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首页> 外文期刊>Molecular biology of the cell >The alternate AP-1 adaptor subunit Apm2 interacts with the Mil1 regulatory protein and confers differential cargo sorting (Retracted article. See vol. 27, pg. 2515, 2016)
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The alternate AP-1 adaptor subunit Apm2 interacts with the Mil1 regulatory protein and confers differential cargo sorting (Retracted article. See vol. 27, pg. 2515, 2016)

机译:替代的AP-1适配器亚基Apm2与Mil1调节蛋白相互作用,并赋予不同的货物分拣(撤回的文章。请参阅第27卷,第2515页,2016年)

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摘要

Heterotetrameric adaptor protein complexes are important mediators of cargo protein sorting in clathrin-coated vesicles. The cell type-specific expression of alternate mu chains creates distinct forms of AP-1 with altered cargo sorting, but how these subunits confer differential function is unclear. Whereas some studies suggest the mu subunits specify localization to different cellular compartments, others find that the two forms of AP-1 are present in the same vesicle but recognize different cargo. Yeast have two forms of AP-1, which differ only in the mu chain. Here we show that the variant mu chain Apm2 confers distinct cargo-sorting functions. Loss of Apm2, but not of Apm1, increases cell surface levels of the v-SNARE Snc1. However, Apm2 is unable to replace Apm1 in sorting Chs3, which requires a dileucine motif recognized by the gamma/sigma subunits common to both complexes. Apm2 and Apm1 colocalize at Golgi/early endosomes, suggesting that they do not associate with distinct compartments. We identified a novel, conserved regulatory protein that is required for Apm2-dependent sorting events. Mil1 is a predicted lipase that binds Apm2 but not Apm1 and contributes to its membrane recruitment. Interactions with specific regulatory factors may provide a general mechanism to diversify the functional repertoire of clathrin adaptor complexes.
机译:异四聚体衔接蛋白复合物是网格蛋白包被的囊泡中货物蛋白分选的重要介体。备用mu链的细胞类型特异性表达可产生具有不同货物分类的AP-1形式,但这些亚基如何赋予差异化功能尚不清楚。尽管有些研究表明mu亚基可以定位到不同的细胞区室,但另一些研究发现,两种形式的AP-1存在于同一囊泡中,但识别不同的货物。酵母具有两种形式的AP-1,它们的区别仅在于mu链。在这里,我们显示了可变的mu链Apm2具有不同的货物分拣功能。 Apm2而不是Apm1的丢失会增加v-SNARE Snc1的细胞表面水平。但是,Apm2无法在Chs3排序中取代Apm1,这需要被两种复合物共有的gamma / sigma亚基识别的双亮氨酸基序。 Apm2和Apm1共定位于高尔基体/早期内体,表明它们与不同的区室无关。我们确定了一种新型的,保守的调节蛋白,这是Apm2依赖的排序事件所必需的。 Mil1是一种预测的脂肪酶,可结合Apm2但不结合Apm1,并有助于其膜募集。与特定调节因子的相互作用可以提供使网格蛋白衔接子复合物的功能库多样化的一般机制。

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