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神经酰胺来源于神经鞘磷脂的水解诱导神经元分化,而在 PC12 细胞中,NGF 撤出后,新合成的神经酰胺和神经鞘磷脂的水解会引发细胞凋亡。

Ceramide from sphingomyelin hydrolysis induces neuronal differentiation, whereas de novo ceramide synthesis and sphingomyelin hydrolysis initiate apoptosis after NGF withdrawal in PC12 Cells.

机构信息

Department of Biology, Queens College of the City University of New York, Flushing, NY, USA.

St. Johns University, Jamaica, NY, USA.

出版信息

Cell Commun Signal. 2022 Jan 31;20(1):15. doi: 10.1186/s12964-021-00767-2.

Abstract

BACKGROUND

Ceramide, important for both neuronal differentiation and dedifferentiation, resides in several membranes, is synthesized in the endoplasmic reticulum, mitochondrial, and nuclear membranes, and can be further processed into glycosphingolipids or sphingomyelin. Ceramide may also be generated by hydrolysis of sphingomyelin by neutral or acidic sphingomyelinases in lysosomes and other membranes. Here we asked whether the differing functions of ceramide derived from different origins.

METHODS

We added NGF to PC12 cells and to TrkA cells. These latter overexpress NGF receptors and are partially activated to differentiate, whereas NGF is required for PC12 cells to differentiate. We differentiated synthesis from hydrolysis by the use of appropriate inhibitors. Ceramide and sphingomyelin were measured by radiolabeling.

RESULTS

When NGF is added, the kinetics and amounts of ceramide and sphingomyelin indicate that the ceramide comes primarily from hydrolysis but, when hydrolysis is inhibited, can also come from neosynthesis. When NGF is removed, the ceramide comes from both neosynthesis and hydrolysis.

CONCLUSION

We conclude that the function of ceramide depends heavily on its intracellular location, and that further understanding of its function will depend on resolving its location during changes of cell status. Video Abstract.

摘要

背景

神经酰胺对于神经元的分化和去分化都很重要,它存在于几种膜中,在内质网、线粒体和核膜中合成,可以进一步加工成糖脂或神经鞘磷脂。神经酰胺也可以通过溶酶体和其他膜中的中性或酸性神经鞘磷脂酶水解神经鞘磷脂而产生。在这里,我们想知道是否不同来源的神经酰胺具有不同的功能。

方法

我们向 PC12 细胞和 TrkA 细胞添加了 NGF。后者过度表达 NGF 受体,并部分被激活以分化,而 NGF 是 PC12 细胞分化所必需的。我们通过使用适当的抑制剂来区分合成和水解。通过放射性标记测量神经酰胺和神经鞘磷脂的含量。

结果

当添加 NGF 时,神经酰胺和神经鞘磷脂的动力学和数量表明神经酰胺主要来自水解,但当抑制水解时,也可以来自新合成。当去除 NGF 时,神经酰胺来自新合成和水解。

结论

我们得出结论,神经酰胺的功能在很大程度上取决于其细胞内位置,进一步了解其功能将取决于在细胞状态变化过程中确定其位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d044/8802477/4402b33fe7c1/12964_2021_767_Fig2_HTML.jpg

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