Laboratorio de Virología, Departamento de Química Biológica, FCEN, UBA, Pabellón II- Piso 4to, Ciudad Universitaria, C-1428BGA, Buenos Aires, Argentina.
Biochem Biophys Res Commun. 2010 Feb 26;393(1):32-7. doi: 10.1016/j.bbrc.2010.01.068. Epub 2010 Jan 25.
The 1-cinnamoyl-3,11-dihydroxymeliacarpin (CDM), isolated from extracts of Melia azedarach L., displays antiviral and immunomodulating properties. CDM is the first reported tetranortriterpenoid responsible for the alkalinization of intracellular compartments affecting both, viral endocytic and exocytic pathways. Considering that viral glycoprotein synthesis is completely dependent upon cellular membrane trafficking, we questioned whether CDM might also interfere with the normal transport of cellular glycoproteins. This study demonstrates that CDM promoted a transient block in the transport of two cellular glycoproteins, the transferrin receptor (TfR) and TNF-alpha. Nevertheless, CDM did not affect the transferrin binding ability of TfR and did not impede the TNF-alpha secretion. On the other hand, CDM disturbed the intracellular localization of capsid, glycoprotein and tegument proteins simultaneously in the same HSV-1 infected cells. Besides, we show that concanamycin A and monensin provoke a permanent blockage of viral and cellular glycoproteins, in contrast to the delay observed after CDM treatment. Thus, the delay on glycoprotein transport caused by CDM would account for the strong inhibition on virus multiplication without interfering with the bioactivity of cellular glycoproteins.
从苦楝(Melia azedarach L.)提取物中分离得到的 1-肉桂酰-3,11-二羟基瑞香素(CDM)具有抗病毒和免疫调节特性。CDM 是第一个报道的负责细胞内酸化的四氢呋喃三萜,影响病毒的内吞和外排途径。鉴于病毒糖蛋白的合成完全依赖于细胞内膜运输,我们想知道 CDM 是否也会干扰细胞糖蛋白的正常运输。本研究表明,CDM 可短暂阻断两种细胞糖蛋白——转铁蛋白受体(TfR)和 TNF-α的运输。然而,CDM 不影响 TfR 结合转铁蛋白的能力,也不阻碍 TNF-α的分泌。另一方面,CDM 在相同的 HSV-1 感染细胞中同时干扰衣壳、糖蛋白和被膜蛋白的细胞内定位。此外,我们表明,康纳霉素 A 和莫能菌素可引发病毒和细胞糖蛋白的永久性阻断,与 CDM 处理后观察到的延迟形成对比。因此,CDM 引起的糖蛋白运输延迟可能导致病毒复制受到强烈抑制,而不干扰细胞糖蛋白的生物活性。