Muratoğlu Hacer, Nalcacioglu Remziye, Arif Basil M, Demirbag Zihni
Faculty of Sciences, Department of Molecular Biology and Genetic, Karadeniz Technical University, 61080, Trabzon, Türkiye.
Faculty of Sciences, Department of Biology, Karadeniz Technical University, 61080, Trabzon, Türkiye.
Virus Genes. 2024 Jun;60(3):287-294. doi: 10.1007/s11262-024-02069-4. Epub 2024 May 4.
Amsacta moorei entomopoxvirus (AMEV) is a poxvirus that can only infect insects. This virus is an attractive research material because it is similar to smallpox virus. AMEV is one of many viruses that encode protein kinases that drive the host's cellular mechanisms, modifying immune responses to it, and regulating viral protein activity. We report here the functional characterization of a serine/threonine (Ser/Thr) protein kinase (PK) gene (ORF AMV197) of AMEV. Expression of the AMV197 gene in baculovirus expression system yielded a ~ 35.5 kDa protein. PK activity of expressed AMV197 was shown by standard PK assay. Substrate profiling of AMV197 protein by peptide microarray indicated that the expressed protein phosphorylated 81 of 624 substrates which belong to 28 families of PK substrates. While the hypothetical AMV197 protein phosphorylates Ser/Thr only, we demonstrated that the expressed PK also phosphorylates probes with tyrosine residues on the array which is a rare property among PKs. Pull-down assay of the AMV197 protein with the subcellular protein fractionations of Ld652 cells showed that it is using two cellular proteins (18 and 42 kDa) as novel putative substrates. Our results suggest that AMEV can regulate cellular mechanisms by phosphorylating cellular proteins through AMV197 PK. However, further experiments are needed to identify the exact role of this PK in the replication of AMEV.
摩尔伊澳毒蛾昆虫痘病毒(AMEV)是一种仅能感染昆虫的痘病毒。这种病毒是一种有吸引力的研究材料,因为它与天花病毒相似。AMEV是众多编码蛋白激酶的病毒之一,这些蛋白激酶驱动宿主的细胞机制,改变对其的免疫反应,并调节病毒蛋白活性。我们在此报告AMEV的一种丝氨酸/苏氨酸(Ser/Thr)蛋白激酶(PK)基因(ORF AMV197)的功能特性。在杆状病毒表达系统中表达AMV197基因产生了一种约35.5 kDa的蛋白质。通过标准的PK测定显示了表达的AMV197的PK活性。通过肽微阵列对AMV197蛋白进行底物分析表明,表达的蛋白使属于28个PK底物家族的624个底物中的81个发生了磷酸化。虽然假设的AMV197蛋白仅使Ser/Thr磷酸化,但我们证明表达的PK也使阵列上带有酪氨酸残基的探针发生磷酸化,这在PK中是一种罕见的特性。用Ld652细胞的亚细胞蛋白分级分离对AMV197蛋白进行下拉试验表明,它将两种细胞蛋白(18 kDa和42 kDa)用作新的假定底物。我们的结果表明,AMEV可以通过AMV197 PK使细胞蛋白磷酸化来调节细胞机制。然而,需要进一步的实验来确定这种PK在AMEV复制中的具体作用。