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1.
The incorporation of [3H]UTP into RNA by isolated polytene salivary gland nuclei of Chironomus thummi was investigated under different incubation conditions; the labeled RNA fractions were characterized by electrophoresis. The results suggested that at two characteristic ionic conditions most of the RNA synthesized was the product of RNA polymerase I or RNA polymerase II as distinguished by their differential sensitivities to α-amanitin. Electrophoretical analysis of the RNA synthesized under conditions favouring polymerase I showed that this RNA population consisted mainly of four distinct molecular weight fractions within a range between 2.8 × 104 and 2.5 × 106. Under conditions favouring polymerase II two fractions were detected: one with a broad molecular weight distribution around 0.4 × 106 containing considerable amounts of poly(A)-bearing RNA molecules, and a second with a peak at a molecular weight of 2.8 × 104.  相似文献   

2.
Bromegrass mosaic virus has three types of structurally similar virions all of which are required for infectivity. The virions contain either one RNA molecule of molecular weight 1.09×106 or 0.99×106 or two of molecular weights 0.75×106 and 0.28×106. A mixture of the isolated RNAs is infectious and deletion of any but the smallest greatly reduces infectivity. The third largest RNA component contains the coat protein gene.  相似文献   

3.
RNA extracted by cold phenol from the large cytoplasmic ribosomal subunit of the trypanosomatid flagellate Crithidia fasciculata and analyzed by polyacrylamide gel electrophoresis at 4 °C consisted of one species with a molecular weight of 1.3 × 106 (relative to ribosomal RNA from E. coli MRE 600). When extracted with hot phenol (65 °C), the large ribosomal subunit gave rise to two components with molecular weights of 0.72 and 0.56 × 106. On heating for 60 s, followed by rapid cooling, the single cold-phenol-extracted 1.30 × 106-dalton species completely dissociated into two components of molecular weights 0.72 and 0.56 × 106, present in equimolar amounts. When analyzed by polyacrylamide-agarose gel electrophoresis in the presence of SDS, RNA extracted by cold phenol from the large cytoplasmic ribosomal subunit consisted of three components of molecular weights 1.3, 0.72, and 0.56 × 106, present in apparently equimolar amounts. RNA from the small cytoplasmic ribosomal subunit consisted of one species with a molecular weight of 0.84 × 106, independent of extraction or analytical conditions. It is proposed that under high salt and low temperature conditions, the large ribosomal RNA molecule is held together by its secondary structure, and that denaturing extraction or analytical conditions reveal an otherwise “hidden” lesion present in the molecule in vivo.  相似文献   

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5.
Ribonucleic acids extracted from polyribosomes of cells replicating murine sarcoma-leukemia viruses (M-MSV(MLV)) were resolved by electrophoresis on 2.5% polyacrylamide gels. Virus-specific RNA was detected by hybridization of RNA in the gel fractions with the 3H-DNA product of the viral RNA-directed DNA polymerase. The postmicrosomal supernatant and the free polyribosomes contained one peak of virus-specific RNA with a molecular weight of about 2.9 × 106 (35S). In contrast, the microsomes and the membrane-bound polyribosomes contained two peaks of virus-specific RNA in approximately equal amounts with molecular weights of 2.9 × 106 (35S) and 1.5 × 106 (approximately 20S). The high molecular weight viral RNA species might serve as polycistronic mRNA for the synthesis of large polypeptides that are cleaved to form the smaller viral proteins.  相似文献   

6.
Moloney murine leukemia virus 35S RNA (molecular weight 3 to 3.4 × 106) is cleaved by nuclease activity present in microsomal fractions from MLV infected or uninfected mouse embryo cells to two RNA species of approximate molecular weights 1.8 × 106 and 1.5 × 106. Microsomal fractions from MLV infected and uninfected cells also contained nucleolytic activity that solubilized [3H]poly(A)·poly(U) but not [3H]poly(C) or [3H]poly(U); the cleavage of poly(A)·poly(U) was inhibited by ethidium bromide. The cleavage of MLV RNA was also inhibited by ethidium bromide, suggesting double stranded regions in 35S RNA as the site of cleavage.  相似文献   

7.
Phenol extracted RNA preparations from highly purified nuclei and polysomes of goat brain were fractionated by chromatography on oligo (dT)-cellulose and analyzed by electrophoresis on agarose-acrylamide composite gels. The electrophoretic profile of the polysomal polyadenylated RNA fraction showed a major band with a molecular weight of about 0.62 × 106, which corresponds to the size of the tubulin mRNA. The nuclear polyadenylated RNA fraction also displayed a single major band, with an estimated molecular weight of 0.76 × 106, which appears to be a potential precursor of tubulin mRNA.  相似文献   

8.
9.
Ribosomal RNA synthesis in mitochondria of Neurospora crassa   总被引:10,自引:0,他引:10  
Ribosomal RNA synthesis in Neurospora crassa mitochondria has been investigated by continuous labeling with [5-3H]uracil and pulse-chase experiments. A short-lived 32 S mitochondrial RNA was detected, along with two other short-lived components; one slightly larger than large subunit ribosomal RNA, and the other slightly larger than small subunit ribosomal RNA. The experiments give support to the possibility that 32 S RNA is the precursor of large and small subunit ribosomal RNA's. Both mature ribosomal RNA's compete with 32 S RNA in hybridization to mitochondrial DNA. Quantitative results from such hybridization-competition experiments along with measurements of electrophoretic mobility have been used to construct a molecular size model for synthesis of mitochondrial ribosomal RNA's. The large molecular weight precursor (32 S) of both ribosomal RNA's appears to be 2.4 × 106 daltons in size. Maturation to large subunit RNA (1.28 × 106 daltons) is assumed to involve an intermediate ~1.6 × 106 daltons in size, while cleavage to form small subunit RNA (0.72 × 106 daltons) presumably involves a 0.9 × 106 dalton intermediate. In the maturation process ~22% of the precursor molecule is lost. As is the case for ribosomal RNA's, the mitochondrial precursor RNA has a strikingly low G + C content.  相似文献   

10.
Plant 5.8S RNA is a Component of 80S but not 70S Ribosomes   总被引:5,自引:0,他引:5  
LIVING organisms contain two classes of ribosomes that can be distinguished by differences in their size, the molecular weights of their constituent high molecular weight RNAs and their sensitivity to certain inhibitors of protein synthesis. The ribosomes of one type occur in bacteria, blue-green algae and chloroplasts. They have sedimentation coefficients of approximately 70S1,2, contain RNA with molecular weights of about 1.1 × 106 (23S) and 0.56 × 106 (16S)3 and their activity is inhibited by chloramphenicol4,5, lincomycin and spectinomycin6. The ribosomes of the other type are found in the cytoplasm of animal and plant cells, have sedimentation coefficients of 80S1,2, contain RNA with molecular weights of 1.3?1.75 × 106 (25–28S) and 0.7 × 106 (18S)3 and are prevented from functioning by cycloheximide4.  相似文献   

11.
AFTER infection of monkey kidney cells with simian virus 40 (SV40), several species of SV40 specific RNA are synthesized1. Most SV40 RNA have a molecular weight of about 6×105 and 8×105 as measured by polyacrylamide gel electrophoresis1. In addition to these classes of RNA, a large heterogeneous SV40 specific RNA species of up to three times the length of the monomeric SV40 DNA molecule has been observed1–4. Nothing is known about the structure of this large heterogeneous virus specific RNA.  相似文献   

12.
The complexity of Rous sarcoma virus RNA has been determined using molecular hybridization. Relative to poliovirus RNA, the complexity of Rous sarcoma virus is 9·3 × 106 daltons, a value close to its physically-determined molecular weight of about 107. Our interpretation is that the 35 S RNA subunits of the 70 S virus genome are non-repetitive, that is, each possesses a unique nucleotide sequence, although a limited amount of redundancy cannot be excluded.  相似文献   

13.
《Free radical research》2013,47(4):227-233
In order to determine whether exposure of hyaluronic acid to oxygen radicals caused an alteration in its properties. independent of the change in molecular weight induced. we examined its effect upon macro-phage Fc receptor binding. High molecular weight hyaluronic acid (Healon-Pharmacia) caused a dose dependent inhibition of binding between the concentrations of 0.2–1 mg/ml. At a concentration of 0.3 mg/ml both oxygen radical depolymerized and enzymatically degraded hyaluronic acid caused an inhibition of Fc receptor binding at molecular weights of 1 × 106. 1.5 × 106 and 2 × 106. Oxygen radical degraded hyaluronic acid caused a stimulation of Fc receptor binding at molecular weights of 2 × 105 and 3.5 × 105. and enzyme degraded hyaluronic acid causes stimulation at a molecular weight of 2.5 × 106. Thus this “biological property” of hyaluronic acid is dependent upon molecular weight solely and not upon the mode of depolymerization.  相似文献   

14.
Strains of Saccharomyces cerevisiae carrying a small double-stranded RNA species (the killer plasmid) secrete a toxin which is lethal only to strains not carrying this plasmid.We have isolated mutants in eight chromosomal genes essential for replication or maintenance of the killer plasmid, called mak1 through mak8. Seven of these genes have been mapped. mak4 and mak5 are on chromosome II; mak1 and mak8 are on chromosome XV; mak3 and mak6 are on chromosome XVI; and mak7 is on chromosome VIII. We have not yet located mak2. Two other chromosomal genes, m and pets, have been shown to be required for replication or maintenance of the killer plasmid.One allele of mak1 results in temperature sensitivity for host growth. Two independent pets isolates also result in the petite phenotype, as well as temperature sensitivity for growth.Wild-type killer strains have been reported to carry two species of doublestranded RNA of 2.5 × 106 and 1.4 × 106 molecular weight (designated L and M, respectively); wild-type non-killers carried only L. We estimate the size of the L and M species at 3.0 × 106 and 1.7 × 106 daltons, respectively. We have also detected a third species of double-stranded RNA of molecular weight 3.8 × 106 (XL) present in all killer and non-killer strains examined.Mutation of any of mak1 through mak8 results in loss of the killer-associated species of double-stranded RNA (M; 1.7 × 106). These mutants retain both the L species (3.0 × 106) and the XL species (3.8 × 106) of double-stranded RNA, and have acquired two new minor RNA species.  相似文献   

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17.
Homology of plasmids in strains of unicellular Cyanobacteria.   总被引:17,自引:0,他引:17  
Six strains of unicellular cyanobacteria were examined for the presence of plasmids. Analysis of lysates of these strains by CsCl-ethidium bromide density centrifugation yielded a major chromosomal DNA band and a minor band containing covalently closed circular plasmid DNA, as shown by electron microscopy and agarose gel electrophoresis. The sizes of the various plasmid species were determined; in each of the Synechococcus strains 6301, 6707, and 6908 two plasmid species were found with molecular weights of 5.3 × 106 and 32.7 × 106. Synechococcus strain 7425 had two plasmids of molecular weight 5.4 × 106 and 24 × 106. Synechococcus strain 6312 and Synechocystis strain 7005 each contained one plasmid species with molecular weight of 15.9 × 106 and 2.0 × 106, respectively. Restriction enzyme analysis revealed identical cleavage patterns for the plasmids of identical molecular weight.  相似文献   

18.
A. Nock 《Chromosoma》1981,83(2):209-220
Nuclear and cytoplasmic RNA of Stylonychia mytilus were analyzed on denaturing polyacrylamide gels. The molecular weight of rRNA precursor molecules is within a range of 2.1×106 daltons. A comparison between the electrophoretic pattern of nuclear non-ribosomal RNA and cytoplasmic mRNA indicates that a considerable amount of nuclear RNA sequences is of higher molecular weight than cytoplasmic RNA sequences. The molecular weight distribution of cytoplasmic RNA supports the assumption that also in Stylonychia an average sized mRNA molecule contains 1,200–1,500 nucleotides according to a molecular weight of 4×105 to 5×105 daltons. The size of the polyadenylic acid fragment of poly-A+ RNA molecules is about 120 nucleotides. The total mass of cytoplasmic RNA is around 7.5/1010 g/cell, corresponding to 1.2×107 average sized mRNA molecules per cell. RNA excess hybridization experiments show that 60% of the DNA sequences are transcribed into nuclear RNA and that the cytoplasmic mRNA sequences are homologous to about 40% of macronuclear DNA sequences. There is no indication of different frequency classes within the mRNA. The number of different mRNA species in a Stylonychia cell is 1.2–1.5×104. On the average each of them is present about 1,000 times in every cell.  相似文献   

19.
The approximate sizes of heterogeneous nuclear (HnRNA) and cytoplasmic RNA of sea urchin embryos were determined by DMSO density gradient centrifugation and acrylamide-formamide gel electrophoresis. The data suggest that the sizes of these molecules are smaller than those estimated under nondenaturing conditions. The size of most of the nuclear RNA ranges from 0.5 to 3 × 106 daltons, while that of the cytoplasmic RNA ranges from 0.1 to 2 × 106 daltons. Both nuclear and cytoplasmic RNA of sea urchin embryos may have a minor fraction (5–10%) of very large species with molecular weights up to 4 to 5 × 106 daltons.The idea that the size of HnRNA may be larger in organisms higher on the evolutionary scale is discussed.  相似文献   

20.
A one to one RNA-DNA hybrid was synthesized using bacteriophage φX174 DNA as a template for the Escherichia coli RNA polymerase system. The renaturation rate for the hybrid was found to vary as the square root of the molecular weight of the RNA. The RNA molecular weights were determined using a standardized dimethylsulfoxide, cesium sulfate equilibrium density gradient. The optimum nucleation rate constant for the renaturation of the hybrid in 0.4 m-sodium chloride was found to be 1.3 × 105, as compared with to 1.7 × 105 for DNA renaturation.  相似文献   

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