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沿转铁蛋白途径对不同的Rab5和Rab11阳性内体进行生化分析。

Biochemical analysis of distinct Rab5- and Rab11-positive endosomes along the transferrin pathway.

作者信息

Trischler M, Stoorvogel W, Ullrich O

机构信息

Institut f]ur Biochemie, Universit]at Mainz, Becherweg 30, D-55128 Mainz, Germany.

出版信息

J Cell Sci. 1999 Dec;112 ( Pt 24):4773-83. doi: 10.1242/jcs.112.24.4773.

Abstract

Rab GTPases are associated with distinct cellular compartments and function as specific regulators of intracellular transport. In the endocytic pathway, it is well documented that Rab5 regulates transport from plasma membrane to early (sorting) endosomes. In contrast, little is known about the precise localization and function of Rab4 and Rab11, which are believed to control endocytic recycling. In the present study we have analysed the protein composition of Rab5- and Rab11-carrying endosomes to gain further insight into the compartmental organization of the endocytic and recycling pathway. Endosome populations of this transport route were purified by immunoadsorption from endosome-enriched subcellular fractions using antibodies directed against the cytoplasmic tail of the transferrin receptor, Rab5 or Rab11. Endocytosed transferrin moved sequentially through compartments that could be immunoadsorbed with anti-Rab5 and anti-Rab11, consistent with the theory that Rab5 and Rab11 localise to sorting and recycling endosomes, respectively. These compartments exhibited morphological differences, as determined by electron microscopy. Although their overall protein compositions were very similar, some proteins were found to be selectively enriched. While Rab4 was present on all endosome populations, Rab5 and Rab11 were strikingly segregated. Furthermore, the Rab11-positive endosomes were rich in annexin II, actin and the t-SNARE syntaxin 13, compared to Rab5-containing endosomes. In an in vitro assay, the Rab5 effector protein EEA1 was preferentially recruited by Rab5-positive endosomes. Taken together, our data suggest an organization of the transferrin pathway into distinct Rab5- and Rab11-positive compartments.

摘要

Rab GTP酶与不同的细胞区室相关联,并作为细胞内运输的特定调节因子发挥作用。在内吞途径中,有充分的文献记载Rab5调节从质膜到早期(分拣)内体的运输。相比之下,人们对Rab4和Rab11的确切定位和功能了解甚少,据信它们控制内吞再循环。在本研究中,我们分析了携带Rab5和Rab11的内体的蛋白质组成,以进一步深入了解内吞和再循环途径的区室组织。通过使用针对转铁蛋白受体、Rab5或Rab11的细胞质尾的抗体,从富含内体的亚细胞组分中通过免疫吸附纯化该运输途径的内体群体。内吞的转铁蛋白依次穿过可以用抗Rab5和抗Rab11免疫吸附的区室,这与Rab5和Rab11分别定位于分拣内体和再循环内体的理论一致。通过电子显微镜确定,这些区室表现出形态学差异。尽管它们的总体蛋白质组成非常相似,但发现一些蛋白质被选择性富集。虽然Rab4存在于所有内体群体中,但Rab5和Rab11明显分离。此外,与含有Rab5的内体相比,Rab11阳性内体富含膜联蛋白II、肌动蛋白和t-SNARE syntaxin 13。在体外试验中,Rab5效应蛋白EEA1优先被Rab5阳性内体招募。综上所述,我们的数据表明转铁蛋白途径组织成不同的Rab5和Rab11阳性区室。

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