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神经组织的脂质:组成与代谢

Lipids of nervous tissue: composition and metabolism.

作者信息

Sastry P S

出版信息

Prog Lipid Res. 1985;24(2):69-176. doi: 10.1016/0163-7827(85)90011-6.

Abstract

As indicated in the Introduction, the many significant developments in the recent past in our knowledge of the lipids of the nervous system have been collated in this article. That there is a sustained interest in this field is evident from the rather long bibliography which is itself selective. Obviously, it is not possible to summarize a review in which the chemistry, distribution and metabolism of a great variety of lipids have been discussed. However, from the progress of research, some general conclusions may be drawn. The period of discovery of new lipids in the nervous system appears to be over. All the major lipid components have been discovered and a great deal is now known about their structure and metabolism. Analytical data on the lipid composition of the CNS are available for a number of species and such data on the major areas of the brain are also at hand but information on the various subregions is meagre. Such investigations may yet provide clues to the role of lipids in brain function. Compared to CNS, information on PNS is less adequate. Further research on PNS would be worthwhile as it is amenable for experimental manipulation and complex mechanisms such as myelination can be investigated in this tissue. There are reports correlating lipid constituents with the increased complexity in the organization of the nervous system during evolution. This line of investigation may prove useful. The basic aim of research on the lipids of the nervous tissue is to unravel their functional significance. Most of the hydrophobic moieties of the nervous tissue lipids are comprised of very long chain, highly unsaturated and in some cases hydroxylated residues, and recent studies have shown that each lipid class contains characteristic molecular species. Their contribution to the properties of neural membranes such as excitability remains to be elucidated. Similarly, a large proportion of the phospholipid molecules in the myelin membrane are ethanolamine plasmalogens and their importance in this membrane is not known. It is firmly established that phosphatidylinositol and possibly polyphosphoinositides are involved with events at the synapse during impulse propagation, but their precise role in molecular terms is not clear. Gangliosides, with their structural complexity and amphipathic nature, have been implicated in a number of biological events which include cellular recognition and acting as adjuncts at receptor sites. More recently, growth promoting and neuritogenic functions have been ascribed to gangliosides. These interesting properties of gangliosides wIll undoubtedly attract greater attention in the future.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

如引言中所述,本文整理了近期我们在神经系统脂质知识方面取得的许多重大进展。从这份篇幅颇长且经过筛选的参考文献中可以明显看出,该领域一直备受关注。显然,要总结一篇讨论了多种脂质的化学、分布和代谢的综述是不可能的。然而,从研究进展中可以得出一些一般性结论。在神经系统中发现新脂质的阶段似乎已经结束。所有主要的脂质成分都已被发现,并且现在对它们的结构和代谢也有了很多了解。关于许多物种中枢神经系统脂质组成的分析数据已经可得,关于大脑主要区域的此类数据也已具备,但关于各个亚区域的信息却很匮乏。此类研究可能仍会为脂质在脑功能中的作用提供线索。与中枢神经系统相比,关于外周神经系统的信息不够充分。对外周神经系统进行进一步研究是值得的,因为它适合进行实验操作,并且可以在该组织中研究诸如髓鞘形成等复杂机制。有报告将脂质成分与进化过程中神经系统组织复杂性的增加联系起来。这一研究方向可能会被证明是有用的。对神经组织脂质进行研究的基本目的是揭示它们的功能意义。神经组织脂质的大多数疏水部分由非常长链、高度不饱和且在某些情况下为羟基化的残基组成,最近的研究表明,每种脂质类别都包含特征性的分子种类。它们对神经膜特性(如兴奋性)的贡献仍有待阐明。同样,髓鞘膜中很大一部分磷脂分子是乙醇胺缩醛磷脂,它们在这种膜中的重要性尚不清楚。已经确定磷脂酰肌醇以及可能的多磷酸肌醇在冲动传播过程中与突触处的事件有关,但它们在分子层面的确切作用尚不清楚。神经节苷脂具有结构复杂性和两亲性,与许多生物事件有关,包括细胞识别以及在受体位点起辅助作用。最近,神经节苷脂还被赋予了促进生长和诱导神经突生长的功能。神经节苷脂的这些有趣特性无疑将在未来吸引更多关注。(摘要截断于400字)

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