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NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping

Three-dimensional domain swapping is a common phenomenon in pancreatic-like ribonucleases. In the aggregated state, these proteins acquire new biological functions, including selective cytotoxicity against tumour cells. RNase A is able to dislocate both N- and C-termini, but usually this process req...

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Autores principales: Spadaccini, Roberta, Ercole, Carmine, Gentile, Maria A., Sanfelice, Domenico, Boelens, Rolf, Wechselberger, Rainer, Batta, Gyula, Bernini, Andrea, Niccolai, Neri, Picone, Delia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3257227/
https://www.ncbi.nlm.nih.gov/pubmed/22253705
http://dx.doi.org/10.1371/journal.pone.0029076
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author Spadaccini, Roberta
Ercole, Carmine
Gentile, Maria A.
Sanfelice, Domenico
Boelens, Rolf
Wechselberger, Rainer
Batta, Gyula
Bernini, Andrea
Niccolai, Neri
Picone, Delia
author_facet Spadaccini, Roberta
Ercole, Carmine
Gentile, Maria A.
Sanfelice, Domenico
Boelens, Rolf
Wechselberger, Rainer
Batta, Gyula
Bernini, Andrea
Niccolai, Neri
Picone, Delia
author_sort Spadaccini, Roberta
collection PubMed
description Three-dimensional domain swapping is a common phenomenon in pancreatic-like ribonucleases. In the aggregated state, these proteins acquire new biological functions, including selective cytotoxicity against tumour cells. RNase A is able to dislocate both N- and C-termini, but usually this process requires denaturing conditions. In contrast, bovine seminal ribonuclease (BS-RNase), which is a homo-dimeric protein sharing 80% of sequence identity with RNase A, occurs natively as a mixture of swapped and unswapped isoforms. The presence of two disulfides bridging the subunits, indeed, ensures a dimeric structure also to the unswapped molecule. In vitro, the two BS-RNase isoforms interconvert under physiological conditions. Since the tendency to swap is often related to the instability of the monomeric proteins, in these paper we have analysed in detail the stability in solution of the monomeric derivative of BS-RNase (mBS) by a combination of NMR studies and Molecular Dynamics Simulations. The refinement of NMR structure and relaxation data indicate a close similarity with RNase A, without any evidence of aggregation or partial opening. The high compactness of mBS structure is confirmed also by H/D exchange, urea denaturation, and TEMPOL mapping of the protein surface. The present extensive structural and dynamic investigation of (monomeric) mBS did not show any experimental evidence that could explain the known differences in swapping between BS-RNase and RNase A. Hence, we conclude that the swapping in BS-RNase must be influenced by the distinct features of the dimers, suggesting a prominent role for the interchain disulfide bridges.
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spelling pubmed-32572272012-01-17 NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping Spadaccini, Roberta Ercole, Carmine Gentile, Maria A. Sanfelice, Domenico Boelens, Rolf Wechselberger, Rainer Batta, Gyula Bernini, Andrea Niccolai, Neri Picone, Delia PLoS One Research Article Three-dimensional domain swapping is a common phenomenon in pancreatic-like ribonucleases. In the aggregated state, these proteins acquire new biological functions, including selective cytotoxicity against tumour cells. RNase A is able to dislocate both N- and C-termini, but usually this process requires denaturing conditions. In contrast, bovine seminal ribonuclease (BS-RNase), which is a homo-dimeric protein sharing 80% of sequence identity with RNase A, occurs natively as a mixture of swapped and unswapped isoforms. The presence of two disulfides bridging the subunits, indeed, ensures a dimeric structure also to the unswapped molecule. In vitro, the two BS-RNase isoforms interconvert under physiological conditions. Since the tendency to swap is often related to the instability of the monomeric proteins, in these paper we have analysed in detail the stability in solution of the monomeric derivative of BS-RNase (mBS) by a combination of NMR studies and Molecular Dynamics Simulations. The refinement of NMR structure and relaxation data indicate a close similarity with RNase A, without any evidence of aggregation or partial opening. The high compactness of mBS structure is confirmed also by H/D exchange, urea denaturation, and TEMPOL mapping of the protein surface. The present extensive structural and dynamic investigation of (monomeric) mBS did not show any experimental evidence that could explain the known differences in swapping between BS-RNase and RNase A. Hence, we conclude that the swapping in BS-RNase must be influenced by the distinct features of the dimers, suggesting a prominent role for the interchain disulfide bridges. Public Library of Science 2012-01-12 /pmc/articles/PMC3257227/ /pubmed/22253705 http://dx.doi.org/10.1371/journal.pone.0029076 Text en Spadaccini et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Spadaccini, Roberta
Ercole, Carmine
Gentile, Maria A.
Sanfelice, Domenico
Boelens, Rolf
Wechselberger, Rainer
Batta, Gyula
Bernini, Andrea
Niccolai, Neri
Picone, Delia
NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title_full NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title_fullStr NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title_full_unstemmed NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title_short NMR Studies on Structure and Dynamics of the Monomeric Derivative of BS-RNase: New Insights for 3D Domain Swapping
title_sort nmr studies on structure and dynamics of the monomeric derivative of bs-rnase: new insights for 3d domain swapping
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3257227/
https://www.ncbi.nlm.nih.gov/pubmed/22253705
http://dx.doi.org/10.1371/journal.pone.0029076
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