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首页> 外文期刊>Nature Communications >Diversity of oligomerization in Drosophila semaphorins suggests a mechanism of functional fine-tuning
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Diversity of oligomerization in Drosophila semaphorins suggests a mechanism of functional fine-tuning

机译:Drosophila Semaphorins中低聚的多样性表明了功能性微调的机制

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Semaphorin ligands and their plexin receptors are one of the major cell guidance factors that trigger localised changes in the cytoskeleton. Binding of semaphorin homodimer to plexin brings two plexins in close proximity which is a prerequisite for plexin signalling. This model appears to be too simplistic to explain the complexity and functional versatility of these molecules. Here, we determine crystal structures for all members of Drosophila class 1 and 2 semaphorins. Unlike previously reported semaphorin structures, Sema1a, Sema2a and Sema2b show stabilisation of sema domain dimer formation via a disulfide bond. Unexpectedly, our structural and biophysical data show Sema1b is a monomer suggesting that semaphorin function may not be restricted to dimers. We demonstrate that semaphorins can form heterodimers with members of the same semaphorin class. This heterodimerization provides a potential mechanism for cross-talk between different plexins and co-receptors to allow fine-tuning of cell signalling.
机译:Semaphorin配体及其丛受体是引发细胞骨架局部变化的主要细胞引导因子之一。信号素同源体与丛林的结合带来了两个隐藏间的红色,这是Plexin信号传导的先决条件。该模型似乎太简单,无法解释这些分子的复杂性和功能性。在这里,我们确定果蝇1级和2个信号序列的所有成员的晶体结构。与先前报道的信号素结构不同,SEMA1A,SEMA2A和SEMA2B通过二硫键显示SEMA结构域二聚体形成的稳定化。出乎意料地,我们的结构和生物物理数据显示SEMA1B是一种单体,表明信号素功能可能不限于二聚体。我们证明,曲面素可以与同一示伐性课程的成员形成异二聚体。该异二聚体提供了不同红色和共同受体之间的串扰的潜在机制,以允许细胞信号传导的微调。

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