Hisano N, Yatomi Y, Satoh K, Akimoto S, Mitsumata M, Fujino M A, Ozaki Y
Department of Laboratory Medicine, First Department of Pathology and First Department of Internal Medicine, Yamanashi Medical University, Yamanashi, Japan.
Blood. 1999 Jun 15;93(12):4293-9.
Because sphingosine (Sph) is actively incorporated into platelets and rapidly converted to sphingosine 1-phosphate (Sph-1-P), which is then released extracellularly, it is important to study the effects of Sph and Sph-1-P on endothelial cells from the viewpoint of platelet-endothelial cell interaction. In this study, we found that Sph, as well as ceramide, induces apoptosis in human umbilical vein endothelial cells (HUVECs). In contrast, Sph-1-P acts as a HUVEC survival factor; this bioactive lipid was shown to protect HUVECs from apoptosis induced by the withdrawal of growth factors and to stimulate HUVEC DNA synthesis. In metabolic studies, [3H]Sph, incorporated into HUVECs, was converted to [3H]Cer and further to [3H]sphingomyelin in a time-dependent manner, whereas [3H]Sph-1-P formation from [3H]Sph was weak and transient. These findings in HUVECs are very different from those of platelets, which possess a highly active Sph kinase but lack Sph-1-P lyase. As a result, platelets abundantly store Sph-1-P, whereas HUVECs contain much less Sph-1-P. Finally, HUVECs, in contrast to platelets, failed to release Sph-1-P extracellularly, indicating that HUVECs themselves are not able to supply the survival factor Sph-1-P, but receive it from activated platelets. Our results suggest that platelets may maintain the integrity of endothelial cells by incorporating Sph and releasing Sph-1-P.
由于鞘氨醇(Sph)可被主动摄取到血小板中并迅速转化为1-磷酸鞘氨醇(Sph-1-P),随后Sph-1-P被释放到细胞外,因此从血小板-内皮细胞相互作用的角度研究Sph和Sph-1-P对内皮细胞的影响具有重要意义。在本研究中,我们发现Sph以及神经酰胺可诱导人脐静脉内皮细胞(HUVECs)凋亡。相反,Sph-1-P作为HUVECs的存活因子;这种生物活性脂质可保护HUVECs免受因生长因子撤除诱导的凋亡,并刺激HUVECs的DNA合成。在代谢研究中,摄取到HUVECs中的[3H]Sph会随时间依赖性地转化为[3H]神经酰胺,并进一步转化为[3H]鞘磷脂,而由[3H]Sph生成[3H]Sph-1-P的过程较弱且短暂。HUVECs中的这些发现与血小板的发现截然不同,血小板具有高度活跃的鞘氨醇激酶,但缺乏Sph-1-P裂解酶。因此,血小板大量储存Sph-1-P,而HUVECs中Sph-1-P的含量则少得多。最后,与血小板不同,HUVECs无法将Sph-1-P释放到细胞外,这表明HUVECs自身无法提供存活因子Sph-1-P,而是从活化的血小板中获取。我们的结果表明,血小板可能通过摄取Sph并释放Sph-1-P来维持内皮细胞的完整性。