Herman R, Weymouth L, Penman S
J Cell Biol. 1978 Sep;78(3):663-74. doi: 10.1083/jcb.78.3.663.
The heterogeneous nuclear RNA-protein (hnRNP) fibers in HeLa cell nuclei are visualized by a nuclear subfractionation technique which removes 96% of the chromatin in a single step and 99% in a two-step elution but leaves the bulk of the hnRNA complexed with the remnant nuclear structure or lamina. Both steady-state and newly synthesized (approximately 15-s label) hnRNA are associated with the remnant nuclei to about the same extent. This association does not appear to depend on the presence of chromatin and exists in addition to any possible association of hnRNP with chromatin itself. Electron microscopy of partially purified nuclear hnRNA complexes shows that the hnRNP fibers form a ribonucleoprotein network throughout the nucleus, whose integrity is dependent on the RNA. Autoradiography confirms that hnRNA is a constituent of the fibers. The RNA network visualized in these remnant nuclei may be similar to RNA networks seen in intact cells. The hnRNA molecules appear to be associated with the nuclear lamina, at least in part, by unusual hnRNA sequences. More than half of the recovered poly(A) and double-stranded hnRNA regions remains associated with the nuclear structures or the laminae after digestion with RNase and elution with 0.4 M ammonium sulfate. In contrast, the majority of oligo(A), another ribonuclease resistant segment, is released together with most of the partially digested but still acid-precipitable single-stranded hnRNA and the hnRNP proteins not eluted by the ammonium sulfate alone. These special RNA regions appear to be tightly bound and may serve as points of attachment of the hnRNA to nuclear substructures. It is suggested that hnRNA metabolism does not take place in a soluble nucleoplasmic compartment but on organized structures firmly bound to the nuclear structure.
通过一种细胞核分级分离技术可以观察到HeLa细胞核中的不均一核RNA-蛋白质(hnRNP)纤维,该技术能在一步洗脱中去除96%的染色质,两步洗脱可去除99%的染色质,但大部分hnRNA仍与残余的核结构或核纤层复合。稳态hnRNA和新合成的(约15秒标记)hnRNA与残余细胞核的结合程度大致相同。这种结合似乎不依赖于染色质的存在,并且除了hnRNP与染色质本身可能存在的任何结合之外还存在。对部分纯化的细胞核hnRNA复合物进行电子显微镜观察表明,hnRNP纤维在整个细胞核中形成核糖核蛋白网络,其完整性取决于RNA。放射自显影证实hnRNA是纤维的组成成分。在这些残余细胞核中观察到的RNA网络可能与完整细胞中看到的RNA网络相似。hnRNA分子似乎至少部分地通过异常的hnRNA序列与核纤层相关联。在用核糖核酸酶消化并用0.4M硫酸铵洗脱后,超过一半回收的聚腺苷酸(polyA)和双链hnRNA区域仍与核结构或核纤层相关联。相比之下,大多数寡聚腺苷酸(oligoA),另一种抗核糖核酸酶的片段,与大部分部分消化但仍可酸沉淀的单链hnRNA以及未被硫酸铵单独洗脱的hnRNP蛋白一起释放。这些特殊的RNA区域似乎紧密结合,可能作为hnRNA与核亚结构的附着点。有人提出,hnRNA代谢并非发生在可溶性核质区室中,而是发生在与核结构紧密结合的有组织的结构上。