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Disruption of Histone Deacetylase Gene RPD3 Accelerates PHO5 Activation Kinetics through Inappropriate Pho84p Recycling

机译:组蛋白脱乙酰基酶基因RPD3的破坏通过不适当的Pho84p回收加速了PHO5活化动力学。

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摘要

The histone deacetylase Rpd3p functions as a transcriptional repressor of a diverse set of genes, including PHO5. Here we describe a novel role for RPD3 in the regulation of phosphate transporter Pho84p retention in the cytoplasmic membrane. We show that under repressing conditions (with Pi), PHO5 expression is increased in a pho4Δ rpd3Δ strain, demonstrating PHO regulatory pathway independence. However, the effect of RPD3 disruption on PHO5 activation kinetics is dependent on the PHO regulatory pathway. Upon switching to activating conditions (without Pi), PHO5 transcripts accumulated more rapidly in rpd3Δ cells. This more rapid response correlates with a defect in phosphate uptake due to premature recycling of Pho84p, the high-affinity H+/PO43− symporter. Thus, RPD3 also participates in PHO5 regulation through a previously unidentified effect on maintenance of high-affinity phosphate uptake during phosphate starvation. We propose that Rpd3p has a negative role in the regulation of Pho84p endocytosis.
机译:组蛋白脱乙酰基酶Rpd3p充当多种基因(包括PHO5)的转录阻遏物。在这里,我们描述了RPD3在磷酸转运蛋白Pho84p保留在细胞质膜中的调节中的新作用。我们显示,在阻抑条件下(带有Pi),pho4Δrpd3Δ菌株中PHO5表达增加,表明PHO调节途径独立。但是,RPD3破坏对PHO5激活动力学的影响取决于PHO调节途径。切换到激活条件(无Pi)后,PHO5转录本在rpd3Δ细胞中积累得更快。这种较快的响应与由于Pho84p,高亲和力H + / PO4 3-共转运体的过早再循环而导致的磷酸盐吸收缺陷有关。因此,RPD3还通过以前无法确定的在维持磷饥饿期间维持高亲和力磷摄取的作用而参与了PHO5的调控。我们建议Rpd3p在调节Pho84p内吞作用中具有负作用。

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