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人巨细胞病毒 UL40 和恒河猴巨细胞病毒 Rh67 蛋白对经典和非经典 MHC 蛋白细胞表面表达的调节。

Regulation of the cell surface expression of classical and non-classical MHC proteins by the human cytomegalovirus UL40 and rhesus cytomegalovirus Rh67 proteins.

机构信息

Centre for Immuno-Oncology, Nuffield Department of Medicine, University of Oxford, Oxford, United Kingdom.

Vaccine & Gene Therapy Institute, Oregon Health & Science University, Beaverton, Oregon, USA.

出版信息

J Virol. 2024 Sep 17;98(9):e0120624. doi: 10.1128/jvi.01206-24. Epub 2024 Aug 29.

Abstract

UNLABELLED

The signal sequences of the human cytomegalovirus (CMV) UL40 protein and its rhesus CMV (RhCMV) counterpart, Rh67, contain a peptide (VMAPRT[L/V][F/I/L/V]L, VL9) that is presented by major histocompatibility complex (MHC) antigen E (MHC-E). The CMV VL9 peptides replace VL9 peptides derived from classical MHC (Ia) signal sequences, which are lost when CMV disrupts antigen processing and presentation and MHC Ia expression. This allows infected cells to maintain MHC-E surface expression and escape killing by Natural Killer cells. We demonstrate that processing of the Rh67 VL9 peptide mirrors that of UL40, despite the lack of sequence conservation between the two proteins. Processing of both VL9 peptides is dependent on cleavage of their signal sequences by the host protease signal peptide peptidase. As previously shown for UL40, up-regulation of MHC-E expression by Rh67 requires only its signal sequence, with sequences upstream of VL9 critical for conferring independence from TAP, the transporter associated with antigen processing. Our results also suggest that the mature UL40 and Rh67 proteins contribute to CMV immune evasion by decreasing surface expression of MHC Ia. Unexpectedly, while the Rh67 VL9 peptide is resistant to the effects of Rh67, UL40 can partially counteract the up-regulation of MHC-E expression mediated by its own VL9 peptide. This suggests differences in the mechanisms by which the two VL9 peptides up-regulate MHC-E, and further work will be required to determine if any such differences have implications for translating a RhCMV-vectored simian immunodeficiency virus (SIV) vaccine to HIV-1 using human CMV as a vector.

IMPORTANCE

The protective immune response induced by a rhesus cytomegalovirus (RhCMV)-vectored simian immunodeficiency virus (SIV) vaccine in rhesus macaques depends on the presence of the viral Rh67 gene in the vaccine. The Rh67 protein contains a peptide that allows the RhCMV-infected cells to maintain expression of major histocompatibility complex (MHC) antigen E at the cell surface. We show that production of this peptide, referred to as "VL9," mirrors that of the equivalent peptide present in the human cytomegalovirus (CMV) protein UL40, despite the little sequence similarity between the two CMV proteins. We also show that the mature UL40 and Rh67 proteins, which have no previously described function, also contribute to CMV immune evasion by reducing cell surface expression of MHC proteins important for the immune system to detect infected cells. Despite these similarities, our work also reveals possible differences between Rh67 and UL40, and these may have implications for the use of human CMV as the vector for a potential HIV-1 vaccine.

摘要

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人巨细胞病毒(CMV)UL40 蛋白及其恒河猴 CMV(RhCMV)对应物 Rh67 的信号序列包含一个肽(VMAPRT[L/V][F/I/L/V]L,VL9),该肽由主要组织相容性复合体(MHC)抗原 E(MHC-E)呈递。CMV 的 VL9 肽取代了源自经典 MHC(Ia)信号序列的 VL9 肽,当 CMV 破坏抗原加工和呈递以及 MHC Ia 表达时,这些肽会丢失。这使得受感染的细胞能够维持 MHC-E 表面表达并逃避自然杀伤细胞的杀伤。我们证明,尽管两种蛋白质之间没有序列一致性,但 Rh67 的 VL9 肽的加工与 UL40 的加工相似。两种 VL9 肽的加工均依赖于宿主蛋白酶信号肽肽酶对其信号序列的切割。如先前针对 UL40 所示,上调 Rh67 的 MHC-E 表达仅需要其信号序列,VL9 上游的序列对于赋予其独立于抗原加工相关转运蛋白(TAP)的能力至关重要。我们的结果还表明,成熟的 UL40 和 Rh67 蛋白通过降低 MHC Ia 的表面表达来帮助 CMV 逃避免疫。出乎意料的是,虽然 Rh67 VL9 肽对 Rh67 的作用具有抗性,但 UL40 可以部分抵消其自身 VL9 肽介导的 MHC-E 表达的上调。这表明两种 VL9 肽上调 MHC-E 的机制存在差异,需要进一步研究以确定这种差异是否会影响使用人类巨细胞病毒(CMV)作为载体将恒河猴 CMV 载体的猴免疫缺陷病毒(SIV)疫苗转化为 HIV-1。

重要性

恒河猴巨细胞病毒(RhCMV)载体的猴免疫缺陷病毒(SIV)疫苗在恒河猴中诱导的保护性免疫反应取决于疫苗中病毒 Rh67 基因的存在。Rh67 蛋白包含一种肽,使 RhCMV 感染的细胞能够在细胞表面维持主要组织相容性复合体(MHC)抗原 E 的表达。我们表明,这种被称为“VL9”的肽的产生与人类巨细胞病毒(CMV)蛋白 UL40 中存在的等效肽相似,尽管两种 CMV 蛋白之间几乎没有序列相似性。我们还表明,成熟的 UL40 和 Rh67 蛋白通过降低免疫系统检测感染细胞所需的 MHC 蛋白的细胞表面表达,也有助于 CMV 免疫逃避。尽管存在这些相似性,但我们的工作还揭示了 Rh67 和 UL40 之间可能存在的差异,这可能对使用人类巨细胞病毒作为潜在 HIV-1 疫苗的载体产生影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a38/11406984/2173c32ff319/jvi.01206-24.f001.jpg

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