首页> 美国卫生研究院文献>PLoS Pathogens >The Prolyl Isomerase Pin1 Promotes the Herpesvirus-Induced Phosphorylation-Dependent Disassembly of the Nuclear Lamina Required for Nucleocytoplasmic Egress
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The Prolyl Isomerase Pin1 Promotes the Herpesvirus-Induced Phosphorylation-Dependent Disassembly of the Nuclear Lamina Required for Nucleocytoplasmic Egress

机译:脯氨酰异构酶Pin1促进疱疹病毒诱导的核层细胞核出口所需的核层依赖磷酸化。

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摘要

The nuclear lamina lines the inner nuclear membrane providing a structural framework for the nucleus. Cellular processes, such as nuclear envelope breakdown during mitosis or nuclear export of large ribonucleoprotein complexes, are functionally linked to the disassembly of the nuclear lamina. In general, lamina disassembly is mediated by phosphorylation, but the precise molecular mechanism is still not completely understood. Recently, we suggested a novel mechanism for lamina disassembly during the nuclear egress of herpesviral capsids which involves the cellular isomerase Pin1. In this study, we focused on mechanistic details of herpesviral nuclear replication to demonstrate the general importance of Pin1 for lamina disassembly. In particular, Ser22-specific lamin phosphorylation consistently generates a Pin1-binding motif in cells infected with human and animal alpha-, beta-, and gammaherpesviruses. Using nuclear magnetic resonance spectroscopy, we showed that binding of Pin1 to a synthetic lamin peptide induces its cis/trans isomerization in vitro. A detailed bioinformatic evaluation strongly suggests that this structural conversion induces large-scale secondary structural changes in the lamin N-terminus. Thus, we concluded that a Pin1-induced conformational change of lamins may represent the molecular trigger responsible for lamina disassembly. Consistent with this concept, pharmacological inhibition of Pin1 activity blocked lamina disassembly in herpesvirus-infected fibroblasts and consequently impaired virus replication. In addition, a phospho-mimetic Ser22Glu lamin mutant was still able to form a regular lamina structure and overexpression of a Ser22-phosphorylating kinase did not induce lamina disassembly in Pin1 knockout cells. Intriguingly, this was observed in absence of herpesvirus infection proposing a broader importance of Pin1 for lamina constitution. Thus, our results suggest a functional model of similar events leading to disassembly of the nuclear lamina in response to herpesviral or inherent cellular stimuli. In essence, Pin1 represents a regulatory effector of lamina disassembly that promotes the nuclear pore-independent egress of herpesviral capsids.
机译:核薄层衬在内部核膜上,为核提供了结构框架。细胞过程,例如有丝分裂期间的核被膜破裂或大核糖核蛋白复合物的核输出,在功能上与核层板的拆卸有关。通常,层板拆卸是由磷酸化介导的,但确切的分子机制仍不完全清楚。最近,我们提出了一种新的机制,用于疱疹病毒衣壳的核出口过程中的层板拆卸,涉及细胞异构酶Pin1。在这项研究中,我们集中于疱疹病毒核复制的机制细节,以证明Pin1对于椎板拆卸的一般重要性。特别是,Ser22特异性lamin磷酸化在感染人和动物α,β和γ疱疹病毒的细胞中始终产生Pin1结合基序。使用核磁共振波谱,我们表明Pin1绑定到合成的lamin肽在体外诱导其顺式/反式异构化。详尽的生物信息学评估强烈表明,这种结构转换会导致层状N末端发生大规模的二级结构变化。因此,我们得出结论,Pin1诱导的lamin构象变化可能代表负责lamina拆卸的分子触发。与这个概念一致,Pin1活性的药理学抑制作用阻止了疱疹病毒感染的成纤维细胞中的层板分解,从而损害了病毒的复制。此外,模拟磷酸的Ser22Glu lamin突变体仍然能够形成规则的层状结构,而Ser22-磷酸化激酶的过表达不会在Pin1基因敲除细胞中诱导层状结构的分解。有趣的是,在没有疱疹病毒感染的情况下观察到了这一点,这表明Pin1对椎板的构成具有更广泛的重要性。因此,我们的结果表明了类似事件的功能模型,该事件导致对疱疹病毒或固有细胞刺激的核层板拆卸。从本质上讲,Pin1代表了层板拆卸的调节效应子,可促进疱疹病毒衣壳的核孔非依赖性出口。

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