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RNA颗粒在活神经元中的转运。

Translocation of RNA granules in living neurons.

作者信息

Knowles R B, Sabry J H, Martone M E, Deerinck T J, Ellisman M H, Bassell G J, Kosik K S

机构信息

Center for Neurological Diseases, Brigham and Women's Hospital, Boston, Massachusetts 02115, USA.

出版信息

J Neurosci. 1996 Dec 15;16(24):7812-20. doi: 10.1523/JNEUROSCI.16-24-07812.1996.

Abstract

Sorting of RNAs to specific subcellular loci occurs in diverse settings from fly oocytes to mammalian neurons. Using the membrane-permeable nucleic acid stain SYTO 14, we directly visualized the translocation of endogenous RNA in living cells. Labeled RNA was distributed nonrandomly as discrete granules in neuronal processes. The labeled granules colocalized with poly(A+) mRNA, with the 60S ribosomal subunit, and with elongation factor 1alpha, suggesting that granules represent a translational unit. A subset of labeled granules colocalized with beta-actin mRNA. Correlative light and electron microscopy indicated that the fluorescent granules corresponded to clusters of ribosomes at the ultrastructural level. Poststaining of sections with heavy metals confirmed the presence of ribosomes within these granules. In living neurons, a subpopulation of RNA granules was motile during the observation period. They moved at an average rate of 0.1 microm/sec. In young cultures their movements were exclusively anterograde, but after 7 d in culture, one-half of the motile granules moved in the retrograde direction. Granules in neurites were delocalized after treatment with microtubule-disrupting drugs. These results raise the possibility of a cellular trafficking system for the targeting of RNA in neurons.

摘要

从果蝇卵母细胞到哺乳动物神经元,RNA分拣至特定亚细胞位点的现象存在于多种环境中。使用可透过细胞膜的核酸染料SYTO 14,我们直接观察到了活细胞内源性RNA的转运。标记的RNA以离散颗粒的形式非随机分布于神经突中。标记颗粒与多聚腺苷酸(poly(A+))mRNA、60S核糖体亚基以及延伸因子1α共定位,这表明颗粒代表一个翻译单元。一部分标记颗粒与β-肌动蛋白mRNA共定位。相关光学和电子显微镜观察表明,荧光颗粒在超微结构水平上对应于核糖体簇。用重金属对切片进行复染证实了这些颗粒内存在核糖体。在活神经元中,一部分RNA颗粒在观察期内具有运动性。它们的平均移动速度为0.1微米/秒。在年轻培养物中,它们的移动完全是顺行的,但在培养7天后,一半的运动颗粒会逆行移动。用微管破坏药物处理后,神经突中的颗粒会发生移位。这些结果提示了神经元中存在一种用于RNA靶向的细胞运输系统的可能性。

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