Mammarenavirus Z Protein Myristoylation and Oligomerization Are Not Required for Its Dose-Dependent Inhibitory Effect on vRNP Activity.

BioChem Pub Date : 2025-06-01 Epub Date: 2025-04-29 DOI:10.3390/biochem5020010
Haydar Witwit, Juan C de la Torre
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Abstract

Background/objectives: N-Myristoyltransferase inhibitors (NMTi) represent a novel antiviral strategy against mammarenaviruses such as Lassa and Junin viruses. The Z matrix protein inhibits viral ribonucleoprotein (vRNP) activity in a dose-dependent manner. Here, we investigated whether Z-mediated vRNP inhibition depends on Z myristoylation or oligomerization.

Methods: We used HEK293T cells transfected with wild-type (WT) or G2A-mutated Z constructs in LCMV minigenome (MG) assays. Cells were treated with the NMTi IMP-1088 and the proteasome inhibitor MG132. Z protein expression, vRNP activity, and VLP production were analyzed by immunofluorescence, western blotting, and colocalization analyses.

Results: IMP-1088 treatment led to proteasome-mediated degradation of Z, reducing its inhibition of vRNP activity, which was restored by MG132. The non-myristoylated Z G2A mutant retained vRNP inhibitory activity but showed impaired oligomerization and budding capacity. These findings demonstrate that Z-mediated vRNP inhibition is independent of myristoylation and oligomerization.

Conclusions: Z myristoylation and oligomerization are not required for its inhibitory vRNP activity. Targeting Z myristoylation with NMTi impairs virus assembly and budding without affecting Z-mediated inhibition of vRNP activity, supporting the development of NMTi as a promising broad-spectrum antiviral strategy against mammarenaviruses.

马乳头状病毒Z蛋白肉豆蔻酰化和寡聚化不是其剂量依赖性vRNP活性抑制作用所必需的。
背景/目的:n -肉豆荚酰基转移酶抑制剂(NMTi)是一种新的抗病毒策略,可用于治疗拉沙病毒和朱宁病毒等乳头状病毒。Z基质蛋白以剂量依赖的方式抑制病毒核糖核蛋白(vRNP)活性。在这里,我们研究了Z介导的vRNP抑制是否取决于Z肉豆蔻酰化或寡聚化。方法:我们使用转染野生型(WT)或g2a突变Z构建体的HEK293T细胞进行LCMV微小基因组(MG)检测。细胞用NMTi IMP-1088和蛋白酶体抑制剂MG132处理。通过免疫荧光、western blotting和共定位分析分析Z蛋白表达、vRNP活性和VLP产生。结果:IMP-1088处理导致蛋白酶体介导的Z降解,降低其对vRNP活性的抑制作用,MG132恢复了这种抑制作用。未肉豆荚酰基化的Z G2A突变体保留了vRNP抑制活性,但寡聚化和出芽能力受损。这些发现表明,z介导的vRNP抑制与肉豆蔻酰化和寡聚化无关。结论:其抑制vRNP活性不需要Z肉豆蔻酰化和寡聚化。用NMTi靶向Z肉豆芽酰化可损害病毒组装和出芽,而不影响Z介导的vRNP活性抑制,这支持了NMTi作为一种有前景的广谱抗病毒策略的发展。
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