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利用转铁蛋白受体嵌合体分析溶酶体膜靶向的结构要求。

Analysis of the structural requirements for lysosomal membrane targeting using transferrin receptor chimeras.

作者信息

White S, Hatton S R, Siddiqui M A, Parker C D, Trowbridge I S, Collawn J F

机构信息

Department of Cancer Biology, The Salk Institute, San Diego, California 92186-5800, USA.

出版信息

J Biol Chem. 1998 Jun 5;273(23):14355-62. doi: 10.1074/jbc.273.23.14355.

Abstract

The sorting of membrane proteins to the lysosome requires tyrosine- or dileucine-based targeting signals. Recycling receptors have similar signals, yet these proteins seldom enter the latter stages of the endocytic pathway. To determine how lysosomal and internalization signals differ, we prepared chimeric molecules consisting of the cytoplasmic tails of CD3 gamma-chain, lysosomal acid phosphatase, and lysosomal-associated membrane glycoprotein-1, each fused to the transmembrane and extracellular domains of the transferrin receptor (TR). Each chimera was expressed on the cell surface and rapidly internalized. Metabolic pulse-chase experiments showed that the CD3 gamma-chain and lysosomal acid phosphatase chimeras, unlike the lysosomal-associated membrane glycoprotein chimera, were rapidly degraded in a post-Golgi compartment following normal glycosylation. Transplantation of signals from CD3 gamma-chain and lysosomal acid phosphatase into the TR cytoplasmic tail in place of the native signal, Y20TRF23, indicated that each signal was sufficient to promote endocytosis but not lysosomal targeting of the resulting mutant. Transplantation of two CD3 signals at specific sites in the TR cytoplasmic tail or a single tyrosine-based signal in a truncated TR tail, however, was sufficient to promote lysosomal targeting. Our results therefore suggest that the relative position of the signal within the cytoplasmic tail is a critical feature that distinguishes lysosomal targeting signals from internalization signals.

摘要

膜蛋白向溶酶体的分选需要基于酪氨酸或双亮氨酸的靶向信号。循环受体具有类似的信号,但这些蛋白很少进入内吞途径的后期阶段。为了确定溶酶体信号和内化信号的差异,我们制备了嵌合分子,这些分子由CD3γ链、溶酶体酸性磷酸酶和溶酶体相关膜糖蛋白-1的胞质尾组成,每个都与转铁蛋白受体(TR)的跨膜和胞外结构域融合。每个嵌合体在细胞表面表达并迅速内化。代谢脉冲追踪实验表明,与溶酶体相关膜糖蛋白嵌合体不同,CD3γ链和溶酶体酸性磷酸酶嵌合体在正常糖基化后在高尔基体后区室中迅速降解。将来自CD3γ链和溶酶体酸性磷酸酶的信号移植到TR胞质尾中取代天然信号Y20TRF23,表明每个信号足以促进内吞作用,但不足以使所得突变体靶向溶酶体。然而,在TR胞质尾的特定位点移植两个CD3信号或在截短的TR尾中移植单个基于酪氨酸的信号,足以促进溶酶体靶向。因此,我们的结果表明,信号在胞质尾内的相对位置是区分溶酶体靶向信号和内化信号的关键特征。

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