de Marco María C, Martín-Belmonte Fernando, Kremer Leonor, Albar Juan P, Correas Isabel, Vaerman Jean P, Marazuela Mónica, Byrne Jennifer A, Alonso Miguel A
Centro de Biología Molecular "Severo Ochoa", Centro Nacional de Biotecnología, Universidad Autónoma de Madrid and Consejo Superior de Investigaciones Científicas, Cantoblanco, 28049 Madrid, Spain.
J Cell Biol. 2002 Oct 14;159(1):37-44. doi: 10.1083/jcb.200206033. Epub 2002 Oct 7.
Transcytosis is used alone (e.g., hepatoma HepG2 cells) or in combination with a direct pathway from the Golgi (e.g., epithelial MDCK cells) as an indirect route for targeting proteins to the apical surface. The raft-associated MAL protein is an essential element of the machinery for the direct route in MDCK cells. Herein, we present the functional characterization of MAL2, a member of the MAL protein family, in polarized HepG2 cells. MAL2 resided selectively in rafts and is predominantly distributed in a compartment localized beneath the subapical F-actin cytoskeleton. MAL2 greatly colocalized in subapical endosome structures with transcytosing molecules en route to the apical surface. Depletion of endogenous MAL2 drastically blocked transcytotic transport of exogenous polymeric immunoglobulin receptor and endogenous glycosylphosphatidylinositol-anchored protein CD59 to the apical membrane. MAL2 depletion did not affect the internalization of these molecules but produced their accumulation in perinuclear endosome elements that were accessible to transferrin. Normal transcytosis persisted in cells that expressed exogenous MAL2 designed to resist the depletion treatment. MAL2 is therefore essential for transcytosis in HepG2 cells.
转胞吞作用可单独使用(如肝癌HepG2细胞),或与来自高尔基体的直接途径相结合(如上皮MDCK细胞),作为将蛋白质靶向顶表面的间接途径。与筏相关的MAL蛋白是MDCK细胞中直接途径机制的关键要素。在此,我们展示了MAL蛋白家族成员MAL2在极化HepG2细胞中的功能特性。MAL2选择性地存在于筏中,主要分布在位于顶下F-肌动蛋白细胞骨架下方的一个区室中。MAL2与转运至顶表面途中的转胞吞分子在顶下内体结构中大量共定位。内源性MAL2的缺失极大地阻断了外源性聚合免疫球蛋白受体和内源性糖基磷脂酰肌醇锚定蛋白CD59向顶膜的转胞吞转运。MAL2的缺失不影响这些分子的内化,但导致它们在可被转铁蛋白接触到的核周内体元件中积累。在表达旨在抵抗缺失处理的外源性MAL2的细胞中,正常转胞吞作用持续存在。因此,MAL2对HepG2细胞中的转胞吞作用至关重要。