首页> 外文期刊>Oncogenesis. >Real-time and simultaneous monitoring of the phosphorylation and enhanced interaction of p53 and XPC acidic domains with the TFIIH p62 subunit
【24h】

Real-time and simultaneous monitoring of the phosphorylation and enhanced interaction of p53 and XPC acidic domains with the TFIIH p62 subunit

机译:实时同步监测p53和XPC酸性域与TFIIH p62亚基的磷酸化以及增强的相互作用

获取原文
           

摘要

Posttranslational modifications have critical roles in diverse biological processes through interactions. Tumor-suppressor protein p53 and nucleotide excision repair factor XPC each contain an acidic region, termed the acidic transactivation domain (TAD) and acidic fragment (AF), respectively, that binds to the pleckstrin homology (PH) domain of the p62 subunit of the transcription factor TFIIH. Human p53-TAD contains seven serine and two threonine residues, all of which can be phosphorylated. Similarly, XPC-AF contains six serine and two threonine residues, of which Thr117, Ser122 and Ser129 have been reported as phosphorylation sites in vivo , although their phosphorylation roles are unknown. Phosphorylation of Ser46 and Thr55 of p53-TAD increases its binding ability; however, the role of XPC-AF phosphorylation remains elusive. Here we describe a system for real-time and simultaneous monitoring of the phosphorylation and p62-PH affinity of p53-TAD and XPC-AF using nuclear magnetic resonance (NMR) spectroscopy. Unexpectedly, among seven reported kinases that presumably phosphorylate Ser46 and/or Thr55 of p53-TAD, only two specific and high-efficiency enzymes were identified: JNK2α2 for Ser46 and GRK5 for Thr55. During interaction with p62-PH, four different affinity complexes resulting from various phosphorylation states of p53-TAD by the kinases were identified. The kinetics of the site-specific phosphorylation reaction of p53-TAD and its affinity for p62-PH were monitored in real-time using the NMR system. Isothermic calorimetry showed that phosphorylation of Ser129 of XPC-AF increases binding to p62-PH. Although CK2 was predicted to phosphorylate Ser122, Ser129 and Ser140 from its sequence context, it specifically and efficiently phosphorylated only Ser129. Simultaneous monitoring of the phosphorylation and augmentation in p62-PH binding identified a key residue of p62-PH for contacting phosphorylated Ser129. In summary, we have established an NMR system for real-time and simultaneous monitoring of site-specific phosphorylation and enhancement of affinity between phosphorylation domains and their target. The system is also applicable to other posttranslational modifications.
机译:翻译后修饰通过相互作用在多种生物学过程中具有关键作用。肿瘤抑制蛋白p53和核苷酸切除修复因子XPC分别包含一个酸性区域,分别称为酸性反式激活域(TAD)和酸性片段(AF),该区域与p62亚基的pleckstrin同源性(PH)域结合。转录因子TFIIH。人p53-TAD含有七个丝氨酸和两个苏氨酸残基,所有这些残基均可被磷酸化。同样,XPC-AF含有6个丝氨酸和2个苏氨酸残基,尽管它们的磷酸化作用尚不清楚,但据报道其中Thr117,Ser122和Ser129是体内的磷酸化位点。 p53-TAD的Ser46和Thr55的磷酸化增加了其结合能力。但是,XPC-AF磷酸化的作用仍然难以捉摸。在这里,我们描述了使用核磁共振(NMR)光谱实时同时监测p53-TAD和XPC-AF的磷酸化和p62-PH亲和力的系统。出乎意料的是,在报道的七个可能使p53-TAD的Ser46和/或Thr55磷酸化的激酶中,仅鉴定出两种特异性和高效酶:Ser46的JNK2α2和Thr55的GRK5。在与p62-PH相互作用的过程中,鉴定出了由p53-TAD的各种磷酸化状态导致的四种不同的亲和复合物。使用NMR系统实时监测p53-TAD的位点特异性磷酸化反应的动力学及其对p62-PH的亲和力。等温量热法显示,XPC-AF的Ser129磷酸化增加了与p62-PH的结合。尽管从其序列背景预测了CK2磷酸化Ser122,Ser129和Ser140,但它仅特异性和有效地磷酸化了Ser129。同时监测p62-PH结合中的磷酸化和增强,确定了p62-PH与磷酸化Ser129接触的关键残基。总之,我们已经建立了一个NMR系统,用于实时和同时监测位点特异性磷酸化并增强磷酸化结构域与其靶标之间的亲和力。该系统还适用于其他翻译后修饰。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号