Rota P, Papini N, La Rocca P, Montefiori M, Cirillo F, Piccoli M, Scurati R, Olsen L, Allevi P, Anastasia L
Laboratory of Stem Cells for Tissue Engineering , IRCCS Policlinico San Donato, Piazza Malan 2 , 20097 San Donato Milanese , Milan , Italy . Email:
Department of Biomedical , Surgical and Dental Sciences , University of Milan , Via Saldini 50 , 20133 Milan , Italy.
Medchemcomm. 2017 Jun 5;8(7):1505-1513. doi: 10.1039/c7md00072c. eCollection 2017 Jul 1.
Newcastle Disease Virus (NDV), belonging to the Paramyxoviridae family, causes a serious infectious disease in birds, resulting in severe losses in the poultry industry every year. Haemagglutinin neuraminidase glycoprotein (HN) has been recognized as a key protein in the viral infection mechanism, and its inhibition represents an attractive target for the development of new drugs based on sialic acid glycals, with the 2-deoxy-2,3-didehydro-d--acetylneuraminic acid (Neu5Ac2en) as their backbone. Herein we report the synthesis of several Neu5Ac2en glycals and of their perfluorinated C-5 modified derivatives, including their respective stereoisomers at C-4, together with evaluation of their antiviral activity. While all synthesized compounds were found to be active HN inhibitors in the micromolar range, we found that their potency was influenced by the chain-length of the C-5 perfluorinated acetamido functionality. Thus, the binding modes of the inhibitors were also investigated by performing a docking study. Moreover, the perfluorinated glycals were found to be more active than the corresponding normal C-5 acylic derivatives. Finally, cell-cell fusion assays on NDV infected cells revealed that the addition of a newly synthesized C-4α heptafluorobutyryl derivative almost completely inhibited NDV-induced syncytium formation.
新城疫病毒(NDV)属于副粘病毒科,可引起禽类严重的传染病,每年给家禽业造成严重损失。血凝素神经氨酸酶糖蛋白(HN)被认为是病毒感染机制中的关键蛋白,抑制该蛋白是基于唾液酸糖烯开发新药的一个有吸引力的靶点,新药以2-脱氧-2,3-二脱氢-D-乙酰神经氨酸(Neu5Ac2en)为骨架。在此,我们报告了几种Neu5Ac2en糖烯及其全氟C-5修饰衍生物的合成,包括它们在C-4处各自的立体异构体,并评估了它们的抗病毒活性。虽然发现所有合成化合物在微摩尔范围内都是活性HN抑制剂,但我们发现它们的效力受C-5全氟乙酰氨基官能团链长的影响。因此,还通过进行对接研究来研究抑制剂的结合模式。此外,发现全氟糖烯比相应的正常C-5无环衍生物更具活性。最后,对感染NDV的细胞进行细胞-细胞融合试验表明,添加新合成的C-4α七氟丁酰衍生物几乎完全抑制了NDV诱导的合胞体形成。