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Development and maturation of central nervous system myelin: Comparison of immunohistochemical localization of proteolipid protein and basic protein in myelin and oligodendrocytes

机译:中枢神经系统髓磷脂的发育和成熟:髓磷脂和少突胶质细胞中蛋白脂蛋白和碱性蛋白的免疫组织化学定位比较

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摘要

The immunohistochemical localization of two myelin specific proteins—basic protein (BP) and proteolipid protein (PLP)—was compared during the process of myelination. Although both proteins were present in oligodendrocytes, (i) neither protein was observed in oligodendrocytes not already closely associated with nerve fibers exhibiting a fluorescent coating; (ii) in any discrete anatomical area oligodendrocytes were positive for BP before PLP was visible; and (iii) as myelination progressed, immunoreactivity for BP in oligodendrocytes appeared to decrease and simultaneously PLP immunofluorescence became visible in this cell type. During the period of active myelination, fibers exhibited a distinct varicose appearance. As myelination progressed, the myelin sheath increased in thickness and these varicosities became less prominent, eventually completely disappearing. Therefore, the nature and the appearance of varicosities can be used as an index of the relative stage of maturation of myelin in an individual fiber. In general, PLP appeared in fibers at a later stage of maturation than did BP based on the above criteria. However, in a relatively small number of fine fibers PLP was observed at a very early stage. In fully mature myelin, very large fibers were frequently more intensely fluorescent for BP than PLP, whereas fine myelinated fibers were more intensely stained for PLP. These observations are consistent with the following interpretations. (i) Substantial differentiation of oligodendrocytes occurs prior to appearance of either of these proteins by immunofluorescence. (ii) BP is added to the myelin sheath prior to PLP and there appears to be a shift in priority of synthesis from BP to PLP in individual oligodendrocytes during the process of myelination. (iii) Very small fibers often contain low concentrations of BP relative to PLP, and conversely, very large fibers may contain a high concentration of BP relative to PLP. Thus, the relative concentration of these proteins in myelin appears not to be constant but may vary as a function of the size of the myelinated fiber.
机译:在髓鞘化过程中比较了两种髓鞘特异性蛋白(碱性蛋白(BP)和蛋白脂蛋白(PLP))的免疫组织化学定位。尽管两种蛋白质都存在于少突胶质细胞中,(i)在尚未与显示荧光涂层的神经纤维紧密相关的少突胶质细胞中均未观察到蛋白质; (ii)在可见的PLP之前,在任何不连续的解剖区域中,少突胶质细胞的BP均为阳性; (iii)随着髓鞘化的进行,少突胶质细胞中BP的免疫反应性似乎降低,同时在这种细胞类型中可见PLP免疫荧光。在活跃的髓鞘形成期间,纤维表现出明显的静脉曲张外观。随着髓鞘化的进行,髓鞘的厚度增加,这些静脉曲张变得不太明显,最终完全消失。因此,静脉曲张的性质和外观可以用作单个纤维中髓磷脂成熟相对阶段的指标。通常,基于上述标准,PLP出现在纤维成熟的后期比BP出现的晚。但是,在很早的阶段就观察到了相对少量的细纤维。在完全成熟的髓磷脂中,非常大的纤维通常比PLP对BP的荧光更强,而细髓的纤维对PLP的染色更强。这些观察结果与以下解释一致。 (i)少突胶质细胞的实质性分化发生在通过免疫荧光出现这些蛋白质中的任何一种之前。 (ii)在PLP之前将BP添加到髓鞘中,并且在髓鞘形成过程中单个少突胶质细胞的合成优先级似乎从BP转变为PLP。 (iii)相对于PLP,非常小的纤维通常含有低浓度的BP,相反,相对于PLP,非常大的纤维可能含有高浓度的BP。因此,这些蛋白质在髓磷脂中的相对浓度似乎不是恒定的,而是可以根据髓鞘化纤维的大小而变化。

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