Upadya Megha Haridas, Aweya Jude Juventus, Tan Yee-Joo
Megha Haridas Upadya, Jude Juventus Aweya, Yee-Joo Tan, Department of Microbiology, Yong Loo Lin School of Medicine, National University Health System (NUHS), National University of Singapore, Singapore 117597, Singapore.
World J Gastroenterol. 2014 Mar 21;20(11):2913-26. doi: 10.3748/wjg.v20.i11.2913.
The current therapeutic regimen to combat chronic hepatitis C is not optimal due to substantial side effects and the failure of a significant proportion of patients to achieve a sustained virological response. Recently developed direct-acting antivirals targeting hepatitis C virus (HCV) enzymes reportedly increase the virologic response to therapy but may lead to a selection of drug-resistant variants. Besides direct-acting antivirals, another promising class of HCV drugs in development include host targeting agents that are responsible for interfering with the host factors crucial for the viral life cycle. A family of host proteins known as DEAD-box RNA helicases, characterized by nine conserved motifs, is known to play an important role in RNA metabolism. Several members of this family such as DDX3, DDX5 and DDX6 have been shown to play a role in HCV replication and this review will summarize our current knowledge on their interaction with HCV. As chronic hepatitis C is one of the leading causes of hepatocellular carcinoma, the involvement of DEAD-box RNA helicases in the development of HCC will also be highlighted. Continuing research on the interaction of host DEAD-box proteins with HCV and the contribution to viral replication and pathogenesis could be the panacea for the development of novel therapeutics against HCV.
目前用于对抗慢性丙型肝炎的治疗方案并非最佳,因为存在大量副作用,且相当一部分患者未能实现持续病毒学应答。据报道,最近开发的针对丙型肝炎病毒(HCV)酶的直接作用抗病毒药物可提高治疗的病毒学应答,但可能导致耐药变异体的产生。除了直接作用抗病毒药物外,另一类正在开发的有前景的HCV药物包括宿主靶向药物,它们负责干扰对病毒生命周期至关重要的宿主因子。一类被称为DEAD盒RNA解旋酶的宿主蛋白,其特征在于九个保守基序,已知在RNA代谢中起重要作用。该家族的几个成员,如DDX3、DDX5和DDX6,已被证明在HCV复制中起作用,本综述将总结我们目前关于它们与HCV相互作用的知识。由于慢性丙型肝炎是肝细胞癌的主要原因之一,还将强调DEAD盒RNA解旋酶在HCC发展中的作用。对宿主DEAD盒蛋白与HCV相互作用及其对病毒复制和发病机制的贡献的持续研究可能是开发新型抗HCV疗法的灵丹妙药。