Liu Zhuoming, Kato Akihisa, Oyama Masaaki, Kozuka-Hata Hiroko, Arii Jun, Kawaguchi Yasushi
J Virol. 2015 Sep;89(17):8982-98. doi: 10.1128/JVI.01220-15. Epub 2015 Jun 17.
To clarify the function(s) of the herpes simplex virus 1 (HSV-1) major virion structural protein UL47 (also designated VP13/14), we screened cells overexpressing UL47 for UL47-binding cellular proteins. Tandem affinity purification of transiently expressed UL47 coupled with mass spectrometry-based proteomics technology and subsequent analyses showed that UL47 interacted with cell protein p32 in HSV-1-infected cells. Unlike in mock-infected cells, p32 accumulated at the nuclear rim in HSV-1-infected cells, and this p32 recruitment to the nuclear rim required UL47. p32 formed a complex(es) with HSV-1 proteins UL31, UL34, Us3, UL47, and/or ICP22 in HSV-1-infected cells. All these HSV-1 proteins were previously reported to be important for HSV-1 nuclear egress, in which nucleocapsids bud through the inner nuclear membrane (primary envelopment) and the enveloped nucleocapsids then fuse with the outer nuclear membrane (de-envelopment). Like viral proteins UL31, UL34, Us3, and UL47, p32 was detected in primary enveloped virions. p32 knockdown reduced viral replication and induced membranous invaginations adjacent to the nuclear rim containing primary enveloped virions and aberrant localization of UL31 and UL34 in punctate structures at the nuclear rim. These effects of p32 knockdown were reduced in the absence of UL47. Therefore, the effects of p32 knockdown in HSV-1 nuclear egress were similar to those of the previously reported mutation(s) in HSV-1 regulatory proteins for HSV-1 de-envelopment during viral nuclear egress. Collectively, these results suggested that p32 regulated HSV-1 de-envelopment and replication in a UL47-dependent manner. IMPORTANCE In this study, we have obtained data suggesting that (i) the HSV-1 major virion structural protein UL47 interacted with host cell protein p32 and mediated the recruitment of p32 to the nuclear rim in HSV-1-infected cells; (ii) p32 was a component of the HSV-1 nuclear egress complex (NEC), whose core components were UL31 and UL34; and (iii) p32 regulated HSV-1 de-envelopment during viral nuclear egress. It has been reported that p32 was a component of human cytomegalovirus NEC and was required for efficient disintegration of nuclear lamina, which has been thought to facilitate HSV-1 primary envelopment during viral nuclear egress. Thus, p32 appeared to be a core component of herpesvirus NECs, like UL31 and UL34 homologs in other herpesviruses, and to play multiple roles in herpesvirus nuclear egress.
为阐明单纯疱疹病毒1型(HSV-1)主要病毒体结构蛋白UL47(也称为VP13/14)的功能,我们对过表达UL47的细胞进行筛选,以寻找与UL47结合的细胞蛋白。将瞬时表达的UL47进行串联亲和纯化,并结合基于质谱的蛋白质组学技术及后续分析,结果显示在HSV-1感染的细胞中,UL47与细胞蛋白p32相互作用。与 mock 感染的细胞不同,p32在HSV-1感染的细胞中积聚在核边缘,且这种p32募集到核边缘需要UL47。在HSV-1感染的细胞中,p32与HSV-1蛋白UL31、UL34、Us3、UL47和/或ICP22形成复合物。此前报道所有这些HSV-1蛋白对HSV-1核出芽都很重要,在核出芽过程中,核衣壳通过内核膜出芽(初次包膜化),然后被包膜的核衣壳与外核膜融合(去包膜化)。与病毒蛋白UL31、UL34、Us3和UL47一样,在初次包膜化的病毒体中检测到了p32。敲低p32可降低病毒复制,并诱导在含有初次包膜化病毒体的核边缘附近出现膜内陷,以及UL31和UL34在核边缘的点状结构中出现异常定位。在没有UL47的情况下,p32敲低的这些效应会减弱。因此,p32敲低对HSV-1核出芽的影响与之前报道的HSV-1调节蛋白在病毒核出芽过程中对HSV-1去包膜化的突变影响相似。总体而言,这些结果表明p32以UL47依赖的方式调节HSV-1去包膜化和复制。重要性 在本研究中,我们获得的数据表明:(i)HSV-1主要病毒体结构蛋白UL47与宿主细胞蛋白p32相互作用,并介导p32在HSV-1感染的细胞中募集到核边缘;(ii)p32是HSV-1核出芽复合物(NEC)的一个组分,其核心组分是UL31和UL34;(iii)p32在病毒核出芽过程中调节HSV-1去包膜化。据报道,p32是人巨细胞病毒NEC的一个组分,是核纤层有效解体所必需的,而核纤层解体被认为有助于HSV-1在病毒核出芽过程中的初次包膜化。因此,p32似乎是疱疹病毒NEC的一个核心组分,就像其他疱疹病毒中的UL31和UL34同源物一样,并在疱疹病毒核出芽中发挥多种作用。