Medical Institute of Bioregulation, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Sci Rep. 2017 Mar 8;7:43936. doi: 10.1038/srep43936.
Alkenyl ether phospholipids are a major sub-class of ethanolamine- and choline-phospholipids in which a long chain fatty alcohol is attached at the sn-1 position through a vinyl ether bond. Biosynthesis of ethanolamine-containing alkenyl ether phospholipids, plasmalogens, is regulated by modulating the stability of fatty acyl-CoA reductase 1 (Far1) in a manner dependent on the level of cellular plasmalogens. However, precise molecular mechanisms underlying the regulation of plasmalogen synthesis remain poorly understood. Here we show that degradation of Far1 is accelerated by inhibiting dynamin-, Src kinase-, or flotillin-1-mediated endocytosis without increasing the cellular level of plasmalogens. By contrast, Far1 is stabilized by sequestering cholesterol with nystatin. Moreover, abrogation of the asymmetric distribution of plasmalogens in the plasma membrane by reducing the expression of CDC50A encoding a β-subunit of flippase elevates the expression level of Far1 and plasmalogen synthesis without reducing the total cellular level of plasmalogens. Together, these results support a model that plasmalogens localised in the inner leaflet of the plasma membranes are sensed for plasmalogen homeostasis in cells, thereby suggesting that plasmalogen synthesis is spatiotemporally regulated by monitoring cellular level of plasmalogens.
烯基醚磷脂是乙醇胺和胆碱磷脂的主要亚类之一,其中长链脂肪酸醇通过乙烯醚键连接到 sn-1 位置。含有乙醇胺的烯基醚磷脂,即溶血磷脂的生物合成受到脂肪酸辅酶 A 还原酶 1(Far1)稳定性的调节,这种调节方式依赖于细胞溶血磷脂的水平。然而,溶血磷脂合成调节的确切分子机制仍知之甚少。在这里,我们表明 Far1 的降解通过抑制胞质动力蛋白、Src 激酶或胞浮蛋白 1 介导的内吞作用而加速,而不会增加细胞内溶血磷脂的水平。相比之下,通过与制霉菌素结合来隔离胆固醇可以稳定 Far1。此外,通过降低编码翻转酶 β 亚基的 CDC50A 的表达来破坏质膜中溶血磷脂的不对称分布,会升高 Far1 的表达水平和溶血磷脂的合成,而不会降低总细胞溶血磷脂的水平。综上所述,这些结果支持这样一种模型,即质膜内层定位的溶血磷脂可用于细胞内的溶血磷脂稳态,这表明溶血磷脂的合成受到质膜中溶血磷脂水平的时空调节。