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ORF45 早期蛋白内的保守线性基序促进其与 KSHV 裂解周期促进叉头转录因子 FOXK1 和 FOXK2 的结合。

Conserved linear motif within the immediate early protein ORF45 promotes its engagement with KSHV lytic cycle-promoting forkhead transcription factors, FOXK1 and FOXK2.

机构信息

Department of Oral Biology, University of Florida College of Dentistry, Gainesville, Florida, USA.

Genetics Institute, University of Florida, Gainesville, Florida, USA.

出版信息

J Virol. 2024 Oct 22;98(10):e0088624. doi: 10.1128/jvi.00886-24. Epub 2024 Sep 17.

Abstract

Kaposi's sarcoma-associated herpesvirus (KSHV) is a gammaherpesvirus that can cause several cancers, such as Kaposi sarcoma and primary effusion lymphoma (PEL). We and others have recently demonstrated that Forkhead box (FOX) transcription factors can be dysregulated by KSHV, and they can affect KSHV infection. Herein, we focus on dissecting the role of two FOXK subfamily members, FOXK1 and FOXK2, in the KSHV life cycle. FOXK proteins are key host regulators of cellular functions, yet their role in KSHV infection remains unknown. Here, we demonstrated that both FOXK proteins are essential for efficient KSHV lytic reactivation in PEL cells. FOXK1 and FOXK2 are unique as they are the only FOX proteins that contain a Forkhead-associated (FHA) domain. The FHA domain is a specialized protein binding domain that recognizes a short linear serine/threonine-rich (S/T) motif. Through an unbiased motif survey, we found that KSHV viral protein ORF45 and its gammaherpesvirus homologs contain a putative FHA-binding motif. ORF45 is an immediate early tegument protein, vital for lytic reactivation and virus production. We demonstrated that ORF45 uses its novel conserved motif to interact with the FHA domain containing FOXK factors in the nucleus of infected cells. A single-point mutation of the conserved threonine residue in the motif within ORF45 abolished the ORF45-FOXK1/2 interaction. Our data indicates that FOXK proteins interact with ORF45 homologs encoded by murine gammaherpesvirus 68 (MHV68) and Rhesus macaque rhadinovirus (RRV), and that the FHA domains of FOXK proteins are sufficient for their interactions, highlighting a conserved mechanism.IMPORTANCEThe dysregulation of Forkhead transcription factors contributes to many different human diseases, including cancers, but their impact on herpesvirus lifecycle and pathogenesis is less understood. Our study uncovers a critical pro-lytic function of the FOXK subfamily and its requirement for KSHV lytic reactivation in PEL. We found that FOXK proteins bind to a key immediate early KSHV protein ORF45 using its novel short linear S/T motif. Notably, even though ORF45 homologs in gammaherpesviruses are highly diverse, we identified a similar S/T short linear motif in ORF45 homologs and also showed an evolutionary conserved interaction between FOXK proteins and ORF45 homologs of MHV68 and RRV. Our study provides a basis for future studies in animal models to evaluate the role of FOXK proteins and the impact of their interactions with ORF45 in gammaherpesvirus infection and pathogenesis. Targeting these interactions could allow a novel way to limit gammaherpesvirus infections.

摘要

卡波西肉瘤相关疱疹病毒(KSHV)是一种γ疱疹病毒,可导致多种癌症,如卡波西肉瘤和原发性渗出性淋巴瘤(PEL)。我们和其他人最近已经证明,叉头框(FOX)转录因子可能被 KSHV 失调,并且它们可以影响 KSHV 感染。在此,我们专注于剖析两个 FOXK 亚家族成员 FOXK1 和 FOXK2 在 KSHV 生命周期中的作用。FOXK 蛋白是细胞功能的关键宿主调节剂,但它们在 KSHV 感染中的作用仍不清楚。在这里,我们证明了这两种 FOXK 蛋白对于 PEL 细胞中有效的 KSHV 裂解再激活都是必不可少的。FOXK1 和 FOXK2 是独一无二的,因为它们是唯一含有 Forkhead 相关(FHA)结构域的 FOX 蛋白。FHA 结构域是一种专门的蛋白结合结构域,可识别短线性丝氨酸/苏氨酸丰富(S/T)基序。通过一项无偏的基序调查,我们发现 KSHV 病毒蛋白 ORF45 及其γ疱疹病毒同源物包含一个推定的 FHA 结合基序。ORF45 是一种早期立即被膜蛋白,对裂解再激活和病毒产生至关重要。我们证明,ORF45 使用其新颖的保守基序与感染细胞核中的包含 FHA 结构域的 FOXK 因子相互作用。ORF45 中的保守苏氨酸残基的单点突变会破坏 ORF45-FOXK1/2 相互作用。我们的数据表明,FOXK 蛋白与编码鼠γ疱疹病毒 68(MHV68)和恒河猴疱疹病毒(RRV)的 ORF45 同源物相互作用,并且 FOXK 蛋白的 FHA 结构域足以进行相互作用,突出了一种保守的机制。

重要性 Forkhead 转录因子的失调会导致许多不同的人类疾病,包括癌症,但它们对疱疹病毒生命周期和发病机制的影响知之甚少。我们的研究揭示了 FOXK 亚家族的一个关键促裂解功能及其对 PEL 中 KSHV 裂解再激活的要求。我们发现 FOXK 蛋白使用其新颖的短线性 S/T 基序与 KSHV 的关键早期立即被膜蛋白 ORF45 结合。值得注意的是,尽管 γ疱疹病毒中的 ORF45 同源物高度多样化,但我们在 ORF45 同源物中鉴定出了类似的 S/T 短线性基序,并显示了 FOXK 蛋白与 MHV68 和 RRV 的 ORF45 同源物之间进化保守的相互作用。我们的研究为未来在动物模型中的研究提供了基础,以评估 FOXK 蛋白的作用及其与 ORF45 相互作用在 γ疱疹病毒感染和发病机制中的影响。靶向这些相互作用可能为限制 γ疱疹病毒感染提供一种新方法。

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