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从中枢和外周神经系统组织分离出的髓磷脂中,膜相互作用发生了改变。

Membrane interactions are altered in myelin isolated from central and peripheral nervous system tissues.

作者信息

Karthigasan J, Kirschner D A

机构信息

Department of Neuroscience, Children's Hospital, Boston, MA 02115.

出版信息

J Neurochem. 1988 Jul;51(1):228-36. doi: 10.1111/j.1471-4159.1988.tb04860.x.

Abstract

Isolated myelin has been used for determinations of membrane surface charge density and topographical mapping of components in the membrane. To determine how similar such myelin is to myelin of intact tissue, we have used x-ray diffraction to compare their intermembrane interactions. The interactions were monitored by measuring the myelin period in samples treated with distilled water, buffered saline at pH 4-9 and ionic strength 0.06-0.18, and saline containing HgCl2 or triethyl tin sulfate. Myelin was isolated from whole brains and sciatic nerves of mice by conventional methods involving sucrose gradient centrifugation and osmotic shock. Consistent with previous findings, electron microscopy showed that the multilamellar morphology, staining, and repeat periods of isolated myelin were essentially like those of intact myelin; however, the membrane stacks were less extensive than those in whole tissue. X-ray diffraction revealed that isolated CNS myelin was like intact myelin in showing reversible compaction in acidic media and in distilled water. However, unlike the myelin in whole tissue, isolated CNS myelin did not swell in hypotonic or alkaline media, or in the presence of HgCl2-saline or triethyl tin. The altered membrane interactions could result from an increase in adhesiveness of the apposed membrane surfaces. Reorganization of proteolipid protein and/or a reduction of surface charge could account for the change in surface properties of isolated CNS myelin. Isolated PNS myelin, like the membranes in whole tissue, showed both compaction and swelling; however, the membrane pairs were disordered in the swollen structure. This irregular membrane swelling could result from charge variation in the extracellular surfaces.

摘要

分离出的髓磷脂已被用于测定膜表面电荷密度以及膜中成分的拓扑图谱绘制。为了确定这种分离出的髓磷脂与完整组织中的髓磷脂有多相似,我们使用X射线衍射来比较它们的膜间相互作用。通过测量用蒸馏水、pH值为4 - 9且离子强度为0.06 - 0.18的缓冲盐水以及含有氯化汞或硫酸三乙锡的盐水处理过的样品中的髓磷脂周期来监测这种相互作用。通过涉及蔗糖梯度离心和渗透压休克的传统方法从小鼠的全脑和坐骨神经中分离出髓磷脂。与先前的研究结果一致,电子显微镜显示分离出的髓磷脂的多层形态、染色和重复周期与完整髓磷脂基本相似;然而,膜堆叠不如全组织中的广泛。X射线衍射显示,分离出的中枢神经系统髓磷脂与完整髓磷脂相似,在酸性介质和蒸馏水中表现出可逆压缩。然而,与全组织中的髓磷脂不同,分离出的中枢神经系统髓磷脂在低渗或碱性介质中,或在存在氯化汞 - 盐水或三乙锡的情况下不会肿胀。膜间相互作用的改变可能是由于相邻膜表面粘附性增加所致。蛋白脂蛋白的重组和/或表面电荷的减少可能解释了分离出的中枢神经系统髓磷脂表面性质的变化。分离出的周围神经系统髓磷脂与全组织中的膜一样,既表现出压缩又表现出肿胀;然而,在肿胀结构中膜对是无序的。这种不规则的膜肿胀可能是由于细胞外表面电荷变化引起的。

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