首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >A Dominant-negative Clathrin Mutant Differentially Affects Trafficking of Molecules with Distinct Sorting Motifs in the Class II Major Histocompatibility Complex (MHC) Pathway
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A Dominant-negative Clathrin Mutant Differentially Affects Trafficking of Molecules with Distinct Sorting Motifs in the Class II Major Histocompatibility Complex (MHC) Pathway

机译:占主导地位的阴性网格蛋白突变体差异影响分子与II类主要组织相容性复合体(MHC)通路中不同的排序母题的贩运。

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摘要

The role of clathrin in intracellular sorting was investigated by expression of a dominant-negative mutant form of clathrin, termed the hub fragment. Hub inhibition of clathrin-mediated membrane transport was established by demonstrating a block of transferrin internalization and an alteration in the intracellular distribution of the cation-independent mannose-6-phosphate receptor. Hubs had no effect on uptake of FITC-dextran, adaptor distribution, organelle integrity in the secretory pathway, or cell surface expression of constitutively secreted molecules. Hub expression blocked lysosomal delivery of chimeric molecules containing either the tyrosine-based sorting signal of H2M or the dileucine-based sorting signal of CD3γ, confirming a role for clathrin-coated vesicles (CCVs) in recognizing these signals and sorting them to the endocytic pathway. Hub expression was then used to probe the role of CCVs in targeting native molecules bearing these sorting signals in the context of HLA–DM and the invariant chain (I chain) complexed to HLA–DR. The distribution of these molecules was differentially affected. Accumulation of hubs before expression of the DM dimer blocked DM export from the TGN, whereas hubs had no effect on direct targeting of the DR–I chain complex from the TGN to the endocytic pathway. However, concurrent expression of hubs, such that hubs were building to inhibitory concentrations during DM or DR–I chain expression, caused cell surface accumulation of both complexes. These observations suggest that both DM and DR–I chain are directly transported to the endocytic pathway from the TGN, DM in CCVs, and DR–I chain independent of CCVs. Subsequently, both complexes can appear at the cell surface from where they are both internalized by CCVs. Differential packaging in CCVs in the TGN, mediated by tyrosine- and dileucine-based sorting signals, could be a mechanism for functional segregation of DM from DR–I chain until their intended rendezvous in late endocytic compartments.
机译:网格蛋白在细胞内分选中的作用是通过表达网格蛋白的显性-阴性突变体形式(称为中枢片段)来研究的。枢纽抑制网格蛋白介导的膜转运是通过证明转铁蛋白内在化和不依赖阳离子的甘露糖-6-磷酸受体的胞内分布改变而建立的。集线器对FITC-葡聚糖的摄取,衔接子分布,分泌途径中的细胞器完整性或组成性分泌分子的细胞表面表达没有影响。集线器表达阻止溶酶体传递包含H2M的基于酪氨酸的分选信号或CD3γ的基于双亮氨酸的分选信号的嵌合分子,证实网格蛋白包被的囊泡(CCV)在识别这些信号并将其分选到胞吞途径中的作用。然后,在HLA-DM和复合到HLA-DR的不变链(I链)的背景下,使用Hub表达来探测CCV在靶向带有这些分类信号的天然分子中的作用。这些分子的分布受到不同的影响。 DM二聚体表达之前的集线器积累阻止了DM从TGN的出口,而集线器对直接靶向从TGN到内吞途径的DR–I链复合物没有影响。然而,毂的同时表达,使得毂在DM或DR–I链表达过程中建立到抑制浓度,导致两种复合物的细胞表面积聚。这些观察结果表明,DM和DR–I链均直接从TGN,CCV中的DM和独立于CCV的DR–I链转运至内吞途径。随后,两种复合物均会出现在细胞表面,而CCV则将它们都内在化。 TGN中CCV的差异包装,由基于酪氨酸和双亮氨酸的分选信号介导,可能是DM从DR–I链中功能分离的机制,直到它们在晚期内吞区室中会合。

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