Majerciak Vladimir, Alvarado-Hernandez Beatriz, Ma Yanping, Duduskar Shivalee, Lobanov Alexei, Cam Maggie, Zheng Zhi-Ming
Tumor Virus RNA Biology Section, HIV Dynamics and Replication Program, Center for Cancer Research, NCI/NIH, Frederick, MD, 21702, USA.
CCR Collaborative Bioinformatics Resource, Center for Cancer Research, NCI/NIH, Bethesda, MD, 20892, USA.
bioRxiv. 2024 Jan 28:2024.01.27.577582. doi: 10.1101/2024.01.27.577582.
Kaposi's sarcoma-associated herpesvirus (KSHV) ORF57 is a lytic RNA-binding protein. We applied BCBL-1 cells in lytic KSHV infection and performed UV cross-linking immunoprecipitation (CLIP) followed by RNA-seq of the CLIPed RNA fragments (CLIP-seq). We identified ORF57-bound transcripts from 544 host protein-coding genes. By comparing with the RNA-seq profiles from BCBL-1 cells with latent and lytic KSHV infection and from HEK293T cells with and without ORF57 expression, we identified FOS and CITED2 RNAs being two common ORF57-specific RNA targets. FOS dimerizes with JUN as a transcription factor AP-1 involved in cell proliferation, differentiation, and transformation. Knockout of the ORF57 gene from the KSHV genome led BAC16-iSLK cells incapable of FOS expression in KSHV lytic infection. The dysfunctional KSHV genome in FOS expression could be rescued by Lenti-ORF57 virus infection. ORF57 protein does not regulate FOS translation but binds to the 13-nt RNA motif near the FOS RNA 5' end and prolongs FOS mRNA half-life 7.7 times longer than it is in the absence of ORF57. This binding of ORF57 to FOS RNA is competitive to the binding of a host nuclease AEN (also referred to as ISG20L1). KSHV infection inhibits the expression of AEN, but not exosomal RNA helicase MTR4. FOS expression mediated by ORF57 inhibits transcription, but transactivates a regulator of G-protein coupled receptors. FOS binds a conserved AP-1 site in the promoter and enhances RGS2 expression to phosphorylate AKT. Altogether, we have discovered that KSHV ORF57 specifically binds and stabilizes FOS RNA to increase FOS expression, thereby disturbing host gene expression and inducing pathogenesis during KSHV lytic infection.
卡波西肉瘤相关疱疹病毒(KSHV)的ORF57是一种裂解性RNA结合蛋白。我们将BCBL-1细胞用于KSHV的裂解性感染,并进行紫外线交联免疫沉淀(CLIP),随后对CLIP捕获的RNA片段进行RNA测序(CLIP-seq)。我们从544个宿主蛋白编码基因中鉴定出了与ORF57结合的转录本。通过与潜伏性和裂解性KSHV感染的BCBL-1细胞以及有和没有ORF57表达的HEK293T细胞的RNA-seq图谱进行比较,我们确定FOS和CITED2 RNA是两个常见的ORF57特异性RNA靶标。FOS与JUN二聚化形成转录因子AP-1,参与细胞增殖、分化和转化。从KSHV基因组中敲除ORF57基因导致BAC16-iSLK细胞在KSHV裂解性感染中无法表达FOS。FOS表达功能失调的KSHV基因组可通过慢病毒-ORF57病毒感染得到挽救。ORF57蛋白不调节FOS的翻译,但与FOS RNA 5'端附近的13个核苷酸的RNA基序结合,并将FOS mRNA的半衰期延长至无ORF57时的7.7倍。ORF57与FOS RNA的这种结合与宿主核酸酶AEN(也称为ISG20L1)的结合具有竞争性。KSHV感染会抑制AEN的表达,但不会抑制外泌体RNA解旋酶MTR4的表达。由ORF57介导的FOS表达抑制转录,但反式激活G蛋白偶联受体的一种调节因子。FOS结合启动子中的保守AP-1位点并增强RGS2的表达,从而使AKT磷酸化。总之,我们发现KSHV的ORF57特异性结合并稳定FOS RNA以增加FOS表达,从而在KSHV裂解性感染期间干扰宿主基因表达并引发病变。