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Penaeus monodon TATA Box-Binding Protein Interacts with the White Spot Syndrome Virus Transactivator IE1 and Promotes Its Transcriptional Activity▿

机译:斑节对虾TATA盒结合蛋白与白斑综合症病毒反式激活因子IE1相互作用并促进其转录活性。

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摘要

We show here that the white spot syndrome virus (WSSV) immediate-early protein IE1 interacts with the Penaeus monodon TATA box-binding protein (PmTBP) and that this protein-protein interaction occurs in the absence of any other viral or cellular proteins or nucleic acids, both in vitro and in vivo. Mapping studies using enhanced green fluorescent protein (EGFP) fusion proteins containing truncations of IE1 and PmTBP delimited the interacting regions to amino acids (aa) 81 to 180 in IE1 and, except for aa 171 to 230, to aa 111 to 300 in PmTBP. A WSSV IE1 transactivation assay showed that large quantities (>800 ng) of the GAL4-IE1 plasmid caused “squelching” of the GAL4-IE1 activity and that this squelching effect was alleviated by the overexpression of PmTBP. Gene silencing of WSSV ie1 and PmTBP by pretreatment with double-stranded RNAs (dsRNAs) prior to WSSV challenge showed that the expression of these two target genes was specifically inhibited by their corresponding dsRNAs 72 and 96 h after dsRNA treatment. dsRNA silencing of ie1 and PmTBP expression also significantly reduced WSSV replication and the expression of the viral early gene dnapol (DNA polymerase gene). These results suggest that WSSV IE1 and PmTBP work cooperatively with each other during transcription initiation and, furthermore, that PmTBP is an important target for WSSV IE1's transactivation activity that can enhance viral gene expression and help in virus replication.
机译:我们在这里显示白斑综合症病毒(WSSV)即早蛋白质IE1与对虾斑节对虾TATA盒结合蛋白(PmTBP)相互作用,并且这种蛋白-蛋白相互作用在没有任何其他病毒或细胞蛋白或核酸的情况下发生体内和体外的酸。使用包含截短的IE1和PmTBP的增强型绿色荧光蛋白(EGFP)融合蛋白进行作图研究,将相互作用区域限定为IE1中的氨基酸(aa)81至180,以及PmTBP中除aa 171至230外的氨基酸为111至300。 WSSV IE1反激活试验表明,大量(> 800 ng)的GAL4-IE1质粒引起GAL4-IE1活性的“挤压”,而这种挤压效应被PmTBP的过表达减轻了。在WSSV攻击之前,通过用双链RNA(dsRNA)预处理对WSSV ie1和PmTBP进行基因沉默,表明这两个靶基因的表达在dsRNA处理后72和96 h被其相应的dsRNA特异性抑制。 IE1和PmTBP表达的dsRNA沉默也显着降低了WSSV复制和病毒早期基因dnapol(DNA聚合酶基因)的表达。这些结果表明,WSSV IE1和PmTBP在转录起始过程中彼此协同工作,此外,PmTBP是WSSV IE1的反式激活活性的重要目标,可以增强病毒基因表达并帮助病毒复制。

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