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Tetraspanin Protein CD9 Is a Novel Paranodal Component Regulating Paranodal Junctional Formation

机译:四跨膜蛋白CD9是一种新型的偏执狂成分调节旁结交界处形成。

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摘要

The axoglial paranodal junction is essential for the proper localization of ion channels around the node of Ranvier. The integrity of this junction is important for nerve conduction. Although recent studies have made significant progress in understanding the molecular composition of the paranodal junction, it is not known how these membrane components are distributed to the appropriate sites and interact with each other. Here we show that CD9, a member of the tetraspanin family, is present at the paranode. CD9 is concentrated in the paranode as myelination proceeds, but CD9 clusters become diffuse, associated with disruption of the paranode, in cerebroside sulfotransferase-deficient mice. Immunohistochemical and Western blot analysis showed that CD9 is distributed predominantly in the PNS. Ablation of CD9 in mutant mice disrupts junctional attachment at the paranode and alters the paranodal components contactin-associated protein (also known as Paranodin) and neurofascin 155, although the frequency of such abnormalities varies among individuals and individual axons even in the same mouse. Electron micrographs demonstrated that compact myelin sheaths were also affected in the PNS. Therefore, CD9 is a myelin protein important for the formation of paranodal junctions. CD9 also plays a role in the formation of compact myelin in the PNS.
机译:腋窝旁淋巴结对于在Ranvier节点周围正确定位离子通道至关重要。该连接的完整性对于神经传导很重要。尽管最近的研究在理解淋巴结交界处的分子组成方面取得了重大进展,但尚不知道这些膜成分如何分布到适当的位点并彼此相互作用。在这里,我们显示CD9,一个四跨膜家族成员,存在于节旁。 CD9在髓鞘形成过程中集中在腹节旁,但在脑苷硫磺转移酶缺陷型小鼠中,CD9簇变得散开,与腹节的破坏有关。免疫组织化学和蛋白质印迹分析表明,CD9主要分布在PNS中。突变小鼠中CD9的消融破坏了节旁结的连接,并改变了接触蛋白相关蛋白(也称为Paranodin)和神经乳链球蛋白155的妄想性成分,尽管这种异常的发生频率因人而异,甚至在同一只小鼠的轴突中也有所不同。电子显微照片表明,紧凑型髓鞘也受到PNS的影响。因此,CD9是一种髓鞘蛋白,对形成旁淋巴结很重要。 CD9在PNS中致密髓磷脂的形成中也起作用。

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