Viduka Ivona, Štimac Igor, Jurić Silvija Lukanović, Gulić Tamara, Lisnić Berislav, Zagorac Gordana Blagojević, Lučin Hana Mahmutefendić, Lučin Pero
Department of Physiology, Immunology and Pathophysiology, Faculty of Medicine, University of Rijeka, Braće Branchetta 20, 51000 Rijeka, Croatia.
Center for Proteomics, Faculty of Medicine, University of Rijeka, Braće Branchetta 20, 51000 Rijeka, Croatia.
Biomedicines. 2025 Apr 11;13(4):936. doi: 10.3390/biomedicines13040936.
: Cytomegalovirus (CMV) infection expands early endosomes (EEs) into tubular extensions that may contribute to the control of virus replication and virion assembly. Sequential recruitment of protein coats and sorting nexins (SNXs) creates membrane zones at the EEs that serve as scaffolds for membrane tubulation and retrieval of cargo proteins, including host cell signaling proteins and viral glycoproteins. This study aims to investigate whether the SNX3-dependent zone of EEs contributes to CMV replication and assembly. : Protein localization was analyzed by confocal imaging and expression by Western blot. The contribution of SNX3 to murine CMV (MCMV) replication, assembly compartment (AC) formation, and virion release was analyzed by siRNA and shRNA depletion. The impact of other downstream SNXs that act in EE tubulation was investigated by combined siRNA knockdowns of SNX1, SNX2, SNX4, SNX17, and SNX27 on cell lines expressing shRNA for SNX3. : The SNX3-162 isoform acting at EEs was efficiently knocked down by siRNA and shRNA. The SNX3-dependent EE zone recruited SNX27 and contributed to Rab10-dependent tubulation within the pre-AC. SNX3 was not essential for MCMV replication but contributed to the SNX27-, SNX17- and SNX4-dependent release of virions. Silencing SNX3 further reduced the release of virions after silencing SNX27, SNX4, and SNX17, three SNXs that control recycling to the plasma membrane. : SNX3 contributes to the formation of pre-AC and MCMV assembly. It acts sequentially with SNX27, SNX4, and SNX17 along the recycling pathway in the process of the production and release of infection virions, suggesting that multiple membrane sources may contribute to the secondary envelopment of MCMV virions.
巨细胞病毒(CMV)感染会使早期内体(EEs)扩展为管状延伸结构,这可能有助于控制病毒复制和病毒粒子组装。蛋白质衣壳和分选连接蛋白(SNXs)的顺序募集在EEs处形成膜区,这些膜区作为膜微管形成和货物蛋白回收的支架,包括宿主细胞信号蛋白和病毒糖蛋白。本研究旨在调查EEs中依赖SNX3的区域是否有助于CMV复制和组装。
通过共聚焦成像分析蛋白质定位,通过蛋白质印迹分析表达情况。通过小干扰RNA(siRNA)和短发夹RNA(shRNA)敲低分析SNX3对小鼠巨细胞病毒(MCMV)复制、组装区室(AC)形成和病毒粒子释放的贡献。通过对表达针对SNX3的shRNA的细胞系联合敲低SNX1、SNX2、SNX4、SNX17和SNX27,研究了在EE微管形成中起作用的其他下游SNXs的影响。
作用于EEs的SNX3 - 162亚型被siRNA和shRNA有效敲低。依赖SNX3的EE区募集SNX27,并有助于AC前体中依赖Rab10的微管形成。SNX3对MCMV复制不是必需的,但有助于依赖SNX27、SNX17和SNX4的病毒粒子释放。沉默SNX3进一步降低了在沉默SNX27、SNX4和SNX17(这三个控制向质膜回收的SNXs)后病毒粒子的释放。
SNX3有助于AC前体的形成和MCMV组装。在感染性病毒粒子产生和释放过程中,它沿着回收途径与SNX27、SNX4和SNX17依次作用,表明多个膜来源可能有助于MCMV病毒粒子的二次包膜化。