DiCarlo Andrea, Möller Peggy, Lander Angelika, Kolesnikova Larissa, Becker Stephan
Philipps-Universität Marburg, Institut für Virologie, Hans Meerwein-Str, 2, 35032 Marburg, Germany.
Virol J. 2007 Oct 24;4:105. doi: 10.1186/1743-422X-4-105.
The nucleoprotein (NP) of Marburg virus (MARV) is responsible for the encapsidation of viral genomic RNA and the formation of the helical nucleocapsid precursors that accumulate in intracellular inclusions in infected cells. To form the large helical MARV nucleocapsid, NP needs to interact with itself and the viral proteins VP30, VP35 and L, which are also part of the MARV nucleocapsid. In the present study, a conserved coiled coil motif in the central part of MARV NP was shown to be an important element for the interactions of NP with itself and VP35, the viral polymerase cofactor. Additionally, the coiled coil motif was essential for the formation of NP-induced intracellular inclusions and for the function of NP in the process of transcription and replication of viral RNA in a minigenome system. Transfer of the coiled coil motif to a reporter protein was sufficient to mediate interaction of the constructed fusion protein with the N-terminus of NP. The coiled coil motif is bipartite, constituted by two coiled coils which are separated by a flexible linker.
马尔堡病毒(MARV)的核蛋白(NP)负责病毒基因组RNA的衣壳化以及螺旋核衣壳前体的形成,这些前体在受感染细胞的细胞内包涵体中积累。为了形成大型螺旋状的马尔堡病毒核衣壳,NP需要与自身以及病毒蛋白VP30、VP35和L相互作用,这些蛋白也是马尔堡病毒核衣壳的一部分。在本研究中,马尔堡病毒NP中部的一个保守卷曲螺旋基序被证明是NP与自身以及病毒聚合酶辅助因子VP35相互作用的重要元件。此外,卷曲螺旋基序对于NP诱导的细胞内包涵体的形成以及NP在微型基因组系统中病毒RNA转录和复制过程中的功能至关重要。将卷曲螺旋基序转移到报告蛋白上足以介导构建的融合蛋白与NP的N端相互作用。卷曲螺旋基序是二分的,由两个被柔性接头隔开的卷曲螺旋组成。