Benoun Joseph M, Lalimar-Cortez Danielle, Valencia Analila, Granda Adriana, Moore Destaye M, Kelson Eric P, Fischhaber Paula L
Department of Chemistry and Biochemistry, California State University Northridge, Northridge, CA, USA.
Adv Biol Chem. 2015;5(7). doi: 10.4236/abc.2015.57021. Epub 2015 Dec 16.
During Nucleotide Excision Repair (NER) in the yeast , ubiquitylation of Rad4 is carried out by the E3 ubiquitin ligase that includes Rad7-Elc1-Cul3 and is critical to optimal NER. Rad7 E3 activity targets Rad4 for degradation by the proteaseome but, in principle, could also trigger other DNA damage responses. We observed increased nuclear ubiquitin foci (Ub-RFP) formation in containing a Rad7 E3 ligase mutant () in response to DNA damage by benzo[a]pyrenediolepoxide (BPDE) in dividing cells. Immunoblots reveal that ubiquitin conjugates of Rpn10 and Dsk2 accumulate in greater abundance in compared to in dividing cells in response to BPDE which makes Rpn10 and Dsk2 candidates for being the ubiquitylated species observed in our microscopy experiments. Microscopy analysis with strains containing Dsk2-GFP shows that Dsk2-GFP and Dsk2-GFP/Ub-RFP colocalized in nuclear foci form to an increased extent in a mutant background in dividing cells than in a wild-type strain. Further, Dsk2-GFP in the strain formed more foci at the plasma membrane following BPDE treatment in dividing cells relative to strains containing or a deletion mutant. In response to a different agent, UV irradiation, levels of ubiquitylated proteins were increased in relative to , and the proteasomal deubiquitylase subunit, Rpn11 was even monoubiquitylated in the absence of damaging agents. Together these data show that Rad7 E3 activity attenuates ubiquitylation of proteins regulating the shuttling of polyubiquitylated proteins to the proteasome (Dsk2 and Rpn10) and removal of ubiquitin chains just prior to degradation (Rpn11). Since Rad7 E3 ligase activity has been shown to increase ubiquitylation of its target proteins, yet our results show increased ubiquitylation in the absence of Rad7 E3, we suggest that Rad7 E3 action regulates ubiquitin ligase and deubiquitylase (DUB) activities that act on Rpn10, Dsk2 and Rpn11.
在酵母的核苷酸切除修复(NER)过程中,Rad4的泛素化由包括Rad7-Elc1-Cul3的E3泛素连接酶进行,这对最佳的NER至关重要。Rad7 E3活性将Rad4靶向蛋白酶体降解,但原则上也可能触发其他DNA损伤反应。我们观察到,在分裂细胞中,响应苯并[a]芘二醇环氧化物(BPDE)造成的DNA损伤,含有Rad7 E3连接酶突变体()的细胞中核泛素灶(Ub-RFP)形成增加。免疫印迹显示,与响应BPDE的分裂细胞中的相比,Rpn10和Dsk2的泛素缀合物在中积累得更为丰富,这使得Rpn10和Dsk2成为我们显微镜实验中观察到的泛素化物种的候选对象。对含有Dsk2-GFP的菌株进行显微镜分析表明,在分裂细胞中,与野生型菌株相比,Dsk2-GFP和Dsk2-GFP/Ub-RFP在突变背景下的核灶中更易共定位。此外,与含有或缺失突变体的菌株相比,分裂细胞经BPDE处理后,菌株中的Dsk2-GFP在质膜上形成更多的灶。响应另一种试剂紫外线照射,与相比,中的泛素化蛋白水平增加,并且在没有损伤试剂的情况下,蛋白酶体去泛素化酶亚基Rpn11甚至发生单泛素化。这些数据共同表明,Rad7 E3活性减弱了调节多泛素化蛋白向蛋白酶体穿梭(Dsk2和Rpn10)以及在降解前去除泛素链(Rpn11)的蛋白质的泛素化。由于Rad7 E3连接酶活性已被证明会增加其靶蛋白的泛素化,但我们的结果显示在没有Rad7 E3的情况下泛素化增加,我们认为Rad7 E3的作用调节了作用于Rpn10、Dsk2和Rpn11的泛素连接酶和去泛素化酶(DUB)活性。