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Dicarboxyl-terminated iron(ii) clathrochelates as ICD-reporters for globular proteins.
Kovalska, Vladyslava; Vakarov, Serhii; Losytskyy, Mykhaylo; Kuperman, Marina; Chornenka, Nina; Toporivska, Yuliya; Gumienna-Kontecka, Elzbieta; Voloshin, Yan; Varzatskii, Oleg; Mokhir, Andriy.
Affiliation
  • Kovalska V; Institute of Molecular Biology and Genetics, NASU 150 Zabolotnogo St. 03143 Kyiv Ukraine v.kovalska@gmail.com.
  • Vakarov S; Princeton Biomolecular Research Labs 26A Saperne Pole St. 01042 Kyiv Ukraine.
  • Losytskyy M; V.I. Vernadsky Institute of General and Inorganic Chemistry, NASU 32/34 Palladin Av. 03142 Kyiv Ukraine.
  • Kuperman M; Institute of Molecular Biology and Genetics, NASU 150 Zabolotnogo St. 03143 Kyiv Ukraine v.kovalska@gmail.com.
  • Chornenka N; Institute of Molecular Biology and Genetics, NASU 150 Zabolotnogo St. 03143 Kyiv Ukraine v.kovalska@gmail.com.
  • Toporivska Y; Princeton Biomolecular Research Labs 26A Saperne Pole St. 01042 Kyiv Ukraine.
  • Gumienna-Kontecka E; V.I. Vernadsky Institute of General and Inorganic Chemistry, NASU 32/34 Palladin Av. 03142 Kyiv Ukraine.
  • Voloshin Y; Faculty of Chemistry, University of Wroclaw 14 F. Joliot-Curie St. 50-383 Wroclaw Poland.
  • Varzatskii O; Faculty of Chemistry, University of Wroclaw 14 F. Joliot-Curie St. 50-383 Wroclaw Poland.
  • Mokhir A; Nesmeyanov Institute of Organoelement Compounds RAS 28 Vavilova St. 119991 Moscow Russia.
RSC Adv ; 9(42): 24218-24230, 2019 Aug 02.
Article in En | MEDLINE | ID: mdl-35527894
Cage metal complexes iron(ii) clathrochelates, which are inherently CD silent, were discovered to demonstrate intensive output in induced circular dichroism (ICD) spectra upon their assembly to albumins. With the aim to design clathrochelates as protein-sensitive CD reporters, the approach for the functionalization of one chelate α-dioximate fragment of the clathrochelate framework with two non-equivalent substituents was developed, and constitutional isomers of clathrochelate with two non-equivalent carboxyphenylsulfide groups were synthesized. The interaction of designed iron(ii) clathrochelates and their symmetric homologues with globular proteins (serum albumins, lysozyme, ß-lactoglobulin (BLG), trypsin, insulin) was studied by protein fluorescence quenching and CD techniques. A highly-intensive ICD output of the clathrochelates was observed upon their association with albumins and BLG. It was shown that in the presence of BLG, different clathrochelate isomers gave spectra of inverted signs, indicating the stabilization of opposite configurations (Λ or Δ) of the clathrochelate framework in the assembly with this protein. So, we suggest that the isomerism of the terminal carboxy group determined preferable configurations of the clathrochelate framework for the fixation in the protein binding site. MALDI TOF results show the formation of BLG-clathrochelate complex with ratio 1 : 1. Based on the docking simulations, the binding of the clathrochelate molecule (all isomers) to the main BLG binding site (calyx) in its open conformation is suggested. The above results point that the variation of the ribbed substituents at the clathrochelate framework is an effective tool to achieve the specificity of clathrochelate ICD reporting properties to the target protein.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2019 Document type: Article Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2019 Document type: Article Country of publication: