Kaya K, Ramesha C S, Thompson G A
J Biol Chem. 1984 Mar 25;259(6):3548-53.
When Tetrahymena pyriformis, strain NT-1, was warmed from a growth temperature of 15 degrees C to 39 degrees C, there was a rapid conversion of its sphingolipids from the nonhydroxy fatty acid-containing ceramide aminoethylphosphonate (NCAEP) predominant at low temperature to the alpha-hydroxy fatty acid-containing analog (HCAEP). The fatty acid composition of the freshly formed HCAEP strongly resembled that of the original NCAEP pool. An extensive utilization of NCAEP long chain bases for HCAEP formation was shown by prelabeling the NCAEP bases with [14C]serine. The specific radioactivities of both fatty acids and long chain bases of the two sphingolipid classes of cells prelabeled with [3H]palmitic acid at 15 degrees C and then warmed to 39 degrees C were compatible with a direct hydroxylation of the intact ceramide aminoethylphosphonate or free ceramide formed from it. Exogenously added alpha-hydroxypalmitic acid was not incorporated into the sphingolipids intact, but there was an active alpha-oxidation of alpha-hydroxy fatty acids, yielding nonhydroxy fatty acids one carbon atom shorter in length. In vitro experiments failed to demonstrate a direct hydroxylation of NCAEP, and nonhydroxy fatty acid-containing free ceramides were hydroxylated only sparingly. This inefficient hydroxylation is attributed to the rapid enzymatic hydrolysis of these substrates in vitro and to a limited availability of the added ceramides to the hydroxylating enzymes. The weight of the evidence from this study strongly favors the alpha-hydroxylation of fatty acids only when they are bound as elements of sphingolipids.
当梨形四膜虫NT - 1菌株从15℃的生长温度升温至39℃时,其鞘脂类迅速从低温时占主导的含非羟基脂肪酸的神经酰胺氨基乙基膦酸酯(NCAEP)转变为含α - 羟基脂肪酸的类似物(HCAEP)。新形成的HCAEP的脂肪酸组成与原始NCAEP库的脂肪酸组成非常相似。通过用[14C]丝氨酸预标记NCAEP碱基,表明NCAEP长链碱基被广泛用于HCAEP的形成。在15℃用[3H]棕榈酸预标记然后升温至39℃的细胞的两类鞘脂类中脂肪酸和长链碱基的比放射性与完整的神经酰胺氨基乙基膦酸酯或由其形成的游离神经酰胺的直接羟基化是一致的。外源添加的α - 羟基棕榈酸未完整掺入鞘脂类中,但α - 羟基脂肪酸存在活跃的α - 氧化作用,产生长度缩短一个碳原子的非羟基脂肪酸。体外实验未能证明NCAEP的直接羟基化,含非羟基脂肪酸的游离神经酰胺仅少量被羟基化。这种低效的羟基化归因于这些底物在体外的快速酶促水解以及添加的神经酰胺对羟基化酶的可用性有限。这项研究的证据有力地支持仅当脂肪酸作为鞘脂类的成分结合时才发生α - 羟基化。