Cooper Andrew, Johannsen Eric, Maruo Seiji, Cahir-McFarland Ellen, Illanes Diego, Davidson David, Kieff Elliott
Virology Program and Department of Medicine, Channing Laboratory, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.
J Virol. 2003 Jan;77(2):999-1010. doi: 10.1128/jvi.77.2.999-1010.2003.
Epstein-Barr virus nuclear antigen protein 3A (EBNA3A) is one of four EBNAs (EBNA-2, EBNALP, EBNA3A, and EBNA3C) through the cellular DNA sequence-specific transcription factor RBP-Jkappa/CBF-1/CSL and are essential for conversion of primary B lymphocytes to lymphoblastoid cell lines (LCLs). In the present study, we investigated the effects of EBNA3A on EBNA2 activation of transcription in the IB4 LCL by conditionally overexpressing EBNA3A three- to fivefold. EBNA3A overexpression increased EBNA3A association with RBP-Jkappa, did not change EBNA3C association with RBP-Jkappa or EBNA or LMP1 expression, decreased EBNA2 association with RBP-Jkappa, decreased c-myc expression, and caused G(0)/G(1) growth arrest with prolonged viability. Expression of the fusion protein MycERTM in cells with conditional EBNA3A overexpression restored cell cycle progression and caused apoptosis. In contrast, MycER in the same cells without EBNA3A overexpression enhanced cell proliferation and did not increase apoptosis. These data indicate that EBNA3A overexpression inhibits protection from c-myc-induced apoptosis. In assays of EBNA2- and RBP-Jkappa-dependent transcription, EBNA3A amino acids 1 to 386 were sufficient for repression equivalent to that by wild-type EBNA3A, amino acids 1 to 124 were unimportant, amino acids 1 to 277 were insufficient, and a triple alanine substitution within the EBNA3A core RBP-Jkappa binding domain was a null mutation. In reverse genetic experiments with IB4 LCLs, the effects of conditional EBNA3A overexpression on c-myc expression and proliferation did not require amino acids 524 to 944 but did require amino acids 278 to 524 as well as wild-type sequence in the core RBP-Jkappa binding domain. The dependence of EBNA3A effects on the core RBP-Jkappa interaction domain and on the more C-terminal amino acids (amino acids 278 to 524) required for efficient RBP-Jkappa association strongly implicates RBP-Jkappa in c-myc promoter regulation.
爱泼斯坦-巴尔病毒核抗原蛋白3A(EBNA3A)是四种EBNA(EBNA-2、EBNALP、EBNA3A和EBNA3C)之一,它通过细胞DNA序列特异性转录因子RBP-Jkappa/CBF-1/CSL发挥作用,对于原代B淋巴细胞转化为淋巴母细胞系(LCLs)至关重要。在本研究中,我们通过条件性过表达EBNA3A三到五倍,研究了EBNA3A对IB4 LCL中转录因子EBNA2激活转录的影响。EBNA3A过表达增加了EBNA3A与RBP-Jkappa的结合,未改变EBNA3C与RBP-Jkappa的结合或EBNA或LMP1的表达,减少了EBNA2与RBP-Jkappa的结合,降低了c-myc的表达,并导致G(0)/G(1)期生长停滞且细胞活力延长。在条件性过表达EBNA3A的细胞中融合蛋白MycERTM的表达恢复了细胞周期进程并导致细胞凋亡。相反,在没有过表达EBNA3A的相同细胞中MycER增强了细胞增殖且未增加细胞凋亡。这些数据表明EBNA3A过表达抑制了对c-myc诱导的细胞凋亡的保护作用。在EBNA2和RBP-Jkappa依赖性转录分析中,EBNA3A的1至386个氨基酸足以产生与野生型EBNA3A相当的抑制作用,1至124个氨基酸不重要,1至277个氨基酸不足,并且EBNA3A核心RBP-Jkappa结合域内的三重丙氨酸替代是无效突变。在对IB4 LCLs进行的反向遗传学实验中,条件性过表达EBNA3A对c-myc表达和增殖的影响不需要524至944个氨基酸,但确实需要278至524个氨基酸以及核心RBP-Jkappa结合域中的野生型序列。EBNA3A作用对核心RBP-Jkappa相互作用域以及对有效RBP-Jkappa结合所需的更C末端氨基酸(278至524个氨基酸)的依赖性强烈表明RBP-Jkappa参与c-myc启动子调控。