Frick Manfred, Bright Nicholas A, Riento Kirsi, Bray Aurélie, Merrified Christien, Nichols Benjamin J
Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.
Curr Biol. 2007 Jul 3;17(13):1151-6. doi: 10.1016/j.cub.2007.05.078.
Endocytosis has a crucial role in many cellular processes. The best-characterized mechanism for endocytosis involves clathrin-coated pits [1], but evidence has accumulated for additional endocytic pathways in mammalian cells [2]. One such pathway involves caveolae, plasma-membrane invaginations defined by caveolin proteins. Plasma-membrane microdomains referred to as lipid rafts have also been associated with clathrin-independent endocytosis by biochemical and pharmacological criteria [3]. The mechanisms, however, of nonclathrin, noncaveolin endocytosis are not clear [4, 5]. Here we show that coassembly of two similar membrane proteins, flotillin1 and flotillin2 [6-8], is sufficient to generate de novo membrane microdomains with some of the predicted properties of lipid rafts [9]. These microdomains are distinct from caveolin1-positive caveolae, are dynamic, and bud into the cell. Coassembly of flotillin1 and flotillin2 into microdomains induces membrane curvature, the formation of plasma-membrane invaginations morphologically similar to caveolae, and the accumulation of intracellular vesicles. We propose that flotillin proteins are defining structural components of the machinery that mediates a clathrin-independent endocytic pathway. Key attributes of this machinery are the dependence on coassembly of both flotillins and the inference that flotillin microdomains can exist in either flat or invaginated states.
内吞作用在许多细胞过程中起着关键作用。最具特征的内吞作用机制涉及网格蛋白包被小窝[1],但哺乳动物细胞中其他内吞途径的证据也在不断积累[2]。其中一种途径涉及小窝,即由小窝蛋白定义的质膜内陷。通过生化和药理学标准,被称为脂筏的质膜微区也与非网格蛋白依赖性内吞作用相关[3]。然而,非网格蛋白、非小窝蛋白的内吞作用机制尚不清楚[4,5]。在这里,我们表明两种相似的膜蛋白,即小窝蛋白1和小窝蛋白2[6-8]的共组装足以产生具有一些脂筏预测特性的新生膜微区[9]。这些微区与小窝蛋白1阳性小窝不同,具有动态性,并向细胞内出芽。小窝蛋白1和小窝蛋白2共组装成微区会诱导膜弯曲,形成形态上类似于小窝的质膜内陷,并积累细胞内囊泡。我们提出,小窝蛋白是介导非网格蛋白依赖性内吞途径的机制的定义性结构成分。该机制的关键特性是依赖于两种小窝蛋白的共组装以及小窝蛋白微区可以处于扁平或内陷状态的推断。