Zahraoui Ahmed
Phagocytosis and Bacterial Invasion Laboratory, INSERM U.1016-CNRS UMR8104, Institut Cochin, Université Paris Descartes, Paris, France.
Methods Enzymol. 2014;535:419-37. doi: 10.1016/B978-0-12-397925-4.00024-9.
Small GTPase Rabs are required for membrane protein sorting/delivery to precise membrane domains. Rab13 regulates tight junction assembly and polarized membrane transport in epithelial cells. Using yeast two-hybrid screen, we identified MICAL-like1 (MICAL-L1), a protein that interacts with GTP-bound Rab13 and shares a similar domain organization with MICAL protein family. MICAL-L1 has a calponin homology, Lin11, Isl-1 & Mec-3 (LIM), proline-rich, and coiled-coil domains. It is associated with late and recycling endosomes. Time-lapse video microscopy shows that GFP-Rab7 and cherry-MICAL-L1 are present within vesicles that move rapidly in the cytoplasm. Depletion of MICAL-L1 by short hairpin RNA does not alter the distribution of tight junction proteins, but affects the trafficking of epidermal growth factor receptor (EGFR). Overexpression of MICAL-L1 leads to the accumulation of EGFR in late endosomal compartments. In contrast, knocking down MICAL-L1 results in the distribution of internalized EGFR in vesicles spread throughout the cytoplasm and promotes its degradation. Our data show that MICAL-L1 inhibits EGFR degradation, suggesting that MICAL-L1 is involved in sorting/targeting the receptor to the recycling pathway. They provide novel insights into MICAL-L1/Rab protein complex that can regulate EGFR trafficking/signaling.
小GTP酶Rabs参与膜蛋白分选/转运至精确的膜结构域。Rab13调节上皮细胞中的紧密连接组装和极化膜转运。通过酵母双杂交筛选,我们鉴定出MICAL样蛋白1(MICAL-L1),一种与GTP结合的Rab13相互作用且与MICAL蛋白家族具有相似结构域组织的蛋白质。MICAL-L1具有钙调蛋白同源结构域、Lin11、Isl-1和Mec-3(LIM)结构域、富含脯氨酸结构域和卷曲螺旋结构域。它与晚期内体和再循环内体相关。延时视频显微镜显示,绿色荧光蛋白标记的Rab7(GFP-Rab7)和樱桃色荧光蛋白标记的MICAL-L1(cherry-MICAL-L1)存在于在细胞质中快速移动的囊泡内。短发夹RNA介导的MICAL-L1缺失不会改变紧密连接蛋白的分布,但会影响表皮生长因子受体(EGFR)的转运。MICAL-L1的过表达导致EGFR在晚期内体区室中积累。相反,敲低MICAL-L1会导致内化的EGFR分布在遍布细胞质的囊泡中,并促进其降解。我们的数据表明,MICAL-L1抑制EGFR降解,提示MICAL-L1参与将受体分选/靶向至再循环途径。这些数据为可调节EGFR转运/信号传导的MICAL-L1/Rab蛋白复合物提供了新的见解。