Zobrazeno 1 - 10
of 48
pro vyhledávání: '"Aleksandra Hecel"'
Autor:
Justyna Kamińska, Aleksandra Hecel, Joanna Słowik, Agnieszka Rombel-Bryzek, Magdalena Rowińska-Żyrek, Danuta Witkowska
Publikováno v:
Frontiers in Molecular Biosciences, Vol 11 (2024)
The most common skin diseases include eczema, psoriasis, acne, and fungal infections. There is often no effective cure for them. Increasing antimicrobial drug resistance prompts us to search for new, safe, and effective therapeutics. Among such inter
Externí odkaz:
https://doaj.org/article/5c234ae20a6f4036a24d14f6d2f0e92c
Akademický článek
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Autor:
Joanna Wa̧tły, Aleksandra Hecel, Robert Wieczorek, Magdalena Rowińska-Żyrek, Henryk Kozłowski
Publikováno v:
Inorganic Chemistry. 61:14247-14251
It is supposed that the presence of poly-His regions in close proximity to poly-Gly domains in snake venoms is related to their biological activity; poly-His/poly-Gly (pHpG) peptides inhibit the activity of metalloproteinases during venom storage via
Publikováno v:
Metallomics. 14(7):1-10
Aspergillus fumigatus, one of the most widespread opportunistic human fungal pathogens, adapts to zinc limitation by secreting a 310 amino acid Aspf2 zincophore, able to specifically bind Zn(II) and deliver it to a transmembrane zinc transporter, Zrf
Autor:
Henryk Kozlowski, Karolina Piasta, Aleksandra Hecel, Magdalena Rowinska-Zyrek, Elzbieta Gumienna-Kontecka
Publikováno v:
Comprehensive Inorganic Chemistry III ISBN: 9780128231531
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::d3f479047c3ea40582dde055cb13349d
https://doi.org/10.1016/b978-0-12-823144-9.00086-8
https://doi.org/10.1016/b978-0-12-823144-9.00086-8
Autor:
Aleksandra Hecel, Małgorzata Ostrowska, Kamila Stokowa-Sołtys, Joanna Wątły, Dorota Dudek, Adriana Miller, Sławomir Potocki, Agnieszka Matera-Witkiewicz, Alicia Dominguez-Martin, Henryk Kozłowski, Magdalena Rowińska-Żyrek
Publikováno v:
Pharmaceuticals, Vol 13, Iss 9, p 228 (2020)
Zn(II) is an inhibitor of SARS-CoV-2′s RNA-dependent RNA polymerase, and chloroquine and hydroxychloroquine are Zn(II) ionophores–this statement gives a curious mind a lot to think about. We show results of the first clinical trials on chloroquin
Externí odkaz:
https://doaj.org/article/9bf128aa1d5842bfb46cd1befcd105db
Publikováno v:
Life, Vol 10, Iss 7, p 118 (2020)
Alzheimer’s disease is a severe disorder that affects millions of people worldwide. It is a very debilitating disease with no cure at the moment. The necessity of finding an effective treatment is very demanding, and the entire scientific community
Externí odkaz:
https://doaj.org/article/50454de4cf8241469d8aa51c1aff6dd3
Publikováno v:
Dalton Transactions. 36(50):12635-12647
HypB is one of the chaperones required for proper nickel insertion into [NiFe]-hydrogenase. Escherichia coli HypB has two potential Ni(II) and Zn(II) binding sites—the N-terminal one and the so-called GTPase one. The metal-loaded HypB–SlyD metall
Autor:
Adriana Miller, Henryk Kozlowski, Agnieszka Matera-Witkiewicz, Malgorzata Ostrowska, Slawomir Potocki, Aleksandra Hecel, Joanna Wątły, Kamila Stokowa-Sołtys, Alicia Domínguez-Martín, Dorota Dudek, Magdalena Rowińska-Żyrek
Publikováno v:
Digibug: Repositorio Institucional de la Universidad de Granada
Universidad de Granada (UGR)
Pharmaceuticals
Digibug. Repositorio Institucional de la Universidad de Granada
instname
Pharmaceuticals, Vol 13, Iss 228, p 228 (2020)
Universidad de Granada (UGR)
Pharmaceuticals
Digibug. Repositorio Institucional de la Universidad de Granada
instname
Pharmaceuticals, Vol 13, Iss 228, p 228 (2020)
The authors would like to thank Agnieszka Michalczuk for providing us with her artistic vision of SARS-CoV-2.
Zn(II) is an inhibitor of SARS-CoV-2′s RNA-dependent RNA polymerase, and chloroquine and hydroxychloroquine are Zn(II) ionophores–t
Zn(II) is an inhibitor of SARS-CoV-2′s RNA-dependent RNA polymerase, and chloroquine and hydroxychloroquine are Zn(II) ionophores–t
Autor:
Magdalena Rowinska-Zyrek, Yifat Miller, Aleksandra Hecel, Shira Ben-Shushan, Henryk Kozlowski
Publikováno v:
Inorganic Chemistry. 59:925-929
A diphenylalanine motif in peptides plays a crucial role in supramolecular systems. The current work represents a novel strategy in which a diphenylalanine motif in the central domain of neuropeptides conserves the specific Zn2+ binding site and prev