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Lack of the endosomal SNAREs vti1a and vti1b led to significant impairments in neuronal development

机译:内体SNAREs vti1a和vti1b的缺乏导致神经元发育的重大损害

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摘要

Fusion between membranes is mediated by specific SNARE complexes. Here we report that fibroblasts survive the absence of the trans-Golgi network/early endosomal SNARE vti1a and the late endosomal SNARE vti1b with intact organelle morphology and minor trafficking defects. Because vti1a and vti1b are the only members of their SNARE subclass and the yeast homolog Vti1p is essential for cell survival, these data suggest that more distantly related SNAREs acquired the ability to function in endosomal traffic during evolution. However, absence of vti1a and vti1b resulted in perinatal lethality. Major axon tracts were missing, reduced in size, or misrouted in Vti1a−/− Vti1b−/− embryos. Progressive neurodegeneration was observed in most Vti1a−/− Vti1b−/− peripheral ganglia. Neurons were reduced by more than 95% in Vti1a−/− Vti1b−/− dorsal root and geniculate ganglia at embryonic day 18.5. These data suggest that special demands for endosomal membrane traffic could not be met in Vti1a−/− Vti1b−/− neurons. Vti1a−/− and Vti1b−/− single deficient mice were viable without these neuronal defects, indicating that they can substitute for each other in these processes.
机译:膜之间的融合是由特定的SNARE复合物介导的。在这里我们报告成纤维细胞幸存的缺乏反高尔基网络/早期内体SNARE vti1a和晚期内体SNARE vti1b具有完整的细胞器形态和较小的运输缺陷。因为vti1a和vti1b是其SNARE亚类的唯一成员,并且酵母同源物Vti1p对于细胞存活至关重要,所以这些数据表明,更远相关的SNARE在进化过程中获得了在内体运输中发挥功能的能力。但是,缺乏vti1a和vti1b会导致围产期致死。 Vti1a -// Vti1b -/-胚胎中的主要轴突束缺失,大小减小或路线错误。在大多数Vti1a -/- Vti1b -/-周围神经节中观察到进行性神经变性。在胚胎第18.5天,Vti1a -/- Vti1b -/-背根和膝状神经节神经元减少了95%以上。这些数据表明,在Vti1a -/- Vti1b -/-神经元中无法满足对内体膜运输的特殊要求。 Vti1a -/-和Vti1b -/-单个缺陷小鼠在没有这些神经元缺陷的情况下是可行的,这表明它们可以在这些过程中相互替代。

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