a Precision & Systems Biomedicine Laboratory , QIMR Berghofer Medical Research Institute , Brisbane , Australia.
b Faculty of Medicine , The University of Queensland , Brisbane , Australia.
Expert Rev Proteomics. 2018 Dec;15(12):1053-1063. doi: 10.1080/14789450.2018.1544895. Epub 2018 Nov 13.
Phase separation as a biophysical principle drives the formation of liquid-ordered 'lipid raft' membrane microdomains in cellular membranes, including organelles. Given the critical role of cellular membranes in both compartmentalization and signaling, clarifying the roles of membrane microdomains and their mutual regulation of/by membrane proteins is important in understanding the fundamentals of biology, and has implications for health. Areas covered: This article will consider the evidence for lateral membrane phase separation in model membranes and organellar membranes, critically evaluate the current methods for lipid raft proteomics and discuss the biomedical implications of lipid rafts. Expert commentary: Lipid raft homeostasis is perturbed in numerous chronic conditions; hence, understanding the precise roles and regulation of the lipid raft proteome is important for health and medicine. The current technical challenges in performing lipid raft proteomics can be overcome through well-controlled experimental design and careful interpretation. Together with technical developments in mass spectrometry and microscopy, our understanding of lipid raft biology and function will improve through recognition of the similarity between organelle and plasma membrane lipid rafts and considered integration of published lipid raft proteomics data.
相分离作为一种物理原理,驱动了细胞膜中包括细胞器在内的液体有序“脂筏”膜微区的形成。鉴于细胞膜在分隔和信号传递方面的关键作用,阐明膜微区的作用及其对/由膜蛋白的相互调节,对于理解生物学的基本原理以及对健康的影响都很重要。涵盖领域:本文将考虑在模型膜和细胞器膜中侧向膜相分离的证据,批判性地评估当前的脂筏蛋白质组学方法,并讨论脂筏的生物医学意义。专家评论:脂筏的动态平衡在许多慢性疾病中受到干扰;因此,了解脂筏蛋白质组的确切作用和调节对于健康和医学非常重要。通过精心设计的实验和仔细的解释,可以克服当前进行脂筏蛋白质组学研究的技术挑战。随着质谱和显微镜技术的发展,通过认识到细胞器和质膜脂筏之间的相似性,并考虑整合已发表的脂筏蛋白质组学数据,我们对脂筏生物学和功能的理解将会得到改善。