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The Size of the Proteasomal Substrate Determines Whether Its Degradation Will Be Mediated by Mono- or Polyubiquitylation

机译:蛋白酶体底物的大小决定了其降解是通过单泛素化还是多泛素化来介导

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A polyubiquitin chain anchored to the substrate has been the hallmark of proteasomal recognition. However, the degradation signal appears to be more complex and to contain also a substrate's unstructured region. Recent reports have shown that the proteasome can degrade also monoubiquitylated proteins, which adds an additional layer of complexity to the signal. Here, we demonstrate that the size of the substrate is an important determinant in its extent of ubiquitylation: a single ubiquitin moiety fused to a tail of up to ~150 residues derived from either short artificial repeats or from naturally occurring proteins, is sufficient to target them for proteasomal degradation. Importantly, chemically synthesized adducts, where ubiquitin is attached to the substrate via a naturally occurring isopeptide bond, display similar characteristics. Taken together, these findings suggest that the ubiquitin proteasomal signal is adaptive, and is not always made of a long polyubiquitin chain.
机译:锚定在基质上的聚泛素链一直是蛋白酶体识别的标志。但是,降解信号似乎更复杂,并且还包含基板的非结构化区域。最近的报道表明,蛋白酶体还可以降解单泛素化的蛋白质,这增加了信号的复杂性。在这里,我们证明了底物的大小是其泛素化程度的重要决定因素:单个泛素部分与短人工重复序列或天然存在的蛋白质衍生的多达约150个残基的尾部融合,足以靶向它们用于蛋白酶体降解。重要的是,化学合成的加合物具有相似的特性,其中泛素通过天然存在的异肽键与底物相连。综上所述,这些发现表明泛素蛋白酶体信号是适应性的,并不总是由长的泛素链组成。

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