Suppr超能文献

在内质网膜中生成的1-磷酸鞘氨醇可激活储存钙的释放。

Sphingosine 1-phosphate generated in the endoplasmic reticulum membrane activates release of stored calcium.

作者信息

Ghosh T K, Bian J, Gill D L

机构信息

Department of Biological Chemistry, University of Maryland School of Medicine, Baltimore 21201.

出版信息

J Biol Chem. 1994 Sep 9;269(36):22628-35.

PMID:8077214
Abstract

Sphingosine and sphingosine derivatives induce Ca2+ release from inositol 1,4,5-trisphosphate (InsP3)-sensitive Ca2+ pools in permeabilized cells (Ghosh, T. K., Bian, J., and Gill, D. L. (1990) Science 248, 1653-1656). To further assess the mechanism of sphingoid base-mediated Ca2+ release, the effects of sphingosine and sphingosine derivatives on Ca2+ fluxes were characterized using a microsomal membrane vesicle fraction (B3) enriched in rough endoplasmic reticulum (ER) prepared from cells of the DDT1MF-2 cell smooth muscle line (Ghosh, T. K., Mullaney, J. M., Tarazi, F. I., and Gill, D. L. (1989) Nature 340, 236-239). Addition of 15 microM sphingosine to Ca2+ pump-loaded B3 vesicles induced a delayed but thereafter rapid Ca2+ release from vesicles which was dependent on the presence of ATP and was blocked by ADP. Sphingosylphosphorylcholine (SPC) released Ca2+ to the same extent (more than 80% of pumped Ca2+), but in contrast to sphingosine, there was no lag and the effect was independent of ATP or ADP. The EC50 for sphingosine and SPC in activating Ca2+ release was 1 and 3 microM, respectively. Such observations are consistent with the view that sphingosine, unlike SPC, must be modified by an ATP-requiring kinase activity located within the ER membrane. Sphingoid bases do not appear to release Ca2+ through InsP3 receptors since heparin had no effect on sphingoid base-mediated Ca2+ release. Sphingosine 1-phosphate (sph-1-P), the likely active Ca(2+)-releasing derivative of sphingosine, was synthesized by phospholipase D-catalyzed cleavage of SPC, purified, and tested for Ca(2+)-releasing activity. sph-1-P at 10 microM induced Ca2+ release from both B3 vesicles and permeabilized DDT1MF-2 cells to exactly the same extent as sphingosine. Unlike sphingosine, the effect of sph-1-P was immediate and not blocked by ADP. Using B3 membrane vesicles incubated with [gamma-32P]ATP and sphingosine under the same conditions as Ca2+ flux studies, a labeled band was detected on TLC which ran identically with authentic sph-1-P. Formation of this labeled product was prevented by removal of exogenous sphingosine and blocked by ADP. Sphingosine- but not SPC-mediated Ca2+ release was blocked by 10 mM oxalate. 10 mM oxalate also blocked the formation of 32P-labeled sph-1-P indicating that it is an inhibitor of sph-1-P formation. The studies establish that the ER membrane contains the necessary kinase to convert sphingosine to sph-1-P which functions as a powerful mediator of Ca2+ release through a non-InsP3 receptor-mediated mechanism in the same ER membrane, perhaps reflecting a novel Ca2+ signaling pathway.

摘要

鞘氨醇及其衍生物可诱导通透细胞中来自肌醇 1,4,5 -三磷酸(InsP3)敏感钙库的 Ca2+释放(戈什,T.K.,卞,J.,吉尔,D.L.(1990 年)《科学》248 卷,1653 - 1656 页)。为进一步评估鞘氨醇碱基介导的 Ca2+释放机制,利用富含糙面内质网(ER)的微粒体膜囊泡组分(B3)来表征鞘氨醇及其衍生物对 Ca2+通量的影响,该组分由 DDT1MF - 2 细胞平滑肌系的细胞制备而来(戈什,T.K.,穆拉尼,J.M.,塔拉齐,F.I.,吉尔,D.L.(1989 年)《自然》340 卷,236 - 239 页)。向加载了 Ca2+泵的 B3 囊泡中添加 15μM 鞘氨醇会诱导囊泡中 Ca2+延迟释放,但随后迅速释放,这种释放依赖于 ATP 的存在且被 ADP 阻断。鞘氨醇 - 1 - 磷酸胆碱(SPC)释放 Ca2+的程度相同(超过 80%的泵入 Ca2+),但与鞘氨醇不同的是,没有延迟,且该效应不依赖于 ATP 或 ADP。鞘氨醇和 SPC 激活 Ca2+释放的 EC50 分别为 1μM 和 3μM。这些观察结果与以下观点一致,即与 SPC 不同,鞘氨醇必须通过内质网膜内一种需要 ATP 的激酶活性进行修饰。鞘氨醇碱基似乎并非通过 InsP3 受体释放 Ca2+,因为肝素对鞘氨醇碱基介导的 Ca2+释放没有影响。鞘氨醇 - 1 - 磷酸(sph - 1 - P)是鞘氨醇可能具有活性的 Ca2+释放衍生物,通过磷脂酶 D 催化裂解 SPC 合成、纯化,并测试其 Ca2+释放活性。10μM 的 sph - 1 - P 诱导 B3 囊泡和通透的 DDT1MF - 2 细胞释放 Ca2+的程度与鞘氨醇完全相同。与鞘氨醇不同的是,sph - 1 - P 的效应是即时的且不被 ADP 阻断。在与 Ca2+通量研究相同的条件下,用[γ - 32P]ATP 和鞘氨醇孵育 B3 膜囊泡,在薄层层析(TLC)上检测到一条与 authentic sph - 1 - P 迁移相同的标记带。去除外源鞘氨醇可阻止该标记产物的形成,且被 ADP 阻断。10mM 草酸盐可阻断鞘氨醇而非 SPC 介导的 Ca2+释放。10mM 草酸盐也阻断了 32P 标记的 sph - 1 - P 的形成,表明它是 sph - 1 - P 形成的抑制剂。这些研究表明内质网膜含有将鞘氨醇转化为 sph - 1 - P 所需的激酶,sph - 1 - P 通过内质网膜中一种非 InsP3 受体介导的机制作为 Ca2+释放的强大介质发挥作用,这可能反映了一种新的 Ca2+信号通路。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验