Department of Chemistry, Stanford University, Stanford, CA, 94305, USA.
Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, 20147, USA.
Nat Commun. 2022 Jun 2;13(1):3093. doi: 10.1038/s41467-022-30610-2.
The glycocalyx is a shell of heavily glycosylated proteins and lipids distributed on the cell surface of nearly all cell types. Recently, it has been found that bulky transmembrane glycoproteins such as MUC1 can modulate membrane shape by inducing membrane protrusions. In this work, we examine the reciprocal relationship of how membrane shape affects MUC1's spatial distribution on the cell membrane and its biological significance. By employing nanopatterned surfaces and membrane-sculpting proteins to manipulate membrane curvature, we show that MUC1 avoids positively-curved membranes (membrane invaginations) and accumulates on negatively-curved membranes (membrane protrusions). MUC1's curvature sensitivity is dependent on the length and the extent of glycosylation of its ectodomain, with large and highly glycosylated forms preferentially staying out of positive curvature. Interestingly, MUC1's avoidance of positive membrane curvature enables it to escape from endocytosis and being removed from the cell membrane. These findings also suggest that the truncation of MUC1's ectodomain, often observed in breast and ovarian cancers, may enhance its endocytosis and potentiate its intracellular accumulation and signaling.
糖萼是一种高度糖基化蛋白和脂质的外壳,分布在几乎所有细胞类型的细胞表面。最近发现,大型跨膜糖蛋白(如 MUC1)可以通过诱导膜突起来调节膜形状。在这项工作中,我们研究了膜形状如何影响 MUC1 在细胞膜上的空间分布及其生物学意义的相互关系。通过使用纳米图案化表面和膜雕刻蛋白来操纵膜曲率,我们表明 MUC1 避免正曲率的膜(膜内陷)并聚集在负曲率的膜(膜突起)上。MUC1 的曲率敏感性取决于其胞外域的长度和糖基化程度,长而高度糖基化的形式优先避免正曲率。有趣的是,MUC1 避免正的膜曲率使其能够逃避内吞作用并从细胞膜上脱落。这些发现还表明,MUC1 的胞外域截短,常发生在乳腺癌和卵巢癌中,可能增强其内吞作用,并增强其细胞内积累和信号转导。