Arai Yoko, Sampaio Julio L, Wilsch-Bräuninger Michaela, Ettinger Andreas W, Haffner Christiane, Huttner Wieland B
Max Planck Institute of Molecular Cell Biology and Genetics Dresden, Germany.
Front Cell Neurosci. 2015 Aug 28;9:325. doi: 10.3389/fncel.2015.00325. eCollection 2015.
Midbody release from proliferative neural progenitor cells is tightly associated with the neuronal commitment of neural progenitor cells during the progression of neurogenesis in the mammalian cerebral cortex. While the central portion of the midbody, a cytoplasmic bridge between nascent daughter cells, is engulfed by one of the daughter cell by most cells in vitro, it is shown to be released into the extracellular cerebrospinal fluid (CF) in vivo in mouse embryos. Several proteins have been involved in midbody release; however, few studies have addressed the participation of the plasma membrane's lipids in this process. Here, we show by Shotgun Lipidomic analysis that phosphatydylserine (PS), among other lipids, is enriched in the released midbodies compared to lipoparticles and cellular membranes, both collected from the CF of the developing mouse embryos. Moreover, the developing mouse embryo neural progenitor cells released two distinct types of midbodies carrying either internalized PS or externalized PS on their membrane. This strongly suggests that phagocytosis and an alternative fate of released midbodies exists. HeLa cells, which are known to mainly engulf the midbody show almost no PS exposure, if any, on the outer leaflet of the midbody membrane. These results point toward that PS exposure might be involved in the selection of recipients of released midbodies, either to be engulfed by daughter cells or phagocytosed by non-daughter cells or another cell type in the developing cerebral cortex.
在哺乳动物大脑皮层神经发生过程中,增殖性神经祖细胞的中体释放与神经祖细胞向神经元的分化紧密相关。虽然中体的中央部分(新生子细胞之间的细胞质桥)在体外大多数细胞中会被其中一个子细胞吞噬,但在小鼠胚胎体内,它会被释放到细胞外脑脊液(CF)中。已有几种蛋白质参与中体释放;然而,很少有研究探讨质膜脂质在这一过程中的作用。在这里,我们通过鸟枪法脂质组学分析表明,与从发育中小鼠胚胎的CF中收集的脂质颗粒和细胞膜相比,磷脂酰丝氨酸(PS)等脂质在释放的中体中含量丰富。此外,发育中小鼠胚胎神经祖细胞释放出两种不同类型的中体,其膜上携带内化的PS或外化的PS。这强烈表明存在吞噬作用以及释放的中体的另一种命运。已知主要吞噬中体的HeLa细胞在中体膜的外小叶上几乎没有PS暴露(如果有的话)。这些结果表明,PS暴露可能参与了释放的中体接受者的选择,即被子细胞吞噬或被发育中的大脑皮层中的非子细胞或其他细胞类型吞噬。