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ER-Golgi Transport Defects Are Associated with Mutations in the Sed5p-binding Domain of the COPII Coat Subunit, Sec24p

机译:ER高尔基体运输缺陷与COPII外套亚基Sec24p的Sed5p绑定域中的突变相关。

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Selective cargo capture into ER-derived vesicles is driven by the Sec24p subunit of the COPII coat, which contains at least three independent cargo-binding sites. One of these, the “A-site,” interacts with a NPF motif found on the SNARE, Sed5p. We have characterized the Sec24p-Sed5p interaction through mutation of the putative ER export motifs of Sed5p and the cargo-binding A-site of Sec24p. Mutational analysis of Sed5p suggests that the NPF motif is the dominant ER export signal. Mutation of the NPF binding pocket on Sec24p led to a dramatic reduction in the capture of Sed5p into COPII vesicles, whereas packaging of other ER-Golgi SNAREs was normal. Of all the cargoes tested, only Sed5p was depleted in vesicles made with Sec24p A-site mutants. Surprisingly, vesicles generated with the mutant Sec24p were unable to fuse with the Golgi apparatus. This inability to fuse was not the result of the lack of Sed5p, because vesicles specifically depleted of Sed5p generated by antibody inhibition targeted and fused normally. We propose that the A-site of Sec24p is a multipurpose cargo-binding site that must recognize additional unidentified cargo proteins, at least one of which is essential at a late stage of vesicle fusion.
机译:选择性捕获货物到ER来源的囊泡中是由COPII涂层的Sec24p亚基驱动的,该亚基包含至少三个独立的货物结合位点。其中之一,即“ A位点”,与SNARE Sed5p上的NPF主题相互作用。我们已经通过假定的Sed5p的ER出口基序和Sec24p的货物绑定A位点的突变来表征Sec24p-Sed5p的相互作用。 Sed5p的突变分析表明,NPF基序是主要的ER出口信号。 Sec24p上NPF结合口袋的突变导致Sed5p被捕获到COPII囊泡中的捕获量显着减少,而其他ER-高尔基SNARE的包装是正常的。在所有测试的货物中,只有Sed5p耗尽了Sec24p A位突变体制成的囊泡。令人惊讶地,用突变体Sec24p产生的囊泡不能与高尔基体融合。这种不能融合的原因不是缺少Sed5p的结果,因为正常靶向和融合的抗体抑制作用产生的囊泡特异性消耗了Sed5p。我们建议,Sec24p的A位点是一个多用途的货物结合位点,必须识别其他未识别的货物蛋白,其中至少一个在囊泡融合的后期是必不可少的。

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