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首页> 外文期刊>Journal of cell biology >Membrane-anchored ubiquitin ligase complex is required for the turnover of lysosomal membrane proteins
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Membrane-anchored ubiquitin ligase complex is required for the turnover of lysosomal membrane proteins

机译:溶酶体膜蛋白的周转需要膜锚定的泛素连接酶复合物

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摘要

Cells must regulate the abundance and activity of numerous nutrient transporters in different organelle membranes to achieve nutrient homeostasis. As the recycling center and major storage organelle, lysosomes are essential for maintaining nutrient homeostasis. However, very little is known about mechanisms that govern the regulation of its membrane proteins. In this study, we demonstrated that changes of Zn2+ levels trigger the downregulation of vacuolar Zn2+ transporters. Low Zn2+ levels cause the degradation of the influx transporter Cot1, whereas high Zn2+ levels trigger the degradation of the efflux channel Zrt3. The degradation process depends on the vacuole membrane recycling and degradation pathway. Unexpectedly, we identified a RING domain–containing E3 ligase Tul1 and its interacting proteins in the Dsc complex that are important for the ubiquitination of Cot1 and partial ubiquitination of Zrt3. Our study demonstrated that the Dsc complex can function at the vacuole to regulate the composition and lifetime of vacuolar membrane proteins.
机译:细胞必须调节不同细胞器膜中大量营养转运蛋白的丰度和活性,以实现营养稳态。作为回收中心和主要的存储细胞器,溶酶体对于维持营养稳态至关重要。然而,关于控制其膜蛋白调节的机制知之甚少。在这项研究中,我们证明了Zn2 +水平的变化会触发液泡Zn2 +转运蛋白的下调。较低的Zn2 +水平导致流入转运蛋白Cot1的降解,而较高的Zn2 +水平则触发流出通道Zrt3的降解。降解过程取决于液泡膜的再循环和降解途径。出乎意料的是,我们在Dsc复合物中鉴定了一个包含RING域的E3连接酶Tul1及其相互作用的蛋白,这些蛋白对于Cot1的泛素化和Zrt3的部分泛素化很重要。我们的研究表明,Dsc复合物可以在液泡中起作用,以调节液泡膜蛋白的组成和寿命。

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