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We have examined the ultrastructural localization of U3 RNA in the nucleoli of HeLa and mouse 3T3 cells by in situ hybridization with a biotinylated U3 DNA probe and subsequent detection of hybrids with electron microscopy by direct immunogold labeling. The highest levels of signal density for U3 RNA are detected over the dense fibrillar component (DFC) of the nucleolus, including the interfaces between DFC and the enclosed fibrillar center (FC) on the one hand and DFC and the granular component (GC) on the other hand. Lower but significant signals also are observed over GC, which indicate, taking into account the high relative volume of GC in a nucleolus, that a substantial fraction of U3 RNA is present in this compartment where the more mature forms of pre-rRNA accumulate. In parallel, the localization of fibrillarin was analyzed by immunogold detection, demonstrating that fibrillarin and U3 RNA have a roughly similar distribution, although quantitative measurements reveal that the signal ratio for both molecules exhibit significant differences among the major ultrastructural components of the nucleolus.  相似文献   
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We present the sequence of the 5' terminal 585 nucleotides of mouse 28S rRNA as inferred from the DNA sequence of a cloned gene fragment. The comparison of mouse 28S rRNA sequence with its yeast homolog, the only known complete sequence of eukaryotic nucleus-encoded large rRNA (see ref. 1, 2) reveals the strong conservation of two large stretches which are interspersed with completely divergent sequences. These two blocks of homology span the two segments which have been recently proposed to participate directly in the 5.8S-large rRNA complex in yeast (see ref. 1) through base-pairing with both termini of 5.8S rRNA. The validity of the proposed structural model for 5.8S-28S rRNA complex in eukaryotes is strongly supported by comparative analysis of mouse and yeast sequences: despite a number of mutations in 28S and 5.8S rRNA sequences in interacting regions, the secondary structure that can be proposed for mouse complex is perfectly identical with yeast's, with all the 41 base-pairings between the two molecules maintained through 11 pairs of compensatory base changes. The other regions of the mouse 28S rRNA 5'terminal domain, which have extensively diverged in primary sequence, can nevertheless be folded in a secondary structure pattern highly reminiscent of their yeast' homolog. A minor revision is proposed for mouse 5.8S rRNA sequence.  相似文献   
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Early steps of ribosomal maturation have been studied by analysis of nucleolar extracts using different extraction procedures. Early 45-S nucleolar RNA is found to be associated with slowly sedimenting elements, distinct from previously described 80-S and 55-S nucleolar preribosomes. This early 45-S RNA has been shown to be of preribosomal type according to the following criteria. (a) When hybridized with nucleolar DNA, competition with rRNA can be observed; (b) its biosynthesis is sensitive to low doses of actinomycin D; (c) it is methylated at an early stage; (d) it contains no linked poly(A) segments. This early 45-S RNA seems to be specifically linked with proteins. The protein content of these early RNA-protein complexes is significantly lower than that for 80-S preribosomes. 45-S RNA sensitivity to nucleolytic activities that can take place in the course of preribosome extraction has been found to be higher in these RNA-protein complexes than in 80-S preribosomes. Identical results were obtained when different mammalian cell species were studied (rat, hamster, or HeLa cells).  相似文献   
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The reaction between RNA and 4'hydroxymethyl-4,5',8-trimethylpsoralen has been studied. Both natural RNA and synthetic RNAs were used. The base specificity of the reaction was found to be the same in natural RNA, homopolymers, and mononucleotides. Uridine was found to be the most reactive base in all cases. The kinetics of formation and reversal of monoadducts and crosslinks has been examined. Paper electrophoretic conditions are described which provide a separation of the monoaddition and crosslinked photoproducts. The relative and absolute amounts of monoadducts and crosslinks can be determined very accurately with this system. Paper electrophoresis provides good separations of the different photoproducts. The mobilities of the products are a simple function of their molecular weights and charges.  相似文献   
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