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首页> 外文期刊>Journal of Molecular Biology >Unfolding of the C-terminal domain of the J-protein zuo1 releases autoinhibition and activates Pdr1-dependent transcription
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Unfolding of the C-terminal domain of the J-protein zuo1 releases autoinhibition and activates Pdr1-dependent transcription

机译:J蛋白zuo1的C端结构域的展开释放自动抑制并激活Pdr1依赖性转录

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摘要

The C-terminal 69 residues of the J-protein Zuo1 are sufficient to activate Pdr1, a transcription factor involved in both pleiotropic drug resistance and growth control. Little is understood about the pathway of activation by this primarily ribosome associated Hsp40 co-chaperone. Here, we report that only the C-terminal 13 residues of Zuo1 are required for activation of Pdr1, with hydrophobic residues being critical for activity. Two-hybrid interaction experiments suggest that the interaction between this 13-residue Zuo1 peptide and Pdr1 is direct, analogous to the activation of Pdr1 by xenobiotics. However, simply dissociation of Zuo1 from the ribosome is not sufficient for induction of Pdr1 transcriptional activity, as the C-terminal 86 residues of Zuo1 fold into an autoinhibitory left-handed four-helix bundle. Hydrophobic residues critical for interaction with Pdr1 are sequestered within the structure of this C-terminal domain (CTD), necessitating unfolding for activation. Thus, although expression of the CTD does not result in activation, alterations that destabilize the structure cause induction of pleiotropic drug resistance. These destabilizing alterations also result in dissociation of the full-length protein from the ribosome. Thus, our results are consistent with an activation pathway in which unfolding of Zuo1's C-terminal helical bundle domain results in ribosome dissociation followed by activation of Pdr1 via a direct interaction.
机译:J蛋白Zuo1的C端69个残基足以激活Pdr1,Pdr1是参与多效性耐药和生长控制的转录因子。关于这种主要的核糖体相关的Hsp40伴侣伴侣的激活途径知之甚少。在这里,我们报告说只有Zuo1的C端13残基是激活Pdr1所必需的,疏水残基对活性至关重要。两杂交相互作用实验表明,这13个残基的Zuo1肽与Pdr1之间的相互作用是直接的,类似于异种生物对Pdr1的激活。但是,仅仅从Zuo1分离核糖体不足以诱导Pdr1转录活性,因为Zuo1的C端86残基折叠成自动抑制的左手四螺旋束。对与Pdr1相互作用至关重要的疏水残基被隔离在此C末端域(CTD)的结构内,因此需要展开才能激活。因此,尽管CTD的表达不导致活化,但是使结构不稳定的改变引起多效性药物抗性的诱导。这些破坏稳定性的改变还导致全长蛋白质与核糖体解离。因此,我们的结果与激活途径一致,在激活途径中,Zuo1的C末端螺旋束结构域的解折叠导致核糖体解离,然后通过直接相互作用激活Pdr1。

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