The Roslin Institute, The University of Edinburgh, Easter Bush Campus, Edinburgh, Midlothian EH25 9RG, UK.
The Roslin Institute, The University of Edinburgh, Easter Bush Campus, Edinburgh, Midlothian EH25 9RG, UK.
Virus Res. 2022 Nov;321:198927. doi: 10.1016/j.virusres.2022.198927. Epub 2022 Sep 11.
Bovine Herpesvirus Type 1 (BoHV-1) infection causes infectious bovine rhinotracheitis and genital disease in cattle, with significant economic and welfare impacts. However, the role of cellular host factors during viral replication remains poorly characterised. A previously performed genome-wide CRISPR knockout screen identified pro- and antiviral host factors acting during BoHV-1 replication. Herein we validate a pro-viral role for a candidate from this screen: the cellular protein tetracopeptide repeat protein 4 (TTC4). We show that TTC4 transcript production is upregulated during BoHV-1 infection. Depletion of TTC4 protein impairs BoHV-1 protein production but does not reduce production of infectious virions, whereas overexpression of exogenous TTC4 results in a significant increase in production of infectious BoHV-1 virions. TTC4 itself is poorly characterized (especially in the context of virus infection), but is a known co-chaperone of heat shock protein 90 (HSP90). HSP90 has a well-characterized pro-viral role during the replication of diverse herpesviruses, and we therefore hypothesized that HSP90 is also pro-viral for BoHV-1. Drug-mediated inhibition of HSP90 using geldanamycin at sub-cytotoxic concentrations inhibited both BoHV-1 protein production and viral genome replication, indicating a pro-viral role for HSP90 during BoHV-1 infection. Our data demonstrates pro-viral roles for both TTC4 and HSP90 during BoHV-1 replication; possibly, interactions between these two proteins are required for optimal BoHV-1 replication, or the two proteins may have independent pro-viral roles.
牛疱疹病毒 1 型(BoHV-1)感染可引起牛传染性鼻气管炎和生殖器官疾病,对经济和福利有重大影响。然而,病毒复制过程中细胞宿主因素的作用仍未得到充分描述。之前进行的全基因组 CRISPR 敲除筛选鉴定了在 BoHV-1 复制过程中起促病毒和抗病毒作用的宿主因子。本文我们验证了该筛选中的一个候选促病毒因子:细胞蛋白四肽重复蛋白 4(TTC4)。我们发现 TTC4 转录物的产生在 BoHV-1 感染期间上调。TTC4 蛋白的耗竭会损害 BoHV-1 蛋白的产生,但不会减少感染性病毒粒子的产生,而外源性 TTC4 的过表达会导致感染性 BoHV-1 病毒粒子的产量显著增加。TTC4 本身的特征(尤其是在病毒感染的背景下)较差,但已知是热休克蛋白 90(HSP90)的共同伴侣。HSP90 在多种疱疹病毒的复制过程中具有明确的促病毒作用,因此我们假设 HSP90 也对 BoHV-1 具有促病毒作用。使用 geldanamycin 以亚细胞毒性浓度抑制 HSP90 的药物介导抑制 BoHV-1 蛋白的产生和病毒基因组复制,表明 HSP90 在 BoHV-1 感染过程中具有促病毒作用。我们的数据表明 TTC4 和 HSP90 在 BoHV-1 复制过程中均具有促病毒作用;可能是这两种蛋白之间的相互作用是 BoHV-1 最佳复制所必需的,或者这两种蛋白可能具有独立的促病毒作用。