Andrzejewska Zuzanna, Névo Nathalie, Thomas Lucie, Bailleux Anne, Chauvet Véronique, Benmerah Alexandre, Antignac Corinne
Inserm U1163, Laboratory of Hereditary Kidney Diseases, Paris, France.
Paris Descartes-Sorbonne Paris Cité University, Imagine Institute, Paris, France.
Traffic. 2015 Jul;16(7):712-26. doi: 10.1111/tra.12277. Epub 2015 Mar 24.
Cystinosin is a lysosomal cystine transporter defective in cystinosis, an autosomal recessive lysosomal storage disorder. It is composed of seven transmembrane (TM) domains and contains two lysosomal targeting motifs: a tyrosine-based signal (GYDQL) in its C-terminal tail and a non-classical motif in its fifth inter-TM loop. Using the yeast two-hybrid system, we showed that the GYDQL motif specifically interacted with the μ subunit of the adaptor protein complex 3 (AP-3). Moreover, cell surface biotinylation and total internal reflection fluorescence microscopy revealed that cystinosin was partially mislocalized to the plasma membrane (PM) in AP-3-depleted cells. We generated a chimeric CD63 protein to specifically analyze the function of the GYDQL motif. This chimeric protein was targeted to lysosomes in a manner similar to cystinosin and was partially mislocalized to the PM in AP-3 knockdown cells where it also accumulated in the trans-Golgi network and early endosomes. Together with the fact that the surface levels of cystinosin and of the CD63-GYDQL chimeric protein were not increased when clathrin-mediated endocytosis was impaired, our data show that the tyrosine-based motif of cystinosin is a 'strong' AP-3 interacting motif responsible for lysosomal targeting of cystinosin by a direct intracellular pathway.
胱氨酸转运体是一种溶酶体胱氨酸转运蛋白,在胱氨酸贮积症(一种常染色体隐性溶酶体贮积病)中存在缺陷。它由七个跨膜(TM)结构域组成,并包含两个溶酶体靶向基序:其C末端尾巴中的基于酪氨酸的信号(GYDQL)和其第五个跨膜环间的非经典基序。利用酵母双杂交系统,我们发现GYDQL基序与衔接蛋白复合体3(AP - 3)的μ亚基特异性相互作用。此外,细胞表面生物素化和全内反射荧光显微镜显示,在AP - 3缺失的细胞中,胱氨酸转运体部分错误定位于质膜(PM)。我们构建了一种嵌合CD63蛋白以专门分析GYDQL基序的功能。这种嵌合蛋白以类似于胱氨酸转运体的方式靶向溶酶体,并且在AP - 3敲低的细胞中部分错误定位于质膜,在这些细胞中它也积聚在反式高尔基体网络和早期内体中。鉴于当网格蛋白介导的内吞作用受损时,胱氨酸转运体和CD63 - GYDQL嵌合蛋白的表面水平并未增加,我们的数据表明,胱氨酸转运体基于酪氨酸的基序是一个“强”的AP - 3相互作用基序,通过直接的细胞内途径负责胱氨酸转运体的溶酶体靶向。