Kuo‐Tung
Wu, Ting‐Yuan
Chen, Hsin‐Hua
Lin, Chi‐Chien
Hsu, Yuan‐Hao Howard
Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title_full Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title_fullStr Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title_full_unstemmed Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title_short Cardiolipin interacts with beta‐2‐glycoprotein I and forms an open conformation–Mechanisms analyzed using hydrogen/deuterium exchange
title_sort cardiolipin interacts with beta‐2‐glycoprotein i and forms an open conformation–mechanisms analyzed using hydrogen/deuterium exchange
topic Full‐Length Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8040858/
https://www.ncbi.nlm.nih.gov/pubmed/33641242
http://dx.doi.org/10.1002/pro.4054
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