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从小鼠大脑中分离出的髓磷脂亚组分。对发育过程中的正常小鼠、震颤突变体以及三个脑区的研究。

Myelin subfractions isolated from mouse brain. Studies of normal mice during development, quaking mutants, and three brain regions.

作者信息

Sheads L D, Eby M J, Sampugna J

出版信息

J Neurobiol. 1977 Jan;8(1):67-89. doi: 10.1002/neu.480080106.

Abstract

Myelin isolated from three areas of mouse brain, from whole brain at several ages in normal mice, and from whole brain of adult quaking mutant mice was separated into seven bands and a pellet on discontinuous density gradients using 0.32, 0.45, 0.55, 0.60, 0.70, 0.75 and 0.85 M sucrose. The distribution of myelin in the subfractions was independent of homogenization and shocking conditions employed to isolate the myelin preparations, but was related to the type of myelin applied to the gradient. Compared to myelin isolated from older animals, myelin isolated from 18-24 day old mice displayed a distribution pattern with greater proportions of material banding at lesser sucrose densities. Similarly, myelin obtained from hindbrain contained proportionately more material layering at lesser sucrose densities compared to myelin isolated from cerebral cortex. Myelin subfraction patterns observed for 8-12 day old control mice and quaking mutants were unlike each other or any other myelin preparation examined. In the 18-90 days old animals, the markers studied were not uniformly distributed among the myelin subfractions. The pellet and the layer banding at the 0.75/0.85 M sucrose interface contained the highest specific concentrations of sialic acid, nucleic acid, and total adenosine triphosphatase activity. In contrast, the specific activity of 2',3'-cyclicnucleotide-3'-phosphohydrolase was lowest in the pellet as well as the three bands obtained above 0.60 M sucrose and was highest in the fraction banding at the 0.65/0.70 M sucrose interface. The results obtained were not consistent with an artifactual origin of the myelin subfractions, but instead suggested that the subfraction have physiological significance. One explanation for the different banding patterns observed between young and mature myelin may be the different amount of myelin in various brain regions during development.

摘要

从正常小鼠几个年龄段的全脑以及成年震颤突变小鼠的全脑中分离出的来自小鼠脑三个区域的髓磷脂,使用0.32、0.45、0.55、0.60、0.70、0.75和0.85M蔗糖在不连续密度梯度上分离成七条带和一个沉淀。髓磷脂在亚组分中的分布与用于分离髓磷脂制剂的匀浆和震荡条件无关,但与应用于梯度的髓磷脂类型有关。与从老年动物分离的髓磷脂相比,从18 - 24日龄小鼠分离的髓磷脂显示出一种分布模式,即在较低蔗糖密度下条带化的物质比例更大。同样,与从大脑皮层分离的髓磷脂相比,从后脑获得的髓磷脂在较低蔗糖密度下分层的物质比例相应更多。在8 - 12日龄对照小鼠和震颤突变体中观察到的髓磷脂亚组分模式彼此不同,也与所检查的任何其他髓磷脂制剂不同。在18 - 90日龄的动物中,所研究的标志物在髓磷脂亚组分中分布不均匀。在0.75 / 0.85M蔗糖界面的沉淀和层带含有最高的唾液酸、核酸和总腺苷三磷酸酶活性的比浓度。相比之下,2',3'-环核苷酸-3'-磷酸水解酶的比活性在沉淀以及0.60M蔗糖以上获得的三条带中最低,而在0.65 / 0.70M蔗糖界面条带化的组分中最高。所获得的结果与髓磷脂亚组分的人为起源不一致,而是表明亚组分具有生理意义。在年轻和成熟髓磷脂之间观察到的不同条带模式的一种解释可能是发育过程中不同脑区髓磷脂量的差异。

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