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神秘的外周核糖体结构域沿哺乳动物有髓轴突间歇性分布。

Cryptic peripheral ribosomal domains distributed intermittently along mammalian myelinated axons.

作者信息

Koenig E, Martin R, Titmus M, Sotelo-Silveira J R

机构信息

Department of Physiology and Biophysics, University at Buffalo School of Medicine, Buffalo, New York 14214, USA.

出版信息

J Neurosci. 2000 Nov 15;20(22):8390-400. doi: 10.1523/JNEUROSCI.20-22-08390.2000.

Abstract

A growing body of metabolic and molecular evidence of an endogenous protein-synthesizing machinery in the mature axon is a challenge to the prevailing dogma that the latter is dependent exclusively on slow axoplasmic transport to maintain protein mass in a steady state. However, evidence for a systematic occurrence of ribosomes in mature vertebrate axons has been lacking until recently, when restricted ribosomal domains, called "periaxoplasmic plaques," were described in goldfish CNS myelinated axons. Comparable restricted RNA/ribosomal "plaque" domains now have been identified in myelinated axons of lumbar spinal nerve roots in rabbit and rat on the basis of RNase sensitivity of YOYO-1-binding fluorescence, immunofluorescence of ribosome-specific antibodies, and ribosome phosphorus mapping by electron spectroscopic imaging (ESI). The findings were derived from examination of the axoplasm isolated from myelinated fibers as axoplasmic whole mounts and delipidated spinal nerve roots. Ribosomal periaxoplasmic plaque domains in rabbit axons were typically narrow ( approximately 2 microm), elongated ( approximately 10 microm) sites that frequently were marked by a protruding structure. The domain complexity included an apparent ribosome-binding matrix. The small size, random distribution, and variable intermittent axial spacing of plaques around the periphery of axoplasm near the axon-myelin border are likely reasons why their systematic occurrence has remained undetected in ensheathed axons. The periodic but regular incidence of ribosomal domains provides a structural basis for previous metabolic evidence of protein synthesis in myelinated axons.

摘要

越来越多关于成熟轴突中存在内源性蛋白质合成机制的代谢和分子证据,对当前盛行的教条提出了挑战,该教条认为成熟轴突仅依赖缓慢的轴浆运输来维持蛋白质质量的稳态。然而,直到最近,在金鱼中枢神经系统有髓鞘轴突中发现了被称为“轴周质斑块”的受限核糖体结构域,成熟脊椎动物轴突中核糖体系统性存在的证据才得以出现。基于YOYO-1结合荧光的核糖核酸酶敏感性、核糖体特异性抗体的免疫荧光以及电子光谱成像(ESI)的核糖体磷图谱,现已在兔和大鼠腰神经根的有髓鞘轴突中鉴定出类似的受限RNA/核糖体“斑块”结构域。这些发现来自于对从有髓鞘纤维中分离出的轴浆进行的检查,这些轴浆作为轴浆整装标本以及脱脂的脊神经根。兔轴突中的核糖体轴周质斑块结构域通常很窄(约2微米),呈细长形(约10微米),且经常有一个突出结构作为标记。该结构域的复杂性包括一个明显的核糖体结合基质。轴突-髓鞘边界附近轴浆周边斑块的小尺寸、随机分布以及可变的间歇性轴向间距,可能是其在有髓鞘轴突中系统性存在一直未被发现的原因。核糖体结构域的周期性但规律的出现为之前有髓鞘轴突中蛋白质合成的代谢证据提供了结构基础。

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