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Role for the molecular chaperones Zuo1 and Ssz1 in quorum sensing via activation of the transcription factor Pdr1

机译:分子伴侣Zuo1和Ssz1通过激活转录因子Pdr1在群体感应中的作用

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Zuo1 functions as a J-protein cochaperone of its partner Hsp70. In addition, the C terminus of Zuo1 and the N terminus of Sszi, with which Zuo1 forms a heterodimer, can independently activate the Saccharomyces cerevisiae transcription factor pleiotropic drug resistance 1 (Pdr1). Here we report that activation of Pdr1 by Zuo1 or Ssz1 causes premature growth arrest of cells during the diauxic shift, as they adapt to the changing environmental conditions. Conversely, cells lacking Zuo1 or Ssz1 overgrow, arresting at a higher cell density, an effect overcome by activation of Pdr1. Cells lacking the genes encoding plasma membrane transporters Pdr5 and Snq2, two targets of Pdr1, also overgrow at the diauxic shift. Adding conditioned medium harvested from cultures of wild-type ceils attenuated the overgrowth of both zuo1&ssz1A and pdr5Asnq2& cells, suggesting the extracellular presence of molecules that signal growth arrest. In addition, our yeast two-hybrid analysis revealed an interaction between Pdr1 and both Zuo1 and Ssz1. Together, our results support a model in which (i) membrane transporters, encoded by Pdr1 target genes act to promote cell-cell communication by exporting quorum sensing molecules, in addition to playing a role in pleiotropic drug resistance; and (ii) molecular chaperones function at promoters to regulate this intercellular communication through their activation of the transcription factor Pdr1.
机译:Zuo1充当其伴侣Hsp70的J蛋白伴侣蛋白。此外,Zuo1的C末端和Szu的N末端(与Zuo1形成异源二聚体)可以独立激活酿酒酵母转录因子多效性药物耐药性1(Pdr1)。在这里我们报告说,Zuo1或Ssz1激活Pdr1会导致细胞在双生移位期间过早生长停滞,因为它们适应了不断变化的环境条件。相反,缺乏Zuo1或Ssz1的细胞会过度生长,以更高的细胞密度被捕,这是通过激活Pdr1克服的。缺乏编码质膜转运蛋白Pdr5和Snq2(Pdr1的两个靶标)的基因的细胞也因双峰移位而过度生长。添加从野生型细胞培养物中收获的条件培养基,可减弱zuo1&ssz1A和pdr5Asnq2&细胞的过度生长,表明存在细胞外信号分子的生长停滞。此外,我们的酵母双杂交分析揭示了Pdr1与Zuo1和Ssz1之间的相互作用。在一起,我们的结果支持一个模型,其中(i)由Pdr1靶基因编码的膜转运蛋白除了通过在多效性耐药中发挥作用外,还通过输出群体感应分子来促进细胞间的通讯; (ii)分子伴侣在启动子处起作用,通过其对转录因子Pdr1的激活来调节这种细胞间的通讯。

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