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Pnn/DRS protein is associated with desmosomes and colocalizes with splicing factors in nuclear speckled domains. The potential interaction of Pnn with RNPS1, a pre-mRNA splicing factor and a component of the exon-exon junction complex, prompted us to examine whether Pnn is involved in nuclear mRNA processing. By immunoprecipitation, we found that Pnn associates preferentially with mRNAs produced by splicing in vitro. Oligonucleotide-directed RNase H digestion revealed that Pnn binds to the spliced mRNAs at a position immediately upstream of the splice junction and that 5' splice site utilization determines the location of Pnn in alternatively spliced mRNAs. Immunoprecipitation further showed that Pnn binds to mRNAs produced from a transiently expressed reporter in vivo. Although associated with mRNPs, Pnn is a nuclear-restricted protein as revealed by the heterokaryon assay. Overexpression of an amino-terminal fragment of Pnn that directly interacts with RNPS1 leads to blockage of pre-mRNA splicing. However, although suppression of Pnn expression shows no significant effect on splicing, it leads to some extent to nuclear accumulation of bulk poly(A)(+) RNA. Therefore, Pnn may participate, via its interaction with RNPS1, in mRNA metabolism in the nucleus, including mRNA splicing and export.  相似文献   

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We have examined the distribution of RNA processing factors in the germinal vesicle (GV) of the common frog Rana temporaria during early vitellogenesis by immunostaining on light- and electronmicroscopic levels and by in situ nucleic acid hybridization. Small nuclear RNPs (snRNP) and factor SC35 involved in pre-mRNA splicing occur in lampbrush chromosome loops and numerous granules 1-3 microns in size. These granules are identical to B snurposomes of Xenopus laevis and Notophtalmus viridescens described earlier (Wu et al., 1991). Some of B snurposomes are attached to homologous loops of lampbrush chromosomes. Immunofluorescent study of Cajal bodies/coiled bodies (CB) showed that sometimes CB have B snurposomes attached to their surface. In this case splicing factor SC35 is found in B snurposomes and B-like inclusions in CB matrix. In CB without attached B snurposomes splicing factor SC35 localizes throughout the whole organelle. Staining of GV spreads with antibodies against nucleolar protein NO38 revealed this protein in CB, nucleoli and micronucleoli. Using in situ nucleic acid hybridization and immunofluorescent staining we have found that on GV spreads from hibernating frogs B snurposomes contact nucleoli. Nucleoli contain snRNP. These data suggest that nucleoli may be storage sites of snRNPs during natural inactivation of RNA synthesis. During winter season in Rana temporaria GV nucleoli become compacted and a number of micronucleoli (less than 2 microns) dramatically increases. Analysis of micronucleoli showed that they contain rRNA, protein NO38, trace amount of U3 small nucleolar RNA and do not contain fibrillarin, involved as U3 in pre-rRNA processing. We suggest that decrease of rRNA synthesis during frog hibernation results in transformation of part of nucleoli in micronucleoli.  相似文献   

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Subnuclear organization and spatiotemporal regulation of pre-mRNA processing factors is essential for the production of mature protein-coding mRNAs. We have discovered that a large protein called Son has a novel role in maintaining proper nuclear organization of pre-mRNA processing factors in nuclear speckles. The primary sequence of Son contains a concentrated region of multiple unique tandem repeat motifs that may support a role for Son as a scaffolding protein for RNA processing factors in nuclear speckles. We used RNA interference (RNAi) approaches and high-resolution microscopy techniques to study the functions of Son in the context of intact cells. Although Son precisely colocalizes with pre-mRNA splicing factors in nuclear speckles, its depletion by RNAi leads to cell cycle arrest in metaphase and causes dramatic disorganization of small nuclear ribonuclear protein and serine-arginine rich protein splicing factors during interphase. Here, we propose that Son is essential for appropriate subnuclear organization of pre-mRNA splicing factors and for promoting normal cell cycle progression.  相似文献   

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