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A diacidic motif determines unconventional secretion of wild-type and ALS-linked mutant SOD1

机译:二酸基序决定了野生型和ALS连锁突变型SOD1的非常规分泌

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摘要

The nutrient starvation-specific unconventional secretion of Acb1 in Saccharomyces cerevisiae requires ESCRT-I, -II, and -III and Grh1. In this study, we report that another signal sequence lacking cytoplasmic protein, superoxide dismutase 1 (SOD1), and its mutant form linked to amyotrophic lateral sclerosis (ALS), is also secreted by yeast upon nutrient starvation in a Grh1- and ESCRT-I–, -II–, and -III–dependent process. Our analyses reveal that a conserved diacidic motif (Asp-Glu) in these proteins is necessary for their export. Importantly, secretion of wild-type human SOD1 and the ALS-linked mutant in human cells also require the diacidic residues. Altogether, these findings reveal information encoded within the cytoplasmic proteins required for their unconventional secretion and provide a means to unravel the significance of the cytoplasmic versus the secreted form of mutant SOD1 in the pathology of ALS. We also propose how cells, based on a signal-induced change in cytoplasmic physiology, select a small pool of a subset of cytoplasmic proteins for unconventional secretion.
机译:酿酒酵母中Acb1的营养饥饿特定的非常规分泌需要ESCRT-I,-II,-III和Grh1。在这项研究中,我们报道了缺乏细胞质蛋白的另一种信号序列,超氧化物歧化酶1(SOD1),以及其与肌萎缩性侧索硬化症(ALS)相关的突变形式,也被酵母在Grh1-和ESCRT-I中饥饿后分泌。 –,– II–和-III依赖的过程。我们的分析表明,这些蛋白质中的保守二酸基序(Asp-Glu)对于其输出是必需的。重要的是,人类细胞中野生型人类SOD1和ALS连锁突变体的分泌也需要二酸残基。总而言之,这些发现揭示了其非常规分泌所需的胞质蛋白内编码的信息,并提供了一种手段来揭示突变型SOD1在ALS病理学中的胞质重要性。我们还提出细胞如何基于信号诱导的细胞质生理变化,为非常规分泌选择一小部分细胞质蛋白。

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