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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Lunatic fringe protein processing by proprotein convertases may contribute to the short protein half-life in the segmentation clock.
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Lunatic fringe protein processing by proprotein convertases may contribute to the short protein half-life in the segmentation clock.

机译:前蛋白转化酶加工的边缘条纹蛋白可能会导致分段时钟中的蛋白半衰期缩短。

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摘要

During vertebrate segmentation, oscillatory activation of Notch signaling is important in the clock that regulates the timing of somitogenesis. In mice, the cyclic activation of NOTCH1 requires the periodic expression of Lunatic fringe (Lfng). For LFNG to play a role in the segmentation clock, its cyclic transcription must be coupled with post-translational mechanisms that confer a short protein half-life. LFNG protein is cleaved and released into the extracellular space, and here we examine the hypothesis that this secretion contributes to a short LFNG intracellular half-life, facilitating rapid oscillations within the segmentation clock. We localize N-terminal protein sequences that control the secretory behavior of fringe proteins and find that LFNG processing is promoted by specific proprotein convertases including furin and SPC6. Mutations that alter LFNG processing increase its intracellular half-life without preventing its secretion. These mutations do not affect the specificity of LFNG function in the Notch pathway, thus regulation of protein half-life affects the duration of LFNG activity without altering its function. Finally, the embryonic expression pattern of Spc6 suggests a role in terminating LFNG activity during somite patterning. These results have important implications for the mechanisms that contribute to the tight control of Notch signaling during vertebrate segmentation.
机译:在脊椎动物的分割过程中,Notch信号的振荡激活在调节体细胞发生时间的时钟中很重要。在小鼠中,NOTCH1的循环激活需要Lunatic条纹(Lfng)的周期性表达。为了使LFNG在分段时钟中发挥作用,其环状转录必须与赋予较短蛋白质半衰期的翻译后机制结合在一起。 LFNG蛋白被裂解并释放到细胞外空间中,在这里我们检查这种分泌有助于LFNG细胞内半衰期短的假设,从而促进了分割时钟内的快速振荡。我们本地化控制边缘蛋白的分泌行为的N末端蛋白序列,发现LFNG加工是由包括弗林蛋白酶和SPC6的特定前蛋白转化酶促进的。改变LFNG加工的突变会增加其细胞内半衰期,而不会阻止其分泌。这些突变不会影响Notch通路中LFNG功能的特异性,因此蛋白质半衰期的调节会影响LFNG活性的持续时间,而不会改变其功能。最后,Spc6的胚胎表达模式暗示着在残体构图过程中终止LFNG活性的作用。这些结果对在脊椎动物分割过程中严格控制Notch信号传导的机制具有重要意义。

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