State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, 430072, China.
Sci Rep. 2017 Oct 11;7(1):12995. doi: 10.1038/s41598-017-13352-w.
The classical swine fever virus (CSFV) nonstructural protein p7 is crucial for virus production, yet precisely how the p7 modulates this process is unclear. In this study, we first identified the interactions of p7 with E2 and NS2. The key binding regions of both p7 and NS2 mapped to the first transmembrane (TM1) domain of two proteins. Three amino acid substitutions in the TM1 region of p7 (p7, p7 and p7) impaired infectious virus production and reduced the interaction of p7 with the NS2 protein. The E2p7 processing and mature p7, but not the E2p7 precursor, are essential for infectious virus production. Bicistronic mutants (pSM/E2/IRES) with single substitutions at residues 1 to 9 of p7 exhibited a significantly increased infectious CSFV titer compared to their counterparts in the context of pSM. Viral genomic RNA copies of the mutants exhibited similar levels compared with the wt CSFV. Our results demonstrated that CSFV p7 and its precursor E2p7 modulate viral protein interactions and infectious virus production without influencing viral RNA replication.
经典猪瘟病毒(CSFV)非结构蛋白 p7 对病毒产生至关重要,但 p7 如何调节这一过程尚不清楚。在这项研究中,我们首先鉴定了 p7 与 E2 和 NS2 的相互作用。p7 和 NS2 的关键结合区域均映射到两种蛋白的第一个跨膜(TM1)结构域。p7 的 TM1 区域的三个氨基酸取代(p7、p7 和 p7)损害了感染性病毒的产生,并减少了 p7 与 NS2 蛋白的相互作用。E2p7 加工和成熟的 p7,但不是 E2p7 前体,对于感染性病毒的产生是必需的。与 pSM 中的对应物相比,p7 残基 1 至 9 处的单取代双顺反子突变体(pSM/E2/IRES)显示出显著增加的感染性 CSFV 滴度。突变体的病毒基因组 RNA 拷贝与 wt CSFV 相似。我们的结果表明,CSFV p7 及其前体 E2p7 调节病毒蛋白相互作用和感染性病毒的产生,而不影响病毒 RNA 复制。