Garwood M M, Gilbert W R, Agrawal H C
Neurochem Res. 1983 May;8(5):649-59. doi: 10.1007/BF00964704.
The acylation of proteolipid protein (PLP) was examined in myelin and myelin subfractions from rat brain during the active period of myelination. Proteolipid protein and DM-20 in myelin and myelin subfractions were readily acylated in developing rat brain 22 hours after intracerebral injection of [3H]palmitic acid. No differences in the relative specific activity of PLP in myelin from 9-, 15-, and 30-day-old rat brains was observed; however, the relative specific activity of PLP in the heavy myelin subfraction tended to be higher than that in the light myelin subfraction. The acylation of PLP was confirmed by fluorography of immuno-stained cellulose nitrate sheets, clearly establishing that the acylated protein is in fact the oligodendroglial cell- and myelin-specific protein, PLP. Since PLP is acylated in the 9-day-old animal, when little compact myelin is present, it is possible that the acylation of PLP is a prerequisite for the incorporation of this protein into the myelin membrane.
在髓鞘形成的活跃期,对大鼠脑内髓鞘及髓鞘亚组分中的蛋白脂蛋白(PLP)酰化作用进行了检测。在脑内注射[3H]棕榈酸22小时后的发育中大鼠脑中,髓鞘及髓鞘亚组分中的蛋白脂蛋白和DM - 20很容易被酰化。未观察到9日龄、15日龄和30日龄大鼠脑髓鞘中PLP相对比活性的差异;然而,重髓鞘亚组分中PLP的相对比活性往往高于轻髓鞘亚组分。通过免疫染色硝酸纤维素膜的荧光自显影证实了PLP的酰化作用,明确表明酰化蛋白实际上是少突胶质细胞和髓鞘特异性蛋白PLP。由于在9日龄动物中PLP就已被酰化,而此时几乎没有致密髓鞘存在,因此PLP的酰化作用有可能是该蛋白掺入髓鞘膜的一个先决条件。