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Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations

Marine cone snails belonging to the Conidae family make use of neuroactive peptides in their venom to capture prey. Here we report the proteome profile of the venom duct of Conus eburneus, a cone snail belonging to the Tesseliconus clade. Through tandem mass spectrometry and database searching again...

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Autores principales: Itang, Corazon Ericka Mae M., Gaza, Jokent T., Masacupan, Dan Jethro M., Batoctoy, Dessa Camille R., Chen, Yu-Ju, Nellas, Ricky B., Yu, Eizadora T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7601563/
https://www.ncbi.nlm.nih.gov/pubmed/33019526
http://dx.doi.org/10.3390/md18100503
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author Itang, Corazon Ericka Mae M.
Gaza, Jokent T.
Masacupan, Dan Jethro M.
Batoctoy, Dessa Camille R.
Chen, Yu-Ju
Nellas, Ricky B.
Yu, Eizadora T.
author_facet Itang, Corazon Ericka Mae M.
Gaza, Jokent T.
Masacupan, Dan Jethro M.
Batoctoy, Dessa Camille R.
Chen, Yu-Ju
Nellas, Ricky B.
Yu, Eizadora T.
author_sort Itang, Corazon Ericka Mae M.
collection PubMed
description Marine cone snails belonging to the Conidae family make use of neuroactive peptides in their venom to capture prey. Here we report the proteome profile of the venom duct of Conus eburneus, a cone snail belonging to the Tesseliconus clade. Through tandem mass spectrometry and database searching against the C. eburneus transcriptome and the ConoServer database, we identified 24 unique conopeptide sequences in the venom duct. The majority of these peptides belong to the T and M gene superfamilies and are disulfide-bonded, with cysteine frameworks V, XIV, VI/VII, and III being the most abundant. All seven of the Cys-free peptides are conomarphin variants belonging to the M superfamily that eluted out as dominant peaks in the chromatogram. These conomarphins vary not only in amino acid residues in select positions along the backbone but also have one or more post-translational modifications (PTMs) such as proline hydroxylation, C-term amidation, and γ-carboxylation of glutamic acid. Using molecular dynamics simulations, the conomarphin variants were predicted to predominantly have hairpin-like or elongated structures in acidic pH. These two structures were found to have significant differences in electrostatic properties and the inclusion of PTMs seems to complement this disparity. The presence of polar PTMs (hydroxyproline and γ-carboxyglutamic acid) also appear to stabilize hydrogen bond networks in these conformations. Furthermore, these predicted structures are pH sensitive, becoming more spherical and compact at higher pH. The subtle conformational variations observed here might play an important role in the selection and binding of the peptides to their molecular targets.
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spelling pubmed-76015632020-11-01 Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations Itang, Corazon Ericka Mae M. Gaza, Jokent T. Masacupan, Dan Jethro M. Batoctoy, Dessa Camille R. Chen, Yu-Ju Nellas, Ricky B. Yu, Eizadora T. Mar Drugs Article Marine cone snails belonging to the Conidae family make use of neuroactive peptides in their venom to capture prey. Here we report the proteome profile of the venom duct of Conus eburneus, a cone snail belonging to the Tesseliconus clade. Through tandem mass spectrometry and database searching against the C. eburneus transcriptome and the ConoServer database, we identified 24 unique conopeptide sequences in the venom duct. The majority of these peptides belong to the T and M gene superfamilies and are disulfide-bonded, with cysteine frameworks V, XIV, VI/VII, and III being the most abundant. All seven of the Cys-free peptides are conomarphin variants belonging to the M superfamily that eluted out as dominant peaks in the chromatogram. These conomarphins vary not only in amino acid residues in select positions along the backbone but also have one or more post-translational modifications (PTMs) such as proline hydroxylation, C-term amidation, and γ-carboxylation of glutamic acid. Using molecular dynamics simulations, the conomarphin variants were predicted to predominantly have hairpin-like or elongated structures in acidic pH. These two structures were found to have significant differences in electrostatic properties and the inclusion of PTMs seems to complement this disparity. The presence of polar PTMs (hydroxyproline and γ-carboxyglutamic acid) also appear to stabilize hydrogen bond networks in these conformations. Furthermore, these predicted structures are pH sensitive, becoming more spherical and compact at higher pH. The subtle conformational variations observed here might play an important role in the selection and binding of the peptides to their molecular targets. MDPI 2020-10-01 /pmc/articles/PMC7601563/ /pubmed/33019526 http://dx.doi.org/10.3390/md18100503 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Itang, Corazon Ericka Mae M.
Gaza, Jokent T.
Masacupan, Dan Jethro M.
Batoctoy, Dessa Camille R.
Chen, Yu-Ju
Nellas, Ricky B.
Yu, Eizadora T.
Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title_full Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title_fullStr Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title_full_unstemmed Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title_short Identification of Conomarphin Variants in the Conus eburneus Venom and the Effect of Sequence and PTM Variations on Conomarphin Conformations
title_sort identification of conomarphin variants in the conus eburneus venom and the effect of sequence and ptm variations on conomarphin conformations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7601563/
https://www.ncbi.nlm.nih.gov/pubmed/33019526
http://dx.doi.org/10.3390/md18100503
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