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Potassium-dependent assembly of coated pits: new coated pits form as planar clathrin lattices

机译:钾依赖性涂层坑的组装:新的涂层坑形成为平面网格蛋白晶格

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摘要

Previous studies have shown that when human fibroblasts are depleted of intracellular K+, coated pits disappear from the cell surface and the receptor-mediated endocytosis of low density lipoprotein (LDL) is inhibited. We have now used the K+ depletion protocol to study several aspects of coated pit function. First, since coated pits rapidly form when K+-depleted fibroblasts are incubated in the presence of 10 mM KCl, we studied the sequence of assembly of coated pits as visualized in carbon-platinum replicas of inner membrane surfaces from cells that had been incubated in the presence of K+ for various times. New coated pits initially appeared as planar clathrin lattices that increased in size by the formation of polygons at the margin of the lattice. Once the lattice reached a critical size it invaginated to form coated vesicles. Second, we determined that LDL-ferritin can induce clustering of LDL receptors over noncoated membrane on the surface of K+-depleted fibroblasts; however, when these cells are subsequently incubated in the presence of K+, these clusters become associated with newly formed coated pits and are internalized. Finally, we determined that K+ depletion inhibits the assembly of coated pits, but that existing coated pits in K+-depleted cells are able to internalize LDL. These results suggest that the clathrin lattice of coated pits is actively involved in membrane shape change during endocytosis and that the structural proteins of the lattice are cyclically assembled and disassembled in the process.
机译:先前的研究表明,当人类成纤维细胞中的细胞内K +耗尽时,被覆的凹坑将从细胞表面消失,并且受体介导的低密度脂蛋白(LDL)的内吞作用被抑制。现在,我们已经使用K +耗尽协议来研究包膜凹坑功能的多个方面。首先,由于在10 mM KCl存在下孵育贫K +的成纤维细胞时,会迅速形成包膜的凹坑,因此我们研究了包膜的凹坑的组装顺序,该序列在从细胞中孵育的内膜表面的碳-铂复制品中可见。 K +的存在时间不同。新的涂层凹坑最初表现为平面网格蛋白晶格,通过在晶格边缘形成多边形,尺寸逐渐增大。一旦晶格达到临界尺寸,它就会渐渐形成包被的囊泡。其次,我们确定低密度脂蛋白铁蛋白可以诱导低密度脂蛋白受体在富集K +的成纤维细胞表面未覆盖膜上聚集。然而,当这些细胞随后在K +存在下孵育时,这些簇与新形成的包膜凹坑相关并被内化。最后,我们确定K +耗尽会抑制带涂层的凹点的组装,但K +耗尽的细胞中现有的带涂层的凹点能够使LDL内在化。这些结果表明,包被的孔的网格蛋白晶格在内吞过程中积极参与膜的形状变化,并且该晶格的结构蛋白在该过程中循环组装和拆卸。

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