Department of Biochemistry and Molecular Medicine and UC Davis Comprehensive Cancer Center, University of California Davis School of Medicine, Sacramento, CA, USA.
West Coast Metabolomics Center, UC Davis Genome Center, University of California Davis, Davis, CA, USA.
Cancer Lett. 2023 Mar 31;557:216090. doi: 10.1016/j.canlet.2023.216090. Epub 2023 Feb 10.
Bis(monoacylglycero)phosphates (BMPs), a class of lipids highly enriched within endolysosomal organelles, are key components of the lysosomal intraluminal vesicles responsible for activating sphingolipid catabolic enzymes. While BMPs are understudied relative to other phospholipids, recent reports associate BMP dysregulation with a variety of pathological states including neurodegenerative diseases and lysosomal storage disorders. Since the dramatic lysosomal remodeling characteristic of cellular transformation could impact BMP abundance and function, we employed untargeted lipidomics approaches to identify and quantify BMP species in several in vitro and in vivo models of breast cancer and comparative non-transformed cells and tissues. We observed lower BMP levels within transformed cells relative to normal cells, and consistent enrichment of docosahexaenoic acid (22:6) fatty acyl chain-containing BMP species in both human- and mouse-derived mammary tumorigenesis models. Our functional analysis points to a working model whereby 22:6 BMPs serve as reactive oxygen species scavengers in tumor cells, protecting lysosomes from oxidant-induced lysosomal membrane permeabilization. Our findings suggest that breast tumor cells might divert polyunsaturated fatty acids into BMP lipids as part of an adaptive response to protect their lysosomes from elevated reactive oxygen species levels, and raise the possibility that BMP-mediated lysosomal protection is a tumor-specific vulnerability that may be exploited therapeutically.
双(单酰基甘油)磷酸酯(BMPs)是一类在溶酶体细胞器中高度富集的脂质,是负责激活鞘脂代谢酶的溶酶体内腔囊泡的关键组成部分。虽然与其他磷脂相比,BMP 的研究相对较少,但最近的报告将 BMP 失调与多种病理状态相关联,包括神经退行性疾病和溶酶体贮积症。由于细胞转化特征性的溶酶体重塑可能会影响 BMP 的丰度和功能,我们采用非靶向脂质组学方法,在几种乳腺癌的体外和体内模型以及比较的非转化细胞和组织中鉴定和定量 BMP 种类。我们观察到转化细胞中的 BMP 水平相对正常细胞较低,并且在人源和鼠源乳腺肿瘤发生模型中均存在二十二碳六烯酸(22:6)脂肪酸酰基链的 BMP 种类的一致富集。我们的功能分析表明了一个工作模型,即 22:6 BMP 作为肿瘤细胞中的活性氧(ROS)清除剂,保护溶酶体免受氧化剂诱导的溶酶体膜通透性增加。我们的发现表明,乳腺癌细胞可能将多不饱和脂肪酸转移到 BMP 脂质中,作为保护其溶酶体免受高水平活性氧的适应性反应的一部分,并提出了 BMP 介导的溶酶体保护可能是一种肿瘤特异性脆弱性,可以被治疗性地利用的可能性。