Yang Hang-Che, Chuang Jian-Ying, Jeng Wen-Yih, Liu Chia-I, Wang Andrew H-J, Lu Pei-Jung, Chang Wen-Chang, Hung Jan-Jong
Institute of Bioinformatics and Biosignal Transduction, College of Bioscience and Biotechnology, National Cheng Kung University, Tainan 701, Taiwan.
The PhD Program for Neural Regenerative Medicine, College of Medical Science and Technology, Taipei Medical University, Taipei 110, Taiwan.
Nucleic Acids Res. 2014 Dec 16;42(22):13573-87. doi: 10.1093/nar/gku1145. Epub 2014 Nov 14.
We have shown that Sp1 phosphorylation at Thr739 decreases its DNA-binding activity. In this study, we found that phosphorylation of Sp1 at Thr739 alone is necessary, but not sufficient for the inhibition of its DNA-binding activity during mitosis. We demonstrated that Pin1 could be recruited to the Thr739(p)-Pro motif of Sp1 to modulate the interaction between phospho-Sp1 and CDK1, thereby facilitating CDK1-mediated phosphorylation of Sp1 at Ser720, Thr723 and Thr737 during mitosis. Loss of the C-terminal end of Sp1 (amino acids 741-785) significantly increased Sp1 phosphorylation, implying that the C-terminus inhibits CDK1-mediated Sp1 phosphorylation. Binding analysis of Sp1 peptides to Pin1 by isothermal titration calorimetry indicated that Pin1 interacts with Thr739(p)-Sp1 peptide but not with Thr739-Sp1 peptide. X-ray crystallography data showed that the Thr739(p)-Sp1 peptide occupies the active site of Pin1. Increased Sp1 phosphorylation by CDK1 during mitosis not only stabilized Sp1 levels by decreasing interaction with ubiquitin E3-ligase RNF4 but also caused Sp1 to move out of the chromosomes completely by decreasing its DNA-binding activity, thereby facilitating cell cycle progression. Thus, Pin1-mediated conformational changes in the C-terminal region of Sp1 are critical for increased CDK1-mediated Sp1 phosphorylation to facilitate cell cycle progression during mitosis.
我们已经表明,Sp1在苏氨酸739位点的磷酸化会降低其DNA结合活性。在本研究中,我们发现仅Sp1在苏氨酸739位点的磷酸化是有必要的,但不足以在有丝分裂期间抑制其DNA结合活性。我们证明,Pin1可被招募至Sp1的苏氨酸739(磷酸化)-脯氨酸基序,以调节磷酸化Sp1与CDK1之间的相互作用,从而在有丝分裂期间促进CDK1介导的Sp1在丝氨酸720、苏氨酸723和苏氨酸737位点的磷酸化。Sp1 C末端(氨基酸741 - 785)缺失显著增加了Sp1磷酸化,这意味着C末端抑制CDK1介导的Sp1磷酸化。通过等温滴定量热法对Sp1肽与Pin1进行结合分析表明,Pin1与苏氨酸739(磷酸化)-Sp1肽相互作用,但不与苏氨酸739-Sp1肽相互作用。X射线晶体学数据显示,苏氨酸739(磷酸化)-Sp1肽占据了Pin1的活性位点。有丝分裂期间CDK1介导的Sp1磷酸化增加不仅通过减少与泛素E3连接酶RNF4的相互作用来稳定Sp1水平,还通过降低其DNA结合活性使Sp1完全从染色体上移出,从而促进细胞周期进程。因此,Pin1介导的Sp1 C末端区域构象变化对于增加CDK1介导的Sp1磷酸化以促进有丝分裂期间的细胞周期进程至关重要。