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首页> 外文期刊>Journal of Cell Science >When intracellular logistics fails - genetic defects in membrane trafficking
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When intracellular logistics fails - genetic defects in membrane trafficking

机译:当细胞内物流失败时-膜运输中的遗传缺陷

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The number of human genetic disorders shown to be due to defects in membrane trafficking has greatly increased during the past five years. Defects have been identified in components involved in sorting of cargo into transport carriers, vesicle budding and scission, movement of vesicles along cytoskeletal tracks, as well as in vesicle tethering, docking and fusion at the target membrane. The nervous system is extremely sensitive to such disturbances of the membrane trafficking machinery, and the majority of these disorders display neurological defects - particularly diseases affecting the motility of transport carriers along cytoskeletal tracks. In several disorders, defects in a component that represents a fundamental part of the trafficking machinery fail to cause global transport defects but result in symptoms limited to specific cell types and transport events; this apparently reflects the redundancy of the transport apparatus. In groups of closely related diseases such as Hermansky-Pudlak and Griscelli syndromes, identification of the underlying gene defects has revealed groups of genes in which mutations lead to similar phenotypic consequences. New functionally linked trafficking components and regulatory mechanisms have thus been discovered. Studies of the gene defects in trafficking disorders therefore not only open avenues for new therapeutic approaches but also significantly contribute to our knowledge of the fundamental mechanisms of intracellular membrane transport.
机译:在过去的五年中,由于膜运输缺陷而导致的人类遗传疾病的数量大大增加了。已经确定了缺陷,这些缺陷涉及将货物分类到运输载体中,囊泡发芽和分裂,囊泡沿细胞骨架轨道的移动以及在靶膜处的囊泡束缚,对接和融合。神经系统对这种膜运输机制的紊乱极为敏感,这些疾病大多数都表现出神经系统缺陷,特别是影响运输载体沿细胞骨架轨道运动的疾病。在几种疾病中,代表运输工具基本部分的组件中的缺陷无法引起整体运输缺陷,但会导致症状仅限于特定的细胞类型和运输事件。这显然反映了运输设备的冗余性。在诸如Hermansky-Pudlak和Griscelli综合征等密切相关的疾病组中,对潜在基因缺陷的鉴定揭示了一些基因组,其中突变导致相似的表型后果。因此,已经发现了新的功能相关的贩运组成部分和监管机制。因此,对贩运性疾病中基因缺陷的研究不仅为新的治疗方法开辟了道路,而且对我们对细胞内膜转运的基本机制的认识也做出了重要贡献。

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