Rosner A, Rinkevich B
National Institute of Oceanography, Israel Oceanography & Limnological Research, Tel Shikmona, P.O. Box 8030, Haifa 31080, Israel.
Curr Med Chem. 2007;14(23):2517-25. doi: 10.2174/092986707782023677.
DDX3 (or Ded1p), the highly conserved subfamily of the DEAD-box RNA helicase family (40 members in humans), plays important roles in RNA metabolism. DDX3X and DDX3Y, the two human paralogous genes of this subfamily of proteins, have orthologous candidates in a diverse range of eukaryotes, from yeast and plants to animals. While DDX3Y, which is essential for normal spermatogenesis, is translated only in the testes, DDX3X protein is ubiquitously expressed, involved in RNA transcription, RNA splicing, mRNA transport, translation initiation and cell cycle regulation. Studies of recent years have revealed that DDX3X participates in HIV and hepatitis C viral infections, and in hepatocellular carcinoma, a complication of hepatitis B and hepatitis C infections. In the urochordates (i.e., Botryllus schlosseri) and in diverse invertebrate phyla (represented by model organisms such as: Drosophila, Hydra, Planaria), DDX3 proteins (termed also PL10) are involved in developmental pathways, highly expressed in adult undifferentiated soma and germ cells and in some adult and embryo's differentiating tissues. As the mechanistic and functional knowledge of DDX3 proteins is limited, we suggest assembling the available data on DDX3 proteins, from all studied organisms and in vitro assays, depicting a unified mechanistic scheme for DDX3 proteins' functions. Understanding the diverse functions of DDX3 in multicellular organisms may be particularly important for effective strategies of drug design.
DDX3(或Ded1p)是DEAD盒RNA解旋酶家族中高度保守的亚家族(人类中有40个成员),在RNA代谢中发挥重要作用。该蛋白质亚家族的两个人类旁系同源基因DDX3X和DDX3Y,在从酵母、植物到动物等多种真核生物中都有直系同源候选基因。虽然对正常精子发生至关重要的DDX3Y仅在睾丸中翻译,但DDX3X蛋白在全身广泛表达,参与RNA转录、RNA剪接、mRNA运输、翻译起始和细胞周期调控。近年来的研究表明,DDX3X参与了HIV和丙型肝炎病毒感染,以及乙型和丙型肝炎感染的并发症——肝细胞癌。在尾索动物(即柄海鞘)和多种无脊椎动物门(以果蝇、水螅、涡虫等模式生物为代表)中,DDX3蛋白(也称为PL10)参与发育途径,在成年未分化的体细胞和生殖细胞以及一些成年和胚胎的分化组织中高度表达。由于对DDX3蛋白的机制和功能了解有限,我们建议整合来自所有研究生物和体外实验的关于DDX3蛋白的现有数据,描绘出DDX3蛋白功能的统一机制图。了解DDX3在多细胞生物中的多种功能对于有效的药物设计策略可能尤为重要。