Toczyski D P, Steitz J A
Department of Molecular Biophysics and Biochemistry, Howard Hughes Medical Institute, Yale University, New Haven, Connecticut 06536-0812.
Mol Cell Biol. 1993 Jan;13(1):703-10. doi: 10.1128/mcb.13.1.703-710.1993.
EAP (EBER-associated protein) is an abundant, 15-kDa cellular RNA-binding protein which associates with certain herpesvirus small RNAs. We have raised polyclonal anti-EAP antibodies against a glutathione S-transferase-EAP fusion protein. Analysis of the RNA precipitated by these antibodies from Epstein-Barr virus (EBV)- or herpesvirus papio (HVP)-infected cells shows that > 95% of EBER 1 (EBV-encoded RNA 1) and the majority of HVP 1 (an HVP small RNA homologous to EBER 1) are associated with EAP. RNase protection experiments performed on native EBER 1 particles with affinity-purified anti-EAP antibodies demonstrate that EAP binds a stem-loop structure (stem-loop 3) of EBER 1. Since bacterially expressed glutathione S-transferase-EAP fusion protein binds EBER 1, we conclude that EAP binding is independent of any other cellular or viral protein. Detailed mutational analyses of stem-loop 3 suggest that EAP recognizes the majority of the nucleotides in this hairpin, interacting with both single-stranded and double-stranded regions in a sequence-specific manner. Binding studies utilizing EBER 1 deletion mutants suggest that there may also be a second, weaker EAP-binding site on stem-loop 4 of EBER 1. These data and the fact that stem-loop 3 represents the most highly conserved region between EBER 1 and HVP 1 suggest that EAP binding is a critical aspect of EBER 1 and HVP 1 function.
EAP(EBER相关蛋白)是一种丰富的15 kDa细胞RNA结合蛋白,它与某些疱疹病毒小RNA相互作用。我们针对谷胱甘肽S-转移酶-EAP融合蛋白制备了多克隆抗EAP抗体。对这些抗体从感染爱泼斯坦-巴尔病毒(EBV)或狒狒疱疹病毒(HVP)的细胞中沉淀的RNA进行分析表明,超过95%的EBER 1(EBV编码的RNA 1)和大部分HVP 1(一种与EBER 1同源的HVP小RNA)与EAP相关联。用亲和纯化的抗EAP抗体对天然EBER 1颗粒进行的核糖核酸酶保护实验表明,EAP结合EBER 1的一个茎环结构(茎环3)。由于细菌表达的谷胱甘肽S-转移酶-EAP融合蛋白结合EBER 1,我们得出结论,EAP的结合不依赖于任何其他细胞或病毒蛋白。对茎环3的详细突变分析表明,EAP识别该发夹结构中的大部分核苷酸,以序列特异性方式与单链和双链区域相互作用。利用EBER 1缺失突变体进行的结合研究表明,EBER 1的茎环4上可能还存在第二个较弱的EAP结合位点。这些数据以及茎环3是EBER 1和HVP 1之间最保守区域这一事实表明,EAP结合是EBER 1和HVP 1功能的关键方面。