Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides
The antimicrobial activity of surfactant-associated anionic peptides (SAAPs), which are isolated from the ovine pulmonary surfactant and are selective against the ovine pathogen <i>Mannheimia haemolytica</i>, is strongly enhanced in the presence of Zn(II) ions. Both calorimetry and ITC m...
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doaj-25b7e43ed2cc43bc847e11de48918ec32021-07-15T15:37:33ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672021-06-01226971697110.3390/ijms22136971Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different PeptidesAdriana Miller0Agnieszka Matera-Witkiewicz1Aleksandra Mikołajczyk2Joanna Wątły3Dean Wilcox4Danuta Witkowska5Magdalena Rowińska-Żyrek6Faculty of Chemistry, University of Wroclaw, F. Joliot-Curie 14, 50-383 Wroclaw, PolandScreening Laboratory of Biological Activity Tests and Collection of Biological Material, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211A, 50-556 Wroclaw, PolandScreening Laboratory of Biological Activity Tests and Collection of Biological Material, Faculty of Pharmacy, Wroclaw Medical University, Borowska 211A, 50-556 Wroclaw, PolandFaculty of Chemistry, University of Wroclaw, F. Joliot-Curie 14, 50-383 Wroclaw, PolandDepartment of Chemistry, Dartmouth College, 6128 Burke Laboratory, Hanover, NH 03755, USAInstitute of Health Sciences, University of Opole, 68 Katowicka St., 45-060 Opole, PolandFaculty of Chemistry, University of Wroclaw, F. Joliot-Curie 14, 50-383 Wroclaw, PolandThe antimicrobial activity of surfactant-associated anionic peptides (SAAPs), which are isolated from the ovine pulmonary surfactant and are selective against the ovine pathogen <i>Mannheimia haemolytica</i>, is strongly enhanced in the presence of Zn(II) ions. Both calorimetry and ITC measurements show that the unique Asp-only peptide SAAP3 (DDDDDDD) and its analogs SAAP2 (GDDDDDD) and SAAP6 (GADDDDD) have a similar micromolar affinity for Zn(II), which binds to the N-terminal amine and Asp carboxylates in a net entropically-driven process. All three peptides also bind Cu(II) with a net entropically-driven process but with higher affinity than they bind Zn(II) and coordination that involves the N-terminal amine and deprotonated amides as the pH increases. The parent SAAP3 binds Cu(II) with the highest affinity; however, as shown with potentiometry and absorption, CD and EPR spectroscopy, Asp residues in the first and/or second positions distinguish Cu(II) binding to SAAP3 and SAAP2 from their binding to SAAP6, decreasing the Cu(II) Lewis acidity and suppressing its square planar amide coordination by two pH units. We also show that these metal ions do not stabilize a membrane disrupting ability nor do they induce the antimicrobial activity of these peptides against a panel of human pathogens.https://www.mdpi.com/1422-0067/22/13/6971metal-antimicrobial peptide interactionsthermodynamicsZn(II) and Cu(II) bioinorganic chemistry |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Adriana Miller Agnieszka Matera-Witkiewicz Aleksandra Mikołajczyk Joanna Wątły Dean Wilcox Danuta Witkowska Magdalena Rowińska-Żyrek |
spellingShingle |
Adriana Miller Agnieszka Matera-Witkiewicz Aleksandra Mikołajczyk Joanna Wątły Dean Wilcox Danuta Witkowska Magdalena Rowińska-Żyrek Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides International Journal of Molecular Sciences metal-antimicrobial peptide interactions thermodynamics Zn(II) and Cu(II) bioinorganic chemistry |
author_facet |
Adriana Miller Agnieszka Matera-Witkiewicz Aleksandra Mikołajczyk Joanna Wątły Dean Wilcox Danuta Witkowska Magdalena Rowińska-Żyrek |
author_sort |
Adriana Miller |
title |
Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides |
title_short |
Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides |
title_full |
Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides |
title_fullStr |
Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides |
title_full_unstemmed |
Zn-Enhanced Asp-Rich Antimicrobial Peptides: N-Terminal Coordination by Zn(II) and Cu(II), Which Distinguishes Cu(II) Binding to Different Peptides |
title_sort |
zn-enhanced asp-rich antimicrobial peptides: n-terminal coordination by zn(ii) and cu(ii), which distinguishes cu(ii) binding to different peptides |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1661-6596 1422-0067 |
publishDate |
2021-06-01 |
description |
The antimicrobial activity of surfactant-associated anionic peptides (SAAPs), which are isolated from the ovine pulmonary surfactant and are selective against the ovine pathogen <i>Mannheimia haemolytica</i>, is strongly enhanced in the presence of Zn(II) ions. Both calorimetry and ITC measurements show that the unique Asp-only peptide SAAP3 (DDDDDDD) and its analogs SAAP2 (GDDDDDD) and SAAP6 (GADDDDD) have a similar micromolar affinity for Zn(II), which binds to the N-terminal amine and Asp carboxylates in a net entropically-driven process. All three peptides also bind Cu(II) with a net entropically-driven process but with higher affinity than they bind Zn(II) and coordination that involves the N-terminal amine and deprotonated amides as the pH increases. The parent SAAP3 binds Cu(II) with the highest affinity; however, as shown with potentiometry and absorption, CD and EPR spectroscopy, Asp residues in the first and/or second positions distinguish Cu(II) binding to SAAP3 and SAAP2 from their binding to SAAP6, decreasing the Cu(II) Lewis acidity and suppressing its square planar amide coordination by two pH units. We also show that these metal ions do not stabilize a membrane disrupting ability nor do they induce the antimicrobial activity of these peptides against a panel of human pathogens. |
topic |
metal-antimicrobial peptide interactions thermodynamics Zn(II) and Cu(II) bioinorganic chemistry |
url |
https://www.mdpi.com/1422-0067/22/13/6971 |
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