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Journal ArticleDOI

Organization of nucleoli and nuclear bodies in osmotically stimulated supraoptic neurons of the rat.

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TLDR
Variations in the number of nucleoli and nuclear bodies, as well as in their ultrastructural and cytochemical organization, after the osmotically induced activation of supraoptic nucleus (SON) neurons of the rat suggest their participation in the processing and transport of rRNA precursors.
Abstract
This study has analyzed variations in the number of nucleoli and nuclear bodies, as well as in their ultrastructural and cytochemical organization, after the osmotically induced activation of supraoptic nucleus (SON) neurons of the rat. The number of nucleoli and nuclear bodies and also the nucleolar size were determined on smear preparations of previously block-impregnated SON. The mean number of nucleoli per cell was 1.35 +/- 0.6 (mean +/- SDM) in control rats. No significant variations in this value were registered either in dehydrated or rehydrated rats. The mean nucleolar volume and the total nucleolar volume per cell showed a significant increase in dehydrated rats with respect to the controls, whereas these two parameters tended to return to control values in rats rehydrated after dehydration. The mean number of nuclear bodies per cell increased significantly from 0.56 +/- 0.50 (mean +/- SDM) in control rats to 1.54 +/- 1.1 after 6 days of dehydration. By electron microscopy, SON neurons displayed a reticulated nucleolar configuration. After the osmotically induced neuronal activation, there was an increase in the proportion of the total nucleolar area occupied by the granular component, and also a reduction in the mean fibrillar-center area. The most characteristic nucleolar features in rehydrated rats were the tendency for the granular component to be segregated and the occurrence of intranucleolar vacuoles. Ultrastructural cytochemistry with a specific silver method revealed a selective silver reaction on the coiled threads of the nuclear bodies--identified as "coiled bodies"--and on the nucleolar fibrillar components in all animal groups studied. Since nucleoli play a major role in ribosome biogenesis, a relationship between these nucleolar changes and the level of cellular activity of SON neurons is proposed. Furthermore, the response of nuclear "coiled bodies" to neuronal activation suggests their participation in the processing and transport of rRNA precursors.

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Citations
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Journal ArticleDOI

Residual Cajal bodies in coilin knockout mice fail to recruit Sm snRNPs and SMN, the spinal muscular atrophy gene product

TL;DR: It is demonstrated that full-length coilin is essential for proper formation and/or maintenance of CBs and that recruitment of snRNP and SMN complex proteins to these nuclear subdomains requires sequences within the coilin COOH terminus.
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Assembly of snRNP-containing coiled bodies is regulated in interphase and mitosis--evidence that the coiled body is a kinetic nuclear structure.

TL;DR: Evidence is presented here that CBs are kinetic structures and it is demonstrated that the formation of snRNP-containing CBs is regulated in interphase and mitosis and cycling interactions of splicing snRNPs with CBs may be important for their participation in the processing or transport of pre-mRNA in mammalian cells.
Journal ArticleDOI

Immunocytochemical analysis of the coiled body in the cell cycle and during cell proliferation.

TL;DR: The expression of p80-coilin in quiescent cells induced to proliferate and the cyclic formation and breakdown of CBs might be consistent with the notion that CBs may be specialized centers related to the maturation of mRNA, but this evidence is indirect and needs further definitive study.
Journal ArticleDOI

Nuclear bodies (NBs): a newly "rediscovered" organelle.

TL;DR: Data suggest that coiled bodies, and perhaps other NBs as well, are multifunctional and may be involved in the processing or transport of both pre-mRNA and pre-rRNA.
Journal ArticleDOI

Nuclear bodies and compartments: functional roles and cellular signalling in health and disease.

TL;DR: Some aspects of nuclear structures/bodies/domains are summarized, including their proposed roles in cellular signalling and in human diseases, mainly neurodegenerative disorders and cancer.
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Visualization of nucleolar organizer regions im mammalian chromosomes using silver staining

TL;DR: The available cytochemical data suggest that the Ag-AS reaction stains chromosomal proteins at the NOR rather than the rDNA itself, and this was critically demonstrated by Ag- AS staining of the nucleolus organizer regions in karyotypes of the same species and cell lines used for locating the ribosomal cistrons by DNA/RNA in situ hybridization.
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Electrophysiology of hypothalamic magnocellular neurones secreting oxytocin and vasopressin

TL;DR: The hypothesis that nerve cells are true secreting cells, and act upon one other and upon the cells of other organs by the passage of a chemical substance of the nature of a ferment or proferment from the first cell to the second is formed.
Journal ArticleDOI

Synthesis, transport, and release of posterior pituitary hormones.

TL;DR: Pulse labeling neurons of the hypothalamo-neurohypophysial system with radioactive amino acid indicates that the two hormones and their respective neurophysin carrier proteins are synthesized as parts of separate precursor proteins.
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