論文

査読有り 国際誌
2021年

Reductive stability evaluation of 6-azopurine photoswitches for the regulation of CKIα activity and circadian rhythms

Organic & Biomolecular Chemistry
  • Dušan Kolarski
  • ,
  • Akiko Sugiyama
  • ,
  • Theo Rodat
  • ,
  • Albert Schulte
  • ,
  • Christian Peifer
  • ,
  • Kenichiro Itami
  • ,
  • Tsuyoshi Hirota
  • ,
  • Ben L. Feringa
  • ,
  • Wiktor Szymanski

19
10
開始ページ
2312
終了ページ
2321
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.1039/D1OB00014D
出版者・発行元
Royal Society of Chemistry ({RSC})

Photopharmacology develops bioactive compounds whose pharmacological potency can be regulated by light. The concept relies on the introduction of molecular photoswitches, such as azobenzenes, into the structure of bioactive compounds, such as known enzyme inhibitors. Until now, the development of photocontrolled protein kinase inhibitors proved to be challenging for photopharmacology. Here, we describe a new class of heterocyclic azobenzenes based on the longdaysin scaffold, which were designed to photo-modulate the activity of casein kinase Iα (CKIα) in the context of photo-regulation of circadian rhythms. Evaluation of a set of photoswitchable longdaysin derivatives allowed for better insight into the relationship between substituents and thermal stability of the cis-isomer. Furthermore, our studies on the chemical stability of the azo group in this type of heterocyclic azobenzenes showed that they undergo a fast reduction to the corresponding hydrazines in the presence of different reducing agents. Finally, we attempted light-dependent modulation of CKIα activity together with the accompanying modulation of cellular circadian rhythms in which CKIα is directly involved. Detailed structure-activity relationship (SAR) analysis revealed a new potent reduced azopurine with a circadian period lengthening effect more pronounced than that of its parent molecule, longdaysin. Altogether, the results presented here highlight the challenges in the development of light-controlled kinase inhibitors for the photomodulation of circadian rhythms and reveal key stability issues for using the emerging class of heteroaryl azobenzenes in biological applications.

リンク情報
DOI
https://doi.org/10.1039/D1OB00014D
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/33634812
ID情報
  • DOI : 10.1039/D1OB00014D
  • ORCIDのPut Code : 89533850
  • PubMed ID : 33634812

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