Junjhon Jiraphan, Lausumpao Matthawee, Supasa Sunpetchuda, Noisakran Sansanee, Songjaeng Adisak, Saraithong Prakaimuk, Chaichoun Kridsada, Utaipat Utaiwan, Keelapang Poonsook, Kanjanahaluethai Amornrat, Puttikhunt Chunya, Kasinrerk Watchara, Malasit Prida, Sittisombut Nopporn
Department of Microbiology, Faculty of Medicine, Chiang Mai University, Chiang Mai, Thailand.
J Virol. 2008 Nov;82(21):10776-91. doi: 10.1128/JVI.01180-08. Epub 2008 Aug 20.
In the generation of flavivirus particles, an internal cleavage of the envelope glycoprotein prM by furin is required for the acquisition of infectivity. Unlike cleavage of the prM of other flaviviruses, cleavage of dengue virus prM is incomplete in many cell lines; the partial cleavage reflects the influence of residues at furin nonconsensus positions of the pr-M junction, as flaviviruses share basic residues at positions P1, P2, and P4, recognized by furin. In this study, viruses harboring the alanine-scanning and other multiple-point mutations of the pr-M junction were generated, employing a dengue virus background that exhibited 60 to 70% prM cleavage and a preponderance of virion-sized extracellular particles. Analysis of prM and its cleavage products in viable mutants revealed a cleavage-suppressive effect at the conserved P3 Glu residue, as well as the cleavage-augmenting effects at the P5 Arg and P6 His residues, indicating an interplay between opposing modulatory influences mediated by these residues on the cleavage of the pr-M junction. Changes in the prM cleavage level were associated with altered proportions of extracellular virions and subviral particles; mutants with reduced cleavage were enriched with subviral particles and prM-containing virions, whereas the mutant with enhanced cleavage was deprived of these particles. Alterations of virus multiplication were detected in mutants with reduced prM cleavage and were correlated with their low specific infectivities. These findings define the functional roles of charged residues located adjacent to the furin consensus sequence in the cleavage of dengue virus prM and provide plausible mechanisms by which the reduction in the pr-M junction cleavability may affect virus replication.
在黄病毒颗粒的产生过程中,包膜糖蛋白prM的内部切割对于获得感染性是必需的,这一过程由弗林蛋白酶(furin)完成。与其他黄病毒的prM切割不同,登革病毒prM在许多细胞系中的切割是不完全的;这种部分切割反映了pr-M连接区弗林蛋白酶非共识位置的残基的影响,因为黄病毒在弗林蛋白酶识别的P1、P2和P4位置共享碱性残基。在本研究中,利用一种登革病毒背景(该背景下prM切割率为60%至70%,且病毒体大小的细胞外颗粒占优势),构建了携带pr-M连接区丙氨酸扫描和其他多点突变的病毒。对存活突变体中prM及其切割产物的分析显示,保守的P3 Glu残基具有切割抑制作用,而P5 Arg和P6 His残基具有切割增强作用,这表明这些残基介导的相反调节影响之间存在相互作用,影响pr-M连接区的切割。prM切割水平的变化与细胞外病毒体和亚病毒颗粒比例的改变相关;切割减少的突变体富含亚病毒颗粒和含prM的病毒体,而切割增强的突变体则缺乏这些颗粒。在prM切割减少的突变体中检测到病毒增殖的改变,且与它们低的比感染性相关。这些发现确定了登革病毒prM切割中弗林蛋白酶共识序列附近带电残基的功能作用,并提供了pr-M连接区切割能力降低可能影响病毒复制的合理机制。