Sanford School of Medicine, University of South Dakota, Sioux Falls, SD 57105, USA; Cellular Therapies and Stem Cell Biology Group, Sanford Research, Sioux Falls, SD 57104, USA.
Laboratory of Molecular Biophysics, National Heart Lung and Blood Institute, National Institutes of Health, Bethesda, MD 20814, USA.
Cell Rep. 2021 Nov 16;37(7):110008. doi: 10.1016/j.celrep.2021.110008.
Clathrin-mediated endocytosis (CME) is critical for cellular signal transduction, receptor recycling, and membrane homeostasis in mammalian cells. Acute depletion of cholesterol disrupts CME, motivating analysis of CME dynamics in the context of human disorders of cholesterol metabolism. We report that inhibition of post-squalene cholesterol biosynthesis impairs CME. Imaging of membrane bending dynamics and the CME pit ultrastructure reveals prolonged clathrin pit lifetimes and shallow clathrin-coated structures, suggesting progressive impairment of curvature generation correlates with diminishing sterol abundance. Sterol structural requirements for efficient CME include 3' polar head group and B-ring conformation, resembling the sterol structural prerequisites for tight lipid packing and polarity. Furthermore, Smith-Lemli-Opitz fibroblasts with low cholesterol abundance exhibit deficits in CME-mediated transferrin internalization. We conclude that sterols lower the energetic costs of membrane bending during pit formation and vesicular scission during CME and suggest that reduced CME activity may contribute to cellular phenotypes observed within disorders of cholesterol metabolism.
网格蛋白介导的内吞作用(CME)对于哺乳动物细胞中的细胞信号转导、受体回收和膜动态平衡至关重要。胆固醇的急性耗竭会破坏 CME,这促使人们在人类胆固醇代谢紊乱的背景下分析 CME 动力学。我们报告说,鲨烯后胆固醇生物合成的抑制会损害 CME。对膜弯曲动力学和 CME 陷窝超微结构的成像表明,网格蛋白陷窝的寿命延长,且网格蛋白包被结构变浅,这表明曲率生成的逐渐受损与固醇丰度的降低相关。有效的 CME 的固醇结构要求包括 3'极性头部基团和 B 环构象,类似于紧密的脂质包装和极性的固醇结构前提条件。此外,胆固醇含量低的 Smith-Lemli-Opitz 成纤维细胞在 CME 介导的转铁蛋白内化中表现出缺陷。我们得出结论,固醇在陷窝形成过程中的膜弯曲和 CME 过程中的囊泡分裂过程中降低了能量成本,并表明 CME 活性的降低可能导致胆固醇代谢紊乱中观察到的细胞表型。