Arakane F, Fukunaga K, Araki S, Abe S, Satake M, Miyazaki K, Okamura H, Miyamoto E
Department of Pharmacology, Kumamoto University School of Medicine, Japan.
J Neurochem. 1994 Jan;62(1):86-93. doi: 10.1046/j.1471-4159.1994.62010086.x.
Cyclic AMP (cAMP)-dependent protein kinase (cAMP-kinase) partially purified from the membrane fractions of rat brains was stimulated by novel phosphonoglycosphingolipids (glycolipids) derived from the skin and nerve fibers of Aplysia kurodai. Among various glycolipids tested, a major glycolipid from the skin, 3-O-MeGal beta 1-->3GalNAc alpha 1-->36'-O-(2-aminoethylphosphonyl)Gal alpha 1-->2Glc beta 1-->4Glc beta 1-->1ceramide (SGL-II), was most potent, giving half-maximal activation at 32.2 microM. Activation of cAMP-kinase was maximal with 250 microM SGL-II using kemptide as substrate. The effect of SGL-II was additive on kinase activity at submaximal concentrations of cAMP. The kinase activity activated with SGL-II was inhibited by the addition of protein kinase inhibitor peptide, a specific peptide inhibitor for cAMP-kinase. Its inhibitory pattern was similar to that for the catalytic subunit. Of the various substrates tested, the glycolipid-stimulated cAMP-kinase could phosphorylate microtubule-associated protein 2, synapsin I, and myelin basic protein but not histone H1 and casein. The regulatory subunit strongly inhibited the activity of purified catalytic subunit of cAMP-kinase. This inhibition was reversed by addition of SGL-II, as observed for cAMP. SGL-II was capable of partially dissociating cAMP-kinase, which was observed by gel filtration column chromatography. However, the binding activity of cAMP to the holoenzyme was not inhibited with SGL-II. These results demonstrate that the glycolipids can directly activate cAMP-kinase in a manner similar, but not identical, to that of cAMP.
从大鼠脑细胞膜组分中部分纯化得到的环磷酸腺苷(cAMP)依赖性蛋白激酶(cAMP激酶),受到源自日本黑兔皮肤和神经纤维的新型膦酰糖鞘脂(糖脂)的刺激。在测试的各种糖脂中,一种来自皮肤的主要糖脂,3-O-甲基半乳糖β1→3N-乙酰半乳糖胺α1→36'-O-(2-氨基乙基膦酰基)半乳糖α1→2葡萄糖β1→4葡萄糖β1→1神经酰胺(SGL-II),活性最强,在32.2微摩尔浓度时产生半数最大激活作用。以kemptide为底物时,250微摩尔SGL-II可使cAMP激酶的激活作用达到最大值。在低于最大浓度的cAMP条件下,SGL-II对激酶活性的影响具有加和性。添加蛋白激酶抑制剂肽(一种cAMP激酶的特异性肽抑制剂)可抑制SGL-II激活的激酶活性。其抑制模式与对催化亚基的抑制模式相似。在测试的各种底物中,糖脂刺激的cAMP激酶可使微管相关蛋白2、突触素I和髓鞘碱性蛋白磷酸化,但不能使组蛋白H1和酪蛋白磷酸化。调节亚基强烈抑制cAMP激酶纯化催化亚基的活性。如对cAMP的观察结果一样,添加SGL-II可逆转这种抑制作用。通过凝胶过滤柱色谱法观察到,SGL-II能够使cAMP激酶部分解离。然而,SGL-II并未抑制cAMP与全酶的结合活性。这些结果表明,糖脂能够以与cAMP相似但不完全相同的方式直接激活cAMP激酶。