Effective copper(II) and nickel(II) complexes with N3O and ON3 thiosemicarbazidato ligands. Synthesis, structural analysis and in vitro cytotoxity on melanoma B16F10 cells

2020 ◽  
Vol 502 ◽  
pp. 119347 ◽  
Author(s):  
Musa Şahin ◽  
Songül Eğlence-Bakır ◽  
Merve Alpay ◽  
Selin Alpay ◽  
Recep Özmerdivenli ◽  
...  
Author(s):  
Arthur Poester Cordeiro ◽  
Paulo Emílio Feuser ◽  
Pedro Graupen Figueiredo ◽  
Elizabeth Sousa da Cunha ◽  
Glaucia Regina Martinez ◽  
...  
Keyword(s):  

2013 ◽  
Vol 35 (1) ◽  
pp. 39-46 ◽  
Author(s):  
Kil-Nam Kim ◽  
Ginnae Ahn ◽  
Soo-Jin Heo ◽  
Sung-Myung Kang ◽  
Min-Cheol Kang ◽  
...  

2019 ◽  
Vol 33 (12) ◽  
pp. 3228-3241 ◽  
Author(s):  
Eun Ok Choi ◽  
Hyesook Lee ◽  
Hyun HwangBo ◽  
Da Hye Kwon ◽  
Min Yeong Kim ◽  
...  

2021 ◽  
Vol 22 (15) ◽  
pp. 7811
Author(s):  
Olufunmilayo Olukemi Akapo ◽  
Joanna M. Macnar ◽  
Justyna D. Kryś ◽  
Puleng Rosinah Syed ◽  
Khajamohiddin Syed ◽  
...  

Cytochrome P450 monooxygenase CYP51 (sterol 14α-demethylase) is a well-known target of the azole drug fluconazole for treating cryptococcosis, a life-threatening fungal infection in immune-compromised patients in poor countries. Studies indicate that mutations in CYP51 confer fluconazole resistance on cryptococcal species. Despite the importance of CYP51 in these species, few studies on the structural analysis of CYP51 and its interactions with different azole drugs have been reported. We therefore performed in silico structural analysis of 11 CYP51s from cryptococcal species and other Tremellomycetes. Interactions of 11 CYP51s with nine ligands (three substrates and six azoles) performed by Rosetta docking using 10,000 combinations for each of the CYP51-ligand complex (11 CYP51s × 9 ligands = 99 complexes) and hierarchical agglomerative clustering were used for selecting the complexes. A web application for visualization of CYP51s’ interactions with ligands was developed (http://bioshell.pl/azoledocking/). The study results indicated that Tremellomycetes CYP51s have a high preference for itraconazole, corroborating the in vitro effectiveness of itraconazole compared to fluconazole. Amino acids interacting with different ligands were found to be conserved across CYP51s, indicating that the procedure employed in this study is accurate and can be automated for studying P450-ligand interactions to cater for the growing number of P450s.


2012 ◽  
Vol 57 (SI-1 Track-B) ◽  
Author(s):  
A. Gryanik ◽  
T. Wittenberg ◽  
H. Walles ◽  
D. Steckhan ◽  
S. Thude ◽  
...  

Biomolecules ◽  
2021 ◽  
Vol 11 (12) ◽  
pp. 1795
Author(s):  
Markus B. Tomek ◽  
Bettina Janesch ◽  
Matthias L. Braun ◽  
Manfred Taschner ◽  
Rudolf Figl ◽  
...  

Diverse members of the Bacteroidetes phylum have general protein O-glycosylation systems that are essential for processes such as host colonization and pathogenesis. Here, we analyzed the function of a putative fucosyltransferase (FucT) family that is widely encoded in Bacteroidetes protein O-glycosylation genetic loci. We studied the FucT orthologs of three Bacteroidetes species—Tannerella forsythia, Bacteroides fragilis, and Pedobacter heparinus. To identify the linkage created by the FucT of B. fragilis, we elucidated the full structure of its nine-sugar O-glycan and found that l-fucose is linked β1,4 to glucose. Of the two fucose residues in the T. forsythia O-glycan, the fucose linked to the reducing-end galactose was shown by mutational analysis to be l-fucose. Despite the transfer of l-fucose to distinct hexose sugars in the B. fragilis and T. forsythia O-glycans, the FucT orthologs from B. fragilis, T. forsythia, and P. heparinus each cross-complement the B. fragilis ΔBF4306 and T. forsythia ΔTanf_01305 FucT mutants. In vitro enzymatic analyses showed relaxed acceptor specificity of the three enzymes, transferring l-fucose to various pNP-α-hexoses. Further, glycan structural analysis together with fucosidase assays indicated that the T. forsythia FucT links l-fucose α1,6 to galactose. Given the biological importance of fucosylated carbohydrates, these FucTs are promising candidates for synthetic glycobiology.


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