Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “total RNA”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 307 records · Page 17Linked to original sources

Enhanced nucleic acid capture and flow cytometry detection with peptide nucleic acid probes and tunable-surface microparticles.

New methods for automated, direct nucleic acid purification and detection are required for the next generation of unattended environmental monitoring devices. In this study we investigated whether tunable-surface bead chemistry and peptide nucleic acids (PNA) could enhance the recovery and detection of intact rRNA in both test tube and automated suspension array hybridization formats. Intact rRNA was easily captured and detected on PNA-coated Lumavidin beads from 0.1 ng total RNA with a 15-min hybridization in pH 7 buffer, representing 1.7 x 10(3) cell equivalents of total RNA. DNA-conjugated beads in pH 5 hybridization buffer required an overnight hybridization to achieve a detectable signal at 0.1 ng target RNA. Standard DNA hybridization conditions (pH 7) were one order of magnitude less sensitive than the tunable-surface (pH 5) condition. The PNA-conjugated particles were 100x more sensitive than the tunable-surface DNA particles in the automated format, with a detection limit of 0.1 ng total RNA. The detection limits for total RNA on PNA-conjugated microparticles is immediately conducive to the detection and characterization of microorganisms in low-biomass environments or to the identification of rare sequences in a complex sample mixture, without using PCR.

Bacillus↗

Regulation of the relative abundances of c-myc mRNAs in human promyelocytic HL60 cells.

Transcription of the c-myc gene is initiated mainly from two promoters, P1 and P2. By S1 nuclease analysis we found that there is 8 times more P2- than P1-initiated RNA in total RNA from HL60 cells. The half-lives of P1- and P2-initiated transcripts are 26 and 18 min, respectively, so the difference in the relative abundance of the mRNAs is not due to differences in their stabilities. The relative rates of transcription from the P1 and P2 promoters, estimated by in vitro nuclear run-on analysis, were found to differ by about 10-fold, sufficient to account for the difference in the steady-state levels of the two mRNAs. The abundance of c-myc mRNA changes dramatically during differentiation of HL60 cells. Dimethyl sulphoxide causes a very rapid reduction in total c-myc mRNA, while with phorbol ester a transient increase occurs followed by a more gradual decline. At no time during these dramatic alterations were significant changes detected in the relative abundance of P1- and P2-initiated mRNAs, or in their stabilities.

Cell Transformation, Neoplastic↗

Changes in rRNA levels during stress invalidates results from mRNA blotting: fluorescence in situ rRNA hybridization permits renormalization for estimation of cellular mRNA levels.

Regulation of gene expression can be analyzed by a number of different techniques. Some techniques monitor the level of specific mRNA directly, and others monitor indirectly by determining the level of enzymes encoded by the mRNA. Each method has its own inherent way of normalization. When results obtained by these techniques are compared between experiments in which differences in growth rates, strains, or stress treatments occur, the normalization procedure may have a significant impact on the results. In this report we present a solution to the normalization problem in RNA slot blotting experiments, in which mRNA levels routinely are normalized to a fixed amount of extracted total RNA. The cellular levels of specific mRNA species were estimated using a renormalization with the total RNA content per cell. By a combination of fluorescence in situ rRNA hybridization, which estimates the relative level of rRNA per cell, and slot blotting to rRNA probes, which estimates the level of rRNA per extracted total RNA, the amount of RNA per cell was calculated in a series of heat shock experiments with the gram-positive bacterium Lactococcus lactis. It was found that the level of rRNA per cell decreased to 30% in the course of the heat shock. This lowered ribosome level led to a decrease in the total RNA content, resulting in a gradually increasing overestimation of the mRNA levels throughout the experiment. Using renormalized cellular mRNA levels, the HrcA-mediated regulation of the genes in the hrcA-grpE-dnaK operon was analyzed. The hybridization data suggested a complex heat shock regulation indicating that the mRNA levels continued to rise after 30 min, but after renormalization the calculated average cellular levels exhibited a much simpler induction pattern, eventually attaining a moderately increased value.

Cell Membrane Permeability↗

Hyperthermia and human leukocyte functions: DNA, RNA, and total protein synthesis after exposure to less than 41 degrees or greater than 42.5 degrees hyperthermia.

Hyperthermia is being used clinically in the treatment of neoplasms, and mononuclear leukocytes are commonly present in a heated tumor or in surrounding tissues. Therefore, we examined the effects of exposure of human mononuclear leukocytes to less than 41 degrees or greater than 42.5 degrees hyperthermia for 2 h. The ability of the cells to exclude dyes, used as a measurement of leukocyte viability, was not altered by such exposures. Exposure of the cells to less than 41 degrees hyperthermia generally did not alter unstimulated or mitogen-stimulated DNA, RNA, or total protein synthesis. In contrast, exposure to greater than 42.5 degrees hyperthermia resulted in decreased unstimulated RNA and total protein synthesis, as well as delayed synthesis of DNA, RNA, and total protein in response to stimulation with the optimal concentration of mitogen and decreased synthesis in response to suboptimal concentrations of mitogen.

Adult↗

Structure and expression of the guinea pig preproenkephalin gene: site-specific cleavage in the 3' untranslated region yields truncated mRNA transcripts in specific brain regions.

We isolated the guinea pig preproenkephalin gene from a genomic library by hybridization to a rat cDNA probe. The entire nucleotide sequence of the gene was determined. Genomic Southern blot hybridization demonstrated that the gene exists in a single copy within the genome. On the basis of RNase protection transcript mapping and homology comparisons with known preproenkephalin sequences from other species and assuming a poly(A) tail length of 100 residues, we predicted an mRNA transcript of approximately 1,400 nucleotides encoded by three exons. Northern (RNA) blot analysis of total RNA from several brain regions showed high levels of preproenkephalin mRNA in the caudate putamen, nucleus accumbens, and hypothalamus, with detectable levels in the amygdala, ventral tegmental area, and central gray and also in the pituitary. Unexpectedly, in several brain regions, the mRNA appeared not only in the 1,400-nucleotide length but also in a shorter length of approximately 1,130 bases. Significant amounts of the shorter mRNA were found in the caudate putamen, nucleus accumbens, and amygdala. The longer, but not the shorter, transcripts from the caudate putamen were found to be polyadenylated, but the difference in size was not due solely to the presence of poly(A) tails. Northern gel analysis of total RNA from the caudate putamen with probes from each exon, together with RNase protection mapping of the 3' end of the mRNA demonstrated that the 1,400-base preproenkephalin mRNA transcripts are cleaved in a site-specific manner in some brain regions, yielding a 1,130-base transcript and a 165-base polyadenylated fragment derived from the terminal end of the 3' untranslated region of the mRNA. This cleavage may serve as a preliminary step in RNA degradation and provide a mechanism for control of preproenkephalin mRNA abundance through selective degradation.

Amino Acid Sequence↗

Gene expression in the brain across the hibernation cycle.

The purpose of this study was to characterize changes in gene expression in the brain of a seasonal hibernator, the golden-mantled ground squirrel, Spermophilus lateralis, during the hibernation season. Very little information is available on molecular changes that correlate with hibernation state, and what has been done focused mainly on seasonal changes in peripheral tissues. We produced over 4000 reverse transcription-PCR products from euthermic and hibernating brain and compared them using differential display. Twenty-nine of the most promising were examined by Northern analysis. Although some small differences were observed across hibernation states, none of the 29 had significant changes. However, a more direct approach, investigating expression of putative hibernation-responsive genes by Northern analysis, revealed an increase in expression of transcription factors c-fos, junB, and c-Jun, but not junD, commencing during late torpor and peaking during the arousal phase of individual hibernation bouts. In contrast, prostaglandin D2 synthase declined during late torpor and arousal but returned to a high level on return to euthermia. Other genes that have putative roles in mammalian sleep or specific brain functions, including somatostatin, enkephalin, growth-associated protein 43, glutamate acid decarboxylases 65/67, histidine decarboxylase, and a sleep-related transcript SD464 did not change significantly during individual hibernation bouts. We also observed no decline in total RNA or total mRNA during torpor; such a decline had been previously hypothesized. Therefore, it appears that the dramatic changes in body temperature and other physiological variables that accompany hibernation involve only modest reprogramming of gene expression or steady-state mRNA levels.

Animals↗

Comparison of liver glutathione peroxidase activity and mRNA in female and male mice and rats.

1. Female and male adult mouse and rat liver was analyzed for glutathione peroxidase activity, mRNA levels, and other selected liver enzymes. 2. Species and sex differences in liver protein, total RNA and total mRNA were minor. 3. Glutathione peroxidase activity, mRNA levels, and selenium concentration was lower in male rats when compared to female rats, male mice or female mice. 4. Plasma ceruloplasmin activity, but not liver mRNA levels, were lower in mice compared to rats. 5. Cu,Zn-superoxide dismutase activity and mRNA were not greatly influenced by species or sex. 6. Glutathione transferase activity towards 1-chloro-2,4-dinitrobenzene was highest in male mice and equivalent in the other three groups.

Animals↗

Detection of each of the causal agents of groundnut rosette disease in plants and vector aphids by RT-PCR.

Detection of the three agents of groundnut rosette disease (groundnut rosette assistor virus, groundnut rosette virus and its satellite RNA) in plants and vector aphids by reverse transcription-polymerase chain reaction (RT-PCR) is reported. Three procedures for extraction of total RNA from groundnut were tested, of which two were found to be useful in giving RNA of sufficient quality for RT-PCR. Of these two, the total RNA extraction kit supplied by Qiagen was found to be the most versatile for extraction of all three agents from individual vector aphids (Aphis craccivora). Both groundnut rosette assistor virus and groundnut rosette virus could be detected from total RNA extracted from a single aphid that had been exposed to either green or chlorotic rosette-infected groundnut plants. They could be detected in aphids stored in 70% ethanol for up to 30 days at room temperature. However, satellite RNA could be amplified only when total RNA extracted from two or more aphids was used. Groundnut rosette assistor virus, groundnut rosette virus and its satellite RNA were detected by RT-PCR in aphids that had been exposed only to groundnut rosette diseased plants containing all three agents. The potential of RT-PCR in studying certain key issues of rosette disease epidemiology is discussed.

Animals↗

[Effect of allitridi on cyclin D1 and p27(Kip1) protein expression in gastric carcinoma BGC823 cells].

BACKGROUND & OBJECTIVE: Previous study showed that allitridi markedly suppresses cellular proliferation, blocks cell cycle at G(1) phase, and induces cell apoptosis of human gastric cancer BGC823 cell. During the investigation of its molecular mechanisms and target genes, the authors found that protein expression of cyclin D1 and p27(Kip1) play an important role in an allitridi-induced G(1) arrest. This study was designed to explore the effect of allitridi on the expression of cyclin D1 and p27(Kip1) in BGC823 cells. METHODS: After total RNA and total protein in allitridi-treated (25 microg/ml) and allitridi-untreated BGC823 cells were abstained, Western blot analysis was performed to determine the protein levels of cyclin D1 and p27(Kip1), and RT-PCR was performed to determine the mRNA levels of cyclin D1 and p27(Kip1). RESULTS: After treated with 25 microg/ml allitridi for 24 hours, the protein levels of cyclin D1 of BGC823 cells were downregulated and the protein levels of p27(Kip1) were upregulated, and this changes were more obvious after 48 hours,while their mRNA levels remained unchanged. CONCLUSION: Allitridi may influence the protein expression of cyclin D1 and p27(Kip1) in BGC823 cells, while do not influence their mRNA transcription.

Allyl Compounds↗

New role for tRNA and its fragment purified from human urinary bladder carcinoma conditioned medium: inhibition of endothelial cell growth.

The growth of endothelial cells is necessary for angiogenesis, which in turn is required for later steps of tumor progression. In an attempt to purify new modulators of endothelial cell growth from the conditioned medium of human urinary bladder carcinoma cells, we isolated a small and stable oligonucleotide containing 10 to 16 bases. This oligonucleotide inhibited the growth of endothelial cells in vitro and was identified as a fragment of transfer RNA (tRNA). When unfractionated bovine tRNA was added to the cell culture, it specifically inhibited growth of endothelial cells, but not smooth muscle cells, bovine kidney cells, 3T3 fibroblasts, and several cancer cell lines. In contrast, ribosomal RNA, total yeast RNA, and single nucleosides from tRNA hydrolysate had no effect. These results demonstrate a new role for tRNA and its fragment as a selective endothelial cell inhibitor in vitro.

3T3 Cells↗

Attenuation of white gene expression in transgenic Drosophila melanogaster: possible role of a catalytic antisense RNA.

We have transformed Drosophila melanogaster with a DNA construct encoding a catalytic antisense RNA directed against the primary white gene RNA transcript. Total RNA isolated from transformed flies was shown to catalyze the specific cleavage of in vitro transcribed substrate RNA, indicating the expression of a functional ribozyme. Moreover, transgenic lines carrying homozygous copies of this construct depict a further clear-cut reduction in eye pigmentation when present in a genetic background that has a priori reduced levels of white gene expression.

Alleles↗

In vitro synthesis of RNA by Xenopus spermatogenic cells I. Evidence for polyadenylated and non-polyadenylated RNA synthesis in different cell populations.

Premeiotic and postmeiotic (haploid) gene expression during spermatogenesis in the anuran, Xenopus laevis, was studied by analyzing the accumulation of radioactively labelled cytoplasmic polyadenylated [poly (A +)] and non-polyadenylated [poly (A -)] RNAs. Dissociated spermatogenic cells were labelled and maintained in an in vitro system capable of supporting cell differentiation. Labelled cells were separated by density gradient centrifugation into subpopulations enriched for individual spermatogenic stages. RNA was extracted and purified from each cell fraction, and separated into poly (A +) and poly (A -) species. Comparison of poly (A +) to non-poly (A) radioactivity in cells labelled with tritiated uridine or adenosine demonstrated that (1) all cell fractions produced significant quantities of polyadenylated RNA relative to total RNA synthesis; and (2) that a cell fraction enriched for pachytene spermatocyte RNA contained up to 15% of total cytoplasmic and 35% of total polysomal RNA labelled as poly (A +) containing species. RNA was also characterized by sucrose density gradient centrifugation and polyacrylamide gel electrophoresis. All cell types showed typical poly (A -) peaks of 4S, 18S and 28S, corresponding to tRNA (4S) and rRNAs (18, 28S) respectively. Spermatids and spermatozoa had additional absorbance peaks at 13 and 21S which cosedimented with Xenopus oocyte mitochondrial rRNA. Patterns of incorporation of uridine and adenosine into poly (A +) RNA in all germ cell fractions tested were complex. In all cases, major areas of radioactivity were found in a broad band sedimenting between 6-17S. Spermatid fractions showed a prominent peak of incorporation at 6-8S, while pachytene cells also showed heavier poly (A +) peaks in the 17-25S region. A non-polyadenylated RNA species sedimenting at 6-8S with a relatively rapid rate of turnover was also observed in spermatids. From these results it is concluded that synthesis of transfer, ribosomal, and putative messenger RNA species continues in spermatogenic cells throughout all but the very last stages of spermatogenesis in Xenopus.

Animals↗

Type I interferon response against viral and non-viral gene transfer in human tumor and primary cell lines.

BACKGROUND: Type I interferon (IFN-alpha/beta) response is one of the major host defence mechanisms against viruses. Some recent reports suggest that IFNs may interfere with the efficacy of both non-viral and virus-vector-mediated therapeutic gene transfer. METHODS: The type I IFN response upon different gene transfer methods in human tumor and primary cell lines was studied by analysing IFN-beta mRNA expression, secretion of type I IFNs and accumulation of IFN-alpha/beta-induced MxA protein (myxovirus resistance protein A). RESULTS: Infection with avirulent Semliki Forest virus A7[74] induced MxA protein accumulation and increased the IFN-beta mRNA level, whereas none of the studied virus vectors (adenovirus, CRAd, lentivirus or AAV) induced IFN response. However, plasmid DNA induced the accumulation of MxA protein when transfected with several commercial transfection reagents. RNA transfection appeared to be an efficient inducer of type I IFN response: replicating alphaviral RNA, eukaryotic total RNA, or mRNA all induced both MxA protein accumulation and IFN-beta expression. siRNA transfection failed to induce MxA response. CONCLUSIONS: The non-viral gene transfer methods have gained more interest in recent years due to their better safety profiles when compared to their viral counterparts. However, the efficiency of non-viral gene transfer is well below those reached by viral vector systems. The type I interferon response induced by non-viral methods may in part contribute to this inefficiency, while most currently used viral gene transfer vectors fail to induce or are able to suppress type I IFN response.

Animals↗

Human retina expresses both constitutive and inducible isoforms of nitric oxide synthase mRNA.

The present study provided evidence for the presence of two forms of nitric oxide synthase(NOS) gene in the human retina. Expression of retinal constitutive type(rbNOS) and inducible type(riNOS) of NOS was detected in human retinal poly A+RNA by reverse transcriptase polymerase chain reaction (RT-PCR) method. The deduced amino acid sequence of the human retinal rbNOS showed more than 99% homology with human brain bNOS and that of riNOS was identical to the chondrocytes inducible iNOS with the exception for one amino acid. These differences in amino acid sequences of rbNOS and riNOS, with their counterparts in human brain and human chondrocytes sequences, were only in the non-cofactor binding sites. Northern blot analysis of the human retinal poly A+RNA and total RNA, using the PCR-amplified riNOS probe revealed the existence of riNOS message with the appearance of the band with the expected size of 4.4kb, while the message for rbNOS was not detectable. This was the first report of the deduced nucleotide sequence identification of two NOS genes from a human tissue, while there had been earlier reports from culture cells.

Adolescent↗

A novel highly reproducible quantitative competitve RT PCR system.

Small changes in plasma fibrinogen concentration are often clinically important. To detect changes in fibrinogen mRNA level, we have designed a novel quantitative competitive reverse transcriptase (RT) PCR system, based on our recent understanding that an important factor causing imprecision with RT PCR is a change in the initial ratio of target to standard RNA templates during reverse transcription. The system comprises: (1) titration of a fixed amount of standard RNA with four different amounts of total RNA in each tube during cDNA synthesis; (2) amplification of each of the four cDNAs with four consecutive PCR cycles; and (3) quality control reactions in which synthesised quality control RNA (rather than total RNA) is added to the standard RNA under the same RT PCR conditions as the assay reaction. To obtain reproducible data, we suggest three criteria for analysis of RT PCR results. Employing these criteria, reproducibility of RT PCR was markedly improved with an inter-assay CV of 6.5% (n=5). Using this system, we are able to detect reduction in mRNA levels of all fibrinogen genes caused by dietary protein restriction in rats after weaning (alpha 39%, p= 0. 028; beta 55%, p = 0.017; gamma 35 %, p= 0.038), with a parallel reduction of plasma fibrinogen concentration (mean (+/-SD), 157(+/-19) versus 130(+/-14) mg/dl, p=0.006).

Analysis of Variance↗

Estrogen receptor-alpha and C-ERBB-4 expression in breast carcinomas.

The presence of estrogen receptors (ERs) in breast carcinomas is important for clinical response to endocrine therapy. However, the cellular mechanisms following ER activation are not fully understood. It has been indicated that expression of the ER is associated with the expression of c-erbB-4. To address this question, 103 breast carcinoma samples were studied using reverse transcriptase polymerase chain reaction (RT-PCR) analysis after application of a microselection method for RNA isolation. Total RNA for RT-PCR was isolated from 20-microm-thick frozen sections, which were made from microselected areas. Paraffin blocks from 98 of these 103 tumors were also immunohistochemically examined. Significant associations between ER-alpha and c-erbB-4 mRNA and protein expressions were found in the present study with both methods. One-fourth of the tumors did not express ER-alpha (22%, 24%, and 26% with chemical binding, immunohistochemistry, and RT-PCR, respectively). About one-half of the ER-alpha negative tumors did not express c-erbB-4 on both mRNA and protein levels (48% with RT-PCR and 46% with immunohistochemistry, P=0.001 for both methods). The endocrine therapy responsive breast cancer cell lines MCF-7 and T47-D were positive for both ER-alpha and c-erbB-4 expression, while the endocrine therapy nonresponsive breast cancer cell lines MDA-MD-231 and SK-BR-3 were not. Thus, we confirm the association between the expression of ER-alpha and c-erbB-4 mRNA and protein in breast carcinomas, indicating a role for c-erbB-4 in estrogen signal transduction.

Breast Neoplasms↗

Quantitation of GLUT1 and GLUT4 mRNA using a solution hybridization assay.

The development of a solution hybridization assay for detecting GLUT1 and GLUT4 mRNA is described. The details of this assay are described in which copy RNA is used to quantitate messenger RNA in total RNA samples. This solution hybridization assay is highly specific and reproducible and is significantly more sensitive than Northern blotting. Since GLUT mRNAs can be quantitated in as little as 25 mg tissue, this technique is essential when the supply of tissue is limited. Furthermore, the elimination of gel-based separation techniques allows for mRNA quantitation in several hundred samples within two days following isolation of samples.

Animals↗

Quantitation of isotypes of D2 receptors using solution hybridization.

Solution hybridization was used to quantitate the expression of the long and short splice variants of mRNA coding for the dopamine D2 receptor. Sequences corresponding to 450 bases of the coding region of the long form of the third intracellular loop and the full-length coding sequences of the long and short isoforms of the D2 receptor were amplified using PCR and cloned into a Bluescribe (pBS+) vector. Phage polymerases were used to synthesize riboprobes complementary to the third intracellular loop. Hybridization was carried out using sense strand RNA or total RNA isolated from tissue or cells. After hybridization and digestion with nucleases, the hybridization products were size-fractionated on a urea acrylamide gel. The RNA coding for the D2 receptor appeared as two distinct bands. One band (438 base pairs) represents the long form of the receptor and a second band (285 base pairs) represents the short form of the RNA coding for the receptor. Quantitation of the amount of RNA present suggests that in the striatum the long form of RNA coding for the receptor is expressed at higher levels than is the short form. In a cell line containing dopamine receptors derived from the pituitary (SUPI), the long form predominates to an even greater extent than in the striatum.

Amino Acid Sequence↗