Université de Paris, Inserm U1016-CNRS UMR 8104, Institut Cochin, Paris, France.
Université de Paris, Institute of Psychiatry and Neuroscience of Paris (IPNP), INSERM U1266, Membrane Traffic in Healthy & Diseased Brain, Paris, France.
Biol Open. 2021 Jun 15;10(6). doi: 10.1242/bio.058008. Epub 2021 Jun 8.
Secreted proteins are transported along intracellular route from the endoplasmic reticulum through the Golgi before reaching the plasma membrane. Small GTPase Rab and their effectors play a key role in membrane trafficking. Using confocal microscopy, we showed that MICAL-L1 was associated with tubulo-vesicular structures and exhibited a significant colocalization with markers of the Golgi apparatus and recycling endosomes. Super resolution STORM microscopy suggested at the molecular level, a very close association of MICAL-L1 and microdomains in the Golgi cisternae. Using a synchronized secretion assay, we report that the shRNA-mediated depletion of MICAL-L1 impaired the delivery of a subset of cargo proteins to the cell surface. The process of membrane tubulation was monitored in vitro, and we observe that recombinant MICAL-L1-RBD domain may contribute to promote PACSINs-mediated membrane tubulation. Interestingly, two hydrophobic residues at the C-terminus of MICAL-L1 appeared to be important for phosphatidic acid binding, and for association with membrane tubules. Our results reveal a new role for MICAL-L1 in cargo delivery to the plasma membrane.
分泌蛋白在内质网沿着细胞内途径运输,穿过高尔基体,然后到达质膜。小分子 GTP 酶 Rab 和它们的效应物在膜运输中起着关键作用。通过共聚焦显微镜,我们发现 MICAL-L1 与管状囊泡结构相关,并与高尔基体和再循环内体的标志物有显著的共定位。超分辨率 STORM 显微镜在分子水平上表明,MICAL-L1 与高尔基体池中的微区非常接近。使用同步分泌测定法,我们报告说,shRNA 介导的 MICAL-L1 耗竭会损害一部分货物蛋白向细胞表面的输送。在体外监测了膜小管形成过程,我们观察到重组 MICAL-L1-RBD 结构域可能有助于促进 PACSINs 介导的膜小管形成。有趣的是,MICAL-L1 羧基末端的两个疏水性残基似乎对磷酸脂酸结合以及与膜小管的结合很重要。我们的结果揭示了 MICAL-L1 在货物向质膜输送中的新作用。