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Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97

(1) Background: During maturation of the Hepatitis B virus, a viral polymerase inside the capsid transcribes a pre-genomic RNA into a partly double stranded DNA-genome. This is followed by envelopment with surface proteins inserted into a membrane. Envelopment is hypothetically regulated by a struct...

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Autores principales: Makbul, Cihan, Kraft, Christian, Grießmann, Matthias, Rasmussen, Tim, Katzenberger, Kilian, Lappe, Melina, Pfarr, Paul, Stoffer, Cato, Stöhr, Mara, Wandinger, Anna-Maria, Böttcher, Bettina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618838/
https://www.ncbi.nlm.nih.gov/pubmed/34834922
http://dx.doi.org/10.3390/v13112115
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author Makbul, Cihan
Kraft, Christian
Grießmann, Matthias
Rasmussen, Tim
Katzenberger, Kilian
Lappe, Melina
Pfarr, Paul
Stoffer, Cato
Stöhr, Mara
Wandinger, Anna-Maria
Böttcher, Bettina
author_facet Makbul, Cihan
Kraft, Christian
Grießmann, Matthias
Rasmussen, Tim
Katzenberger, Kilian
Lappe, Melina
Pfarr, Paul
Stoffer, Cato
Stöhr, Mara
Wandinger, Anna-Maria
Böttcher, Bettina
author_sort Makbul, Cihan
collection PubMed
description (1) Background: During maturation of the Hepatitis B virus, a viral polymerase inside the capsid transcribes a pre-genomic RNA into a partly double stranded DNA-genome. This is followed by envelopment with surface proteins inserted into a membrane. Envelopment is hypothetically regulated by a structural signal that reports the maturation state of the genome. NMR data suggest that such a signal can be mimicked by the binding of the detergent Triton X 100 to hydrophobic pockets in the capsid spikes. (2) Methods: We have used electron cryo-microscopy and image processing to elucidate the structural changes that are concomitant with the binding of Triton X 100. (3) Results: Our maps show that Triton X 100 binds with its hydrophobic head group inside the pocket. The hydrophilic tail delineates the outside of the spike and is coordinated via Lys-96. The binding of Triton X 100 changes the rotamer conformation of Phe-97 in helix 4, which enables a π-stacking interaction with Trp-62 in helix 3. Similar changes occur in mutants with low secretion phenotypes (P5T and L60V) and in a mutant with a pre-mature secretion phenotype (F97L). (4) Conclusion: Binding of Triton X 100 is unlikely to mimic structural maturation because mutants with different secretion phenotypes show similar structural responses.
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spelling pubmed-86188382021-11-27 Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97 Makbul, Cihan Kraft, Christian Grießmann, Matthias Rasmussen, Tim Katzenberger, Kilian Lappe, Melina Pfarr, Paul Stoffer, Cato Stöhr, Mara Wandinger, Anna-Maria Böttcher, Bettina Viruses Article (1) Background: During maturation of the Hepatitis B virus, a viral polymerase inside the capsid transcribes a pre-genomic RNA into a partly double stranded DNA-genome. This is followed by envelopment with surface proteins inserted into a membrane. Envelopment is hypothetically regulated by a structural signal that reports the maturation state of the genome. NMR data suggest that such a signal can be mimicked by the binding of the detergent Triton X 100 to hydrophobic pockets in the capsid spikes. (2) Methods: We have used electron cryo-microscopy and image processing to elucidate the structural changes that are concomitant with the binding of Triton X 100. (3) Results: Our maps show that Triton X 100 binds with its hydrophobic head group inside the pocket. The hydrophilic tail delineates the outside of the spike and is coordinated via Lys-96. The binding of Triton X 100 changes the rotamer conformation of Phe-97 in helix 4, which enables a π-stacking interaction with Trp-62 in helix 3. Similar changes occur in mutants with low secretion phenotypes (P5T and L60V) and in a mutant with a pre-mature secretion phenotype (F97L). (4) Conclusion: Binding of Triton X 100 is unlikely to mimic structural maturation because mutants with different secretion phenotypes show similar structural responses. MDPI 2021-10-20 /pmc/articles/PMC8618838/ /pubmed/34834922 http://dx.doi.org/10.3390/v13112115 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Makbul, Cihan
Kraft, Christian
Grießmann, Matthias
Rasmussen, Tim
Katzenberger, Kilian
Lappe, Melina
Pfarr, Paul
Stoffer, Cato
Stöhr, Mara
Wandinger, Anna-Maria
Böttcher, Bettina
Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title_full Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title_fullStr Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title_full_unstemmed Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title_short Binding of a Pocket Factor to Hepatitis B Virus Capsids Changes the Rotamer Conformation of Phenylalanine 97
title_sort binding of a pocket factor to hepatitis b virus capsids changes the rotamer conformation of phenylalanine 97
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8618838/
https://www.ncbi.nlm.nih.gov/pubmed/34834922
http://dx.doi.org/10.3390/v13112115
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