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A Three-part Signal Governs Differential Processing of Gli1 and Gli3 Proteins by the Proteasome

机译:三部分信号通过蛋白酶体治理GLI1和GLI3蛋白的差异处理

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The Gli proteins are the transcriptional effectors of the mammalian Hedgehog signaling pathway. In an unusual mechanism, the proteasome partially degrades or processes Gli3 in the absence of Hedgehog pathway stimulation to create a Gli3 fragment that opposes the activity of the full-length protein. In contrast, Gli1 is not processed but degraded completely, despite considerable homology with Gli3. We found that these differences in processing can be described by defining a processing signal that is composed of three parts: the zinc finger domain, an adjacent linker sequence, and a degron. Gli3 processing is inhibited when any one component of the processing signal is disrupted. We show that the zinc fingers are required for processing only as a folded structure and that the location but not the identity of the processing degron is critical. Within the linker sequence, regions of low sequence complexity play a crucial role, but other sequence features are also important. Gli1 is not processed because two components of the processing signal, the linker sequence and the degron, are ineffective. These findings provide new insights into the molecular elements that regulate Gli protein processing by the proteasome.
机译:Gli蛋白质是哺乳动物刺猬信号通路的转录效应。在不寻常的机制中,在没有刺猬途径刺激的情况下,蛋白酶部分降解或过程GLI3,以产生反对全长蛋白的活性的GLI3片段。相比之下,尽管GLI3具有相当大的同源性,但GLI1未加工但完全退化。我们发现,可以通过定义由三个部分组成的处理信号来描述处理的这些差异:锌指结构域,相邻的接头序列和血清。当处理信号的任何一个组件中断时,禁止GLI3处理。我们表明,仅作为折叠结构的处理需要锌手指,并且该位置而不是处理尺度的身份至关重要。在接头序列中,低序列复杂性的区域起到至关重要的作用,但其他序列特征也很重要。未加工GLI1,因为处理信号,接头序列和血管的两个组分无效。这些发现为调节蛋白酶体调节Gli蛋白质加工的分子元素提供了新的见解。

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