Scherer Myriam, Schilling Eva-Maria, Stamminger Thomas
Institute for Clinical and Molecular Virology, Friedrich-Alexander-Universtität (FAU) Erlangen-Nürnberg, Erlangen, Germany.
Adv Anat Embryol Cell Biol. 2017;223:77-94. doi: 10.1007/978-3-319-53168-7_4.
PML nuclear bodies (PML-NBs) are SUMOylation-dependent, highly complex protein assemblies that accumulate in the interchromosomal territories of the cell nucleus. Research of the last two decades revealed that many viruses have evolved effector proteins that modify PML-NBs. This correlates with antagonization of individual PML-NB components which act as host cell restriction factors. The multifunctional immediate-early protein IE1 of human cytomegalovirus directly interacts with the PML protein resulting in a disruption of the dot-like structure of PML-NBs. This review summarizes recent advances on the functional consequences of PML-NB modification by IE1. In particular, we describe that PML exerts a novel co-regulatory role during the interferon response which is abrogated by IE1. Via binding to PML, IE1 is able to compromise both intrinsic antiviral defense mechanisms and classical innate immune responses. These interactions of IE1 with innate host defenses are crucial for the onset of lytic replication and, consequently, may represent promising targets for antiviral strategies.
早幼粒细胞白血病核体(PML-NBs)是依赖小泛素样修饰(SUMO)化的、高度复杂的蛋白质聚集体,积聚在细胞核的染色体间区域。过去二十年的研究表明,许多病毒已经进化出可修饰PML-NBs的效应蛋白。这与作为宿主细胞限制因子的单个PML-NB组分的拮抗作用相关。人巨细胞病毒的多功能立即早期蛋白IE1直接与PML蛋白相互作用,导致PML-NBs的点状结构破坏。本综述总结了IE1对PML-NB修饰的功能后果的最新进展。特别是,我们描述了PML在干扰素反应中发挥了一种新的共调节作用,而IE1可消除这种作用。通过与PML结合,IE1能够损害内在抗病毒防御机制和经典固有免疫反应。IE1与固有宿主防御的这些相互作用对于裂解性复制的起始至关重要,因此可能是抗病毒策略的有希望的靶点。