Carmena M J, Hueso C, Solano R M, Prieto J C
Departamento de Bioquímica y Biología Molecular, Universidad de Alcalá, Alcalá de Henares Madrid, Spain.
Peptides. 1992 Nov-Dec;13(6):1117-22. doi: 10.1016/0196-9781(92)90016-v.
The effects of alterations in the membrane lipid environment on vasoactive intestinal peptide (VIP) binding and VIP-stimulated cyclic AMP accumulation have been analyzed by arachidonic acid treatment of prostatic epithelial cells from rats at puberty and maturity, two critical developmental periods with characteristic lipidic and androgenic statuses. Treating cells with 0.1 mM arachidonic acid for 15 min at 37 degrees C increased the affinity of VIP receptors and the potency of the neuropeptide (up to five times) in the formation of cyclic AMP at maturity, but not at puberty. The average plasma membrane fluidity (as measured by fluorescence polarization of diphenylhexatriene) remained unmodified after arachidonic acid treatment of cells. The modifications observed in mature rats were specific for the VIP receptor/effector system, since cyclic AMP stimulation by isoproterenol or forskolin was not affected by cell treatment with arachidonic acid. These results are compatible with the existence of a particular lipidic microdomain surrounding the VIP receptor in the cell membrane that would be altered by exposure to arachidonic acid (either directly or through conversion of arachidonic acid to its metabolites, as suggested by experiments on inhibition of the arachidonic acid cascade). This would make it possible for the activation of protein kinase C to phosphorylate VIP receptors in cells from mature rats, but not in those from pubertal animals with a very different membrane lipid composition (as suggested by the corresponding values of membrane fluidity and transition temperature).
通过用花生四烯酸处理青春期和成熟期大鼠的前列腺上皮细胞,分析了膜脂环境改变对血管活性肠肽(VIP)结合及VIP刺激的环磷酸腺苷(cAMP)积累的影响,青春期和成熟期是具有特征性脂质和雄激素状态的两个关键发育时期。在37℃下用0.1 mM花生四烯酸处理细胞15分钟,可增加成熟期而非青春期VIP受体的亲和力以及该神经肽在形成cAMP方面的效力(高达五倍)。用花生四烯酸处理细胞后,平均质膜流动性(通过二苯基己三烯的荧光偏振测量)未发生改变。在成熟大鼠中观察到的这些改变对VIP受体/效应系统具有特异性,因为异丙肾上腺素或福斯可林刺激的cAMP不受花生四烯酸处理细胞的影响。这些结果与细胞膜中围绕VIP受体存在特定脂质微区的观点一致,该微区会因暴露于花生四烯酸(直接或通过花生四烯酸转化为其代谢产物,如花生四烯酸级联抑制实验所提示)而改变。这使得蛋白激酶C的激活有可能使成熟大鼠细胞中的VIP受体磷酸化,但不能使青春期动物细胞中的VIP受体磷酸化,因为青春期动物细胞具有非常不同的膜脂组成(如膜流动性和转变温度的相应值所提示)。