A. B. Hancock Jr. Memorial Laboratory for Cancer Research, Departments of Chemistry, Vanderbilt University School of Medicine, Nashville, TN 37232-0146.
Departments of Biochemistry, Vanderbilt University School of Medicine, Nashville, TN 37232-0146.
J Lipid Res. 2019 Feb;60(2):360-374. doi: 10.1194/jlr.M087890. Epub 2018 Nov 27.
Lysophospholipids (LysoPLs) are bioactive lipid species involved in cellular signaling processes and the regulation of cell membrane structure. LysoPLs are metabolized through the action of lysophospholipases, including lysophospholipase A1 (LYPLA1) and lysophospholipase A2 (LYPLA2). A new X-ray crystal structure of LYPLA2 compared with a previously published structure of LYPLA1 demonstrated near-identical folding of the two enzymes; however, LYPLA1 and LYPLA2 have displayed distinct substrate specificities in recombinant enzyme assays. To determine how these in vitro substrate preferences translate into a relevant cellular setting and better understand the enzymes' role in LysoPL metabolism, CRISPR-Cas9 technology was utilized to generate stable KOs of and/or in Neuro2a cells. Using these cellular models in combination with a targeted lipidomics approach, LysoPL levels were quantified and compared between cell lines to determine the effect of losing lysophospholipase activity on lipid metabolism. This work suggests that LYPLA1 and LYPLA2 are each able to account for the loss of the other to maintain lipid homeostasis in cells; however, when both are deleted, LysoPL levels are dramatically increased, causing phenotypic and morphological changes to the cells.
溶血磷脂(LysoPLs)是参与细胞信号转导过程和细胞膜结构调节的生物活性脂质种类。LysoPLs 通过溶血磷脂酶的作用代谢,包括溶血磷脂酶 A1(LYPLA1)和溶血磷脂酶 A2(LYPLA2)。与之前发表的 LYPLA1 结构相比,LYPLA2 的新 X 射线晶体结构显示两种酶的折叠几乎相同;然而,在重组酶测定中,LYPLA1 和 LYPLA2 表现出明显不同的底物特异性。为了确定这些体外底物偏好如何转化为相关的细胞环境,并更好地了解酶在 LysoPL 代谢中的作用,利用 CRISPR-Cas9 技术在 Neuro2a 细胞中生成 和/或 的稳定 KO。使用这些细胞模型与靶向脂质组学方法相结合,定量比较细胞系之间的 LysoPL 水平,以确定失去溶血磷脂酶活性对脂质代谢的影响。这项工作表明,LYPLA1 和 LYPLA2 各自都能够弥补另一个的缺失,以维持细胞中的脂质平衡;然而,当两者都被删除时,LysoPL 水平会显著增加,导致细胞出现表型和形态变化。