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EBNA3C与EBNA2的共激活需要一个类SUMO结构域。

EBNA3C coactivation with EBNA2 requires a SUMO homology domain.

作者信息

Rosendorff Adam, Illanes Diego, David Gregory, Lin Jeffrey, Kieff Elliott, Johannsen Eric

机构信息

Virology Program and Department of Medicine, Channing Laboratory, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

J Virol. 2004 Jan;78(1):367-77. doi: 10.1128/jvi.78.1.367-377.2004.

Abstract

Epstein-Barr virus (EBV) nuclear antigen 3C (EBNA3C) is critical for EBV immortalization of infected B lymphocytes and can coactivate the EBV LMP1 promoter with EBNA2. EBNA3C amino acids 365 to 545 are necessary and sufficient for coactivation and are required for SUMO-1 and SUMO-3 interaction. We found that EBNA3C but not EBNA3CDelta343-545 colocalized with SUMO-1 in nuclear bodies and was modified by SUMO-2, SUMO-3, and SUMO-1. EBNA3C amino acids 545 to 628 and amino acids 30 to 365 were also required for EBNA3C sumolation and nuclear body localization but were dispensable for coactivation, indicating that EBNA3C sumolation is not required for coactivation. Furthermore, EBNA3C amino acids 476 to 992 potently coactivated with EBNA2 but EBNA3C amino acids 516 to 922 lacked activity, indicating that amino acids 476 to 515 are critical for coactivation. EBNA3C amino acids 476 to 515 include DDDVIEV(507-513), which are similar to SUMO-1 EEDVIEV(84-90). EBNA3C m1 and m2 point mutations, DDD(507-509) mutated to AAA and DVIEVID(509-513) mutated to AVIAVIA, respectively, diminished SUMO-1 and SUMO-3 interaction in directed yeast two-hybrid and glutathione S-transferase pulldown assays. Furthermore, EBNA3C m1 and m2 did not coactivate the LMP1 promoter with EBNA2. Overexpression of wild-type SUMO-1, SUMO-3, and the SUMO-conjugating enzyme UBC9 coactivated the LMP1 promoter with EBNA2. Since EBNA2 activation is dependent on p300/CBP, the possible effect of EBNA3C on p300-mediated transcription was assayed. EBNA3C potentiated transcription of p300 fused to a heterologous DNA binding domain, whereas EBNA3C m1 and m2 did not. All of these data are consistent with a model in which EBNA3C upregulates EBNA2-mediated gene activation by binding to a sumolated repressor and inhibiting repressive effects on p300/CBP and other transcription factor(s) at EBNA2-regulated promoters.

摘要

爱泼斯坦-巴尔病毒(EBV)核抗原3C(EBNA3C)对于EBV使受感染的B淋巴细胞永生化至关重要,并且可以与EBNA2共同激活EBV LMP1启动子。EBNA3C的365至545位氨基酸对于共同激活是必需且充分的,并且是SUMO-1和SUMO-3相互作用所必需的。我们发现EBNA3C而非EBNA3CΔ343-545与SUMO-1在核体中共定位,并被SUMO-2、SUMO-3和SUMO-1修饰。EBNA3C的545至628位氨基酸和30至365位氨基酸对于EBNA3C的类泛素化修饰和核体定位也是必需的,但对于共同激活是可有可无的,这表明共同激活不需要EBNA3C的类泛素化修饰。此外,EBNA3C的476至992位氨基酸能与EBNA2有效共同激活,但EBNA3C的516至922位氨基酸缺乏活性,这表明476至515位氨基酸对于共同激活至关重要。EBNA3C的476至515位氨基酸包括DDDVIEV(507-513),与SUMO-1的EEDVIEV(84-90)相似。EBNA3C的m1和m2点突变,分别将DDD(507-509)突变为AAA以及将DVIEVID(509-513)突变为AVIAVIA,在定向酵母双杂交和谷胱甘肽S-转移酶下拉实验中减少了SUMO-1和SUMO-3的相互作用。此外,EBNA3C的m1和m2不能与EBNA2共同激活LMP1启动子。野生型SUMO-1、SUMO-3以及SUMO结合酶UBC9的过表达能与EBNA2共同激活LMP1启动子。由于EBNA2的激活依赖于p300/CBP,因此检测了EBNA3C对p300介导的转录的可能影响。EBNA3C增强了与异源DNA结合结构域融合的p300的转录,而EBNA3C的m1和m2则不能。所有这些数据都与一个模型一致,即EBNA3C通过与一个类泛素化修饰的阻遏物结合并抑制对EBNA2调控启动子处的p300/CBP和其他转录因子的抑制作用,从而上调EBNA2介导的基因激活。

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