Robenek Horst, Buers Insa, Robenek Mirko J, Hofnagel Oliver, Ruebel Anneke, Troyer David, Severs Nicholas J
Leibniz Institute for Arteriosclerosis Research, University Münster, Domagkstr. 3, 48419 Münster, Germany.
J Lipids. 2011;2011:409371. doi: 10.1155/2011/409371. Epub 2010 Dec 26.
Lipid droplets are not merely storage depots for superfluous intracellular lipids in times of hyperlipidemic stress, but metabolically active organelles involved in cellular homeostasis. Our concepts on the metabolic functions of lipid droplets have come from studies on lipid droplet-associated proteins. This realization has made the study of proteins, such as PAT family proteins, caveolins, and several others that are targeted to lipid droplets, an intriguing and rapidly developing area of intensive inquiry. Our existing understanding of the structure, protein organization, and biogenesis of the lipid droplet has relied heavily on microscopical techniques that lack resolution and the ability to preserve native cellular and protein composition. Freeze-fracture replica immunogold labeling overcomes these disadvantages and can be used to define at high resolution the precise location of lipid droplet-associated proteins. In this paper illustrative examples of how freeze-fracture immunocytochemistry has contributed to our understanding of the spatial organization in the membrane plane and function of PAT family proteins and caveolin-1 are presented. By revisiting the lipid droplet with freeze-fracture immunocytochemistry, new perspectives have emerged which challenge prevailing concepts of lipid droplet biology and may hopefully provide a timely impulse for many ongoing studies.
脂滴不仅是高脂血症应激时细胞内多余脂质的储存库,还是参与细胞内稳态的具有代谢活性的细胞器。我们对脂滴代谢功能的认识源于对脂滴相关蛋白的研究。这一认识使得对诸如PAT家族蛋白、小窝蛋白及其他靶向脂滴的蛋白的研究成为一个引人关注且迅速发展的深入探究领域。我们目前对脂滴结构、蛋白质组织及生物发生的理解在很大程度上依赖于缺乏分辨率且无法保留天然细胞和蛋白质组成的显微镜技术。冷冻断裂复型免疫金标记克服了这些缺点,可用于高分辨率地确定脂滴相关蛋白的精确位置。本文展示了冷冻断裂免疫细胞化学如何有助于我们理解PAT家族蛋白和小窝蛋白-1在膜平面的空间组织及功能的示例。通过用冷冻断裂免疫细胞化学重新审视脂滴,出现了新的观点,这些观点挑战了脂滴生物学的主流概念,并有望为许多正在进行的研究提供及时的推动。