Shvets Elena, Bitsikas Vassilis, Howard Gillian, Hansen Carsten Gram, Nichols Benjamin J
MRC-LMB, Francis Crick Avenue, Cambridge CB2 0QH, UK.
Sanford Consortium for Regenerative Medicine UCSD, 2880 Torrey Pines Scenic Drive, La Jolla, California 92037, USA.
Nat Commun. 2015 Apr 21;6:6867. doi: 10.1038/ncomms7867.
Caveolae have long been implicated in endocytosis. Recent data question this link, and in the absence of specific cargoes the potential cellular function of caveolar endocytosis remains unclear. Here we develop new tools, including doubly genome-edited cell lines, to assay the subcellular dynamics of caveolae using tagged proteins expressed at endogenous levels. We find that around 5% of the cellular pool of caveolae is present on dynamic endosomes, and is delivered to endosomes in a clathrin-independent manner. Furthermore, we show that caveolae are indeed likely to bud directly from the plasma membrane. Using a genetically encoded tag for electron microscopy and ratiometric light microscopy, we go on to show that bulk membrane proteins are depleted within caveolae. Although caveolae are likely to account for only a small proportion of total endocytosis, cells lacking caveolae show fundamentally altered patterns of membrane traffic when loaded with excess glycosphingolipid. Altogether, these observations support the hypothesis that caveolar endocytosis is specialized for transport of membrane lipid.
小窝长期以来一直被认为与内吞作用有关。最近的数据对这种联系提出了质疑,并且在没有特定货物的情况下,小窝介导的内吞作用的潜在细胞功能仍不清楚。在这里,我们开发了新的工具,包括双基因组编辑细胞系,以使用内源性水平表达的标记蛋白来检测小窝的亚细胞动力学。我们发现,大约5%的细胞小窝池存在于动态内体上,并以网格蛋白非依赖的方式传递到内体。此外,我们表明小窝确实可能直接从质膜出芽。使用用于电子显微镜和比率光显微镜的基因编码标签,我们进一步表明小窝内的大量膜蛋白被耗尽。尽管小窝可能仅占总内吞作用的一小部分,但缺乏小窝的细胞在装载过量糖鞘脂时显示出膜运输模式的根本改变。总之,这些观察结果支持了小窝介导的内吞作用专门用于膜脂运输的假设。