Tartas Athanassios, Zarkadas Christoforos, Palaiomylitou Maria, Gounalaki Niki, Tzamarias Dimitris, Vlassi Metaxia
Institute of Biosciences & Applications, National Centre for Scientific Research "Demokritos", Ag. Paraskevi Attikis, Athens, Greece.
Institute of Molecular Biology & Biotechnology, Foundation for Research and Technology, Heraklion, Crete, Greece.
PLoS One. 2017 Oct 20;12(10):e0186363. doi: 10.1371/journal.pone.0186363. eCollection 2017.
The Ssn6-Tup1 complex is a general transcriptional co-repressor formed by the interaction of Ssn6, a tetratricopeptide repeat (TPR) protein, with the Tup1 repressor. We have previously shown that the N-terminal domain of Ssn6 comprising TPRs 1 to 3 is necessary and sufficient for this interaction and that TPR1 plays critical role. In a subsequent study, we provided evidence that in the absence of Tup1, TPR1 is susceptible to proteolysis and that conformational change(s) accompany the Ssn6-Tup1 complex formation. In this study, we address the question whether the N-terminal non-TPR, glutamine-rich tail of Ssn6 (NTpolyQ), plays any role in the Ssn6/Tup1 association. Our biochemical and yeast-two-hybrid data show that truncation/deletion of the NTpolyQ domain of Ssn6 results in its self association and prevents Tup1 interaction. These results combined with in silico modeling data imply a major role of the NTpolyQ tail of Ssn6 in regulating its interaction with Tup1.
Ssn6-Tup1复合物是一种通用的转录共抑制因子,由四肽重复序列(TPR)蛋白Ssn6与Tup1阻遏物相互作用形成。我们之前已经表明,Ssn6包含TPR1至3的N端结构域对于这种相互作用是必要且充分的,并且TPR1起着关键作用。在随后的一项研究中,我们提供了证据表明,在没有Tup1的情况下,TPR1易受蛋白水解作用的影响,并且构象变化伴随着Ssn6-Tup1复合物的形成。在本研究中,我们探讨了Ssn6富含谷氨酰胺的N端非TPR尾巴(NTpolyQ)在Ssn6/Tup1结合中是否起任何作用的问题。我们的生化和酵母双杂交数据表明,Ssn6的NTpolyQ结构域的截断/缺失导致其自身结合,并阻止与Tup1的相互作用。这些结果与计算机模拟数据相结合,意味着Ssn6的NTpolyQ尾巴在调节其与Tup1的相互作用中起主要作用。