Molecular design, synthesis and biological evaluation of cage compound-based inhibitors of hepatitis C virus p7 ion channels
作者:Vadim A. Shiryaev、Eugene V. Radchenko、Vladimir A. Palyulin、Nikolay S. Zefirov、Nikolay I. Bormotov、Olga A. Serova、Larisa N. Shishkina、Marat R. Baimuratov、Kseniya M. Bormasheva、Yulia A. Gruzd、Elena A. Ivleva、Marina V. Leonova、Anton V. Lukashenko、Dmitry V. Osipov、Vitaliy A. Osyanin、Alexander N. Reznikov、Vera A. Shadrikova、Anastasia E. Sibiryakova、Ilya M. Tkachenko、Yuri N. Klimochkin
DOI:10.1016/j.ejmech.2018.08.009
日期:2018.10
targets and having better pharmacological profile is highly desirable. The hepatitisCvirus p7 viroporin is a relatively small hydrophobic oligomeric viral ion channel that plays a critical role during virus assembly and maturation, making it an attractive and validated target for the development of the cage compound-based inhibitors. Using the homology modeling, molecular dynamics, and molecular docking
Transformations of 1-[2-(Adamantan-1-Yl)-2-Hydroxyethyl]-1,2,3,6-Tetrahydropyridines by the Action of Trifluoromethanesulfonic Acid
作者:Vera А. Shadrikova、Evgeny V. Golovin、Victor B. Rybakov、Yuri N. Klimochkin
DOI:10.1007/s10593-020-02747-9
日期:2020.7
1-[2-(Adamantan-1-yl)-2-hydroxyethyl]-1,2,3,6-tetrahydropyridines were obtained by reduction of 1-[(adamantan-1-yl)-2-oxoethyl]-pyridinium bromides. By the action of trifluoromethanesulfonicacid, they undergo carbocationic intramolecular cyclization accompanied by the Wagner–Meerwein rearrangement with the formation of substituted 1-azabicyclo[3.3.1]non-3-enes annulated with the homoadamantane framework