Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “cDNA”

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 55 records · Page 3Linked to original sources

Toward a whole cDNA catalog: construction of an equalized cDNA library from mouse embryos.

The construction of a cDNA library containing all genes without redundancy is one of the major technical challenges for biology. Toward this goal, we have developed an equalized (normalized) cDNA library from mRNA pools derived from mouse embryos that cover the entire period of mouse ontogenesis. Colony hybridization analyses with 11 genes showed the reduction of abundance variation from at least 6000-fold in the unequalized S-library to approximately 33-fold in the EIII-library, which was constructed after three cycles of equalization procedure. Limiting dilution PCR analyses with 26 tissue-specific genes showed the reduction of abundance variation from at least approximately 1,000,000-fold in the S-cDNA mixture to approximately 100-fold in the EIII-cDNA mixture. Based on these analyses, we estimate that at least 15,000 independent cDNA clones are included with little redundancy in the EIII-cDNA library. This will be a useful resource for mouse biology as well as the mouse genome project.

Animals↗

Alkaline phosphatase conjugated protein A as a sensitive reagent to immunoscreen an expression cDNA plasmid library: isolation of cDNA to the calcium-binding protein of the chick embryonic chorioallantoic membrane.

A highly efficient immunoscreening procedure has been developed to isolate cDNA clones to the calcium-binding protein (CaBP) of the chick embryonic chorioallantoic membrane (CAM). A library of total CAM cDNA was constructed using the expression plasmid vector, pUC 19. Bacterial clones containing plasmids with CaBP cDNA inserts were detected immunohistochemically based on their expression of hybrid CaBP protein sequences. For immunodetection, nitrocellulose bacterial colony replicas were treated with specific antibodies to the CaBP followed by incubation with Staphylococcus aureus Protein A conjugated with alkaline phosphatase (AP) which served as a secondary immunoreagent. Positive clones were then histochemically identified based on AP enzyme activity. The identity of the immunopositive clones was further verified by in vitro translation of mRNA selected by hybridization to the cloned cDNA. The AP-based immunoscreening procedure yields stable reaction products with relatively low background, and should find general application for isolating specific cDNA clones from expression cDNA libraries.

Alkaline Phosphatase↗

Vimentin cDNA clones covering the complete intermediate-filament protein are found in an EHS tumor cDNA library.

Intermediate filaments are part of the cytoskeleton of most cells. To analyze changes in intermediate filament synthesis, we have isolated two cDNA clones (pV-C25, pV-C877) that cover the complete coding sequence of the murine intermediate filament protein vimentin. The cDNA clones were isolated from a murine Engelbreth-Holm-Swan (EHS) tumor cDNA library by screening under (i) non-stringent conditions with a synthetic oligodeoxynucleotide (oligo), LW-36, which is specific for type-IV collagen, and (ii) stringent conditions with oligo LW75, which was derived from the vimentin clone pV-C25. The cDNA clones contain 38 nucleotides (nt) of the 5'-untranslated region, 1398 nt of the coding region and 7 nt of the 3'-untranslated region. Comparing the mouse sequence with the published sequence for vimentin from hamster, human and chicken, we find shared identities of 99, 97 and 87%, respectively. Since the cDNA clones have been isolated from a basement membrane tumor (EHS) cDNA library, we measured the vimentin mRNA production in EHS tumor cells in culture, and found that this mRNA is half as abundant as mRNA for type-IV mRNA.

Amino Acid Sequence↗

cDNA cloning and sequence and cDNA-directed expression of human P450 IIB1: identification of a normal and two variant cDNAs derived from the CYP2B locus on chromosome 19 and differential expression of the IIB mRNAs in human liver.

A cDNA designated hIIB1, representing the entire coding sequence of a P450 in the IIB gene family, was isolated from a human liver lambda gt11 library by using the rat IIB1 cDNA as a probe. The hIIB1 protein, deduced from the cDNA sequence, contained 491 amino acids, had a calculated molecular weight of 56,286, and displayed 76% amino acid similarity with the rat IIB1 protein. Expression of this cDNA, using the vaccinia virus system, yielded a P450 that had a reduced CO-binding spectrum with an absorption maximum of 452 nm. The expressed human enzyme was able to catalyze the deethylation of 7-ethoxy-coumarin. Total RNA from 13 livers was probed for levels of hIIB mRNA. Two livers had high levels, four contained moderate levels, and eight contained very low, or no detectable, mRNA. These data suggest either that defective hIIB1 genes exist in humans or that the hIIB1 gene is regulated and variably induced in our liver specimens. To search for mutant mRNA transcripts, libraries were constructed from livers expressing low levels of hIIB1 mRNA. A cDNA, designated hIIB2, was isolated that was identical with the hIIB1 cDNA except for the presence of an unusual alteration of the DNA near its 5' end corresponding to the putative exon 4. This alteration was caused by a deletion of 29 bp and an insertion of 44 bp of nonhomologous DNA. This sequence replacement occurs at the junction of the third and fourth exons as predicted from the structure of the rat IIB1 gene, suggesting that a faulty splice might have given rise to the variant hIIb2 transcript.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The human CYP2F gene subfamily: identification of a cDNA encoding a new cytochrome P450, cDNA-directed expression, and chromosome mapping.

A cDNA coding for a P450, designated IIF1, was isolated from a human lung lambda gt11 library by screening with a human IIC9 cDNA probe. The cDNA-encoded IIF1 protein had 491 amino acids and a calculated molecular weight of 55,507. IIF1 cDNA, expressed by using a vaccinia virus vector, produced a cytochrome with a lambda max of 454 nm when reduced and complexed with carbon monoxide. This enzyme was able to dealkylate ethoxycoumarin, propoxycoumarin, and pentoxyresorufin but possessed no activity toward ethoxyresorufin and only trace dearylation activity toward benzyloxyresorufin. A variant cDNA, designated IIF1v, was isolated that was identical with IIF1 except for the loss of two segments of 161 and 388 bp within the cDNA coding region. Two mRNAs, consistent with the predicted size of the IIF1 and IIF1v transcripts, were found at very low abundance in lung specimens by Northern blot analysis. A 2-kb transcript, hybridizing with the human IIF1, was also detected as an abundant mRNA in rat lung. The CYP2F gene subfamily was localized to human chromosome 19 and mouse chromosome 7. On the basis of Southern blotting analysis with multiple restriction enzymes, we conclude that the CYP2F1 gene is flanked by a second highly similar gene.

Amino Acid Sequence↗

Mouse beta 2-microglobulin cDNA clones: a screening procedure for cDNA clones corresponding to rare mRNAs.

We have isolated three cDNA clones for beta 2-microglobulin, the small subunit of the major histocompatibility antigens. beta 2-Microglobulin makes up less than 0.1% of mouse liver protein, and its mRNA is approximately 0.03% of liver poly(A)+ mRNA. The cDNA clones were identified by screening 1400 cDNA clones made from 9--10S mouse liver poly(A)+ mRNA. The procedure for screening the cDNA clones involved binding pooled plasmid DNA to nitrocellulose filters and testing the ability of each filter to select beta 2-microglobulin mRNA. The filter-selected mRNAs were assayed for their ability to direct the synthesis of beta 2-microglobulin in translation reactions in vitro. The isolated clones were shown by nucleotide sequence analysis to encode beta 2-microglobulin. The positive-selection--hybridization assay has been modified to facilitate the screening of large numbers of cDNA clones, and the modified assay should allow the isolation of cDNAs corresponding to any mRNA whose in vitro translation products can be immunoprecipitated. These modifications are of particular value in the isolation of cDNA clones corresponding to rare species of mRNA.

Amino Acid Sequence↗

Molecular cloning of a cDNA that encodes the peptide core of a mouse mast cell secretory granule proteoglycan and comparison with the analogous rat and human cDNA.

A cDNA that encodes a mouse secretory granule proteoglycan peptide core was isolated from a cDNA library prepared from nontransformed mouse bone marrow-derived mast cells (BMMC) using as a probe a 280-base-pair fragment of a rat cDNA that encodes the proteoglycan peptide core of rat basophilic leukemia (RBL)-1 cells. Based on the consensus nucleotide sequence and deduced amino acid sequence of the cDNA, the mouse BMMC proteoglycan peptide core is 16.7 kDa and contains a 21-amino acid glycosaminoglycan attachment region consisting of alternating serine and glycine residues. When the predicted amino acid sequence of the mouse BMMC proteoglycan peptide core was compared with the predicted amino acid sequences of the homologous molecules expressed in RBL-1 cells and in human promyelocytic leukemia HL-60 cells, the mouse-derived sequence was more closely homologous to the rat sequence than the human sequence except for the length of the serine-glycine repeat region. The N terminus was found to be a highly conserved region of the molecule in the three species, suggesting that this region is important for the structure, function, and/or metabolism of this family of proteoglycans. Nucleotide sequences within the 5' and 3' untranslated regions of the mouse, rat, and human proteoglycan cDNA were conserved. That similar sequences were also present in the corresponding regions of a cDNA that encodes a rat mast cell protease suggests that particular nucleotide sequences may be important for regulation of expression of those proteins that are destined to reside in secretory granules.

Aggrecans↗

Sequence of the cDNA and 5'-flanking region for human acid alpha-glucosidase, detection of an intron in the 5' untranslated leader sequence, definition of 18-bp polymorphisms, and differences with previous cDNA and amino acid sequences.

Acid maltase or acid alpha-glucosidase (GAA) is a lysosomal enzyme that hydrolyzes glycogen to glucose and is deficient in glycogen storage disease type II. Previously, we isolated a partial cDNA (1.9 kb) for human GAA; we have now used this cDNA to isolate and determine sequence in longer cDNAs from four additional independent cDNA libraries. Primer extension studies indicated that the mRNA extended approximately 200 bp 5' of the cDNA sequence obtained. Therefore, we isolated a genomic fragment containing 5' cDNA sequences that overlapped the previous cDNA sequence and extended an additional 24 bp to an initiation codon within a Kozak consensus sequence. The sequence of the genomic clone revealed an intron-exon junction 32 bp 5' to the ATG, indicating that the 5' leader sequence was interrupted by an intron. The remaining 186 bp of 5' untranslated sequence was identified approximately 3 kb upstream. The promoter region upstream from the start site of transcription was GC rich and contained areas of homology to Sp1 binding sites but no identifiable CAAT or TATA box. The combined data gave a nucleotide sequence of 2,856 bp for the coding region from the ATG to a stop codon, predicting a protein of 952 amino acids. The 3' untranslated region contained 555 bp with a polyadenylation signal at 3,385 bp followed by 16 bp prior to a poly(A) tail. This sequence of the GAA coding region differs from that reported by Hoefsloot et al. (1988) in three areas that change a total of 42 amino acids. Direct determination of the amino acid sequence in one of these areas confirmed the nucleotide sequence reported here but also disagreed with the directly determined amino acid sequence reported by Hoefsloot et al. (1988). At two other areas, changes in base pairs predicted new restriction sites that were identified in cDNAs from several independent libraries. The amino acid changes in all three ares increased the homology to rabbit-human isomaltase. Therefore, we believe that our nucleotide sequence for GAA is more precise. We have also identified single base-pair polymorphisms at 18 sites for human GAA, some of which are not silent.

Amino Acid Sequence↗

cDNA cloning of a novel heterogeneous nuclear ribonucleoprotein gene homologue in Caenorhabditis elegans using hamster prion protein cDNA as a hybridization probe.

The mammalian prion protein (PrPc) is a cellular protein of unknown function, an altered isoform of which (PrPsc) is a component of the infectious particle (prion) thought to be responsible for spongiform encephalopathies in humans and animals. The evolutionary conservation of the PrP gene has been reported in the genomes of many vertebrates as well as certain invertebrates. In the genome of nematode Caenorhabditis elegans, the sequence capable of hybridizing with the mammalian PrP cDNA probe has been demonstrated, predicting the presence of the PrP gene homologue in C.elegans. In this study, Southern analysis with the hamster PrP cDNA (HaPrP) probe confirmed the previous observation. Moreover, Northern analysis revealed that the sequence is actively transcribed in adult worms. Thus, we screened C.elegans cDNA libraries with the HaPrP probe and isolated a cDNA that hybridizes to the same sequence in C.elegans that hybridized with the HaPrP probe in the Southern and Northern analyses. The deduced amino acid sequence of this cDNA, however, is substantially homologous with heterogeneous nuclear ribonucleoprotein (hnRNP) core proteins rather than mammalian PrPc. The hnRNPs contain the glycine-rich domain in the C-terminal half of the molecule, which also seemed to be in PrPc at the N-terminal half of the molecule. Both of the glycine-rich domains are composed of tracts with high G + C content, indicating that these tracts may due to the hybridizing signals. These results suggest that this cDNA clone is derived from a novel hnRNP gene homologue in C.elegans but not from a predicted PrP gene homologue.

Amino Acid Sequence↗

Preparation of a differentially expressed, full-length cDNA expression library by RecA-mediated triple-strand formation with subtractively enriched cDNA fragments.

We have developed a fast and general method to obtain an enriched, full-length cDNA expression library with subtractively enriched cDNA fragments. The procedure relies on RecA-mediated triple-helix formation of single-stranded cDNA fragments with a double-stranded cDNA plasmid library. The complexes were then captured from the solutions using the digoxigenin-antidigoxigenin paramagnetic beads followed by recovery of the enriched double-stranded cDNA expression library. We have observed a linear relation between the capture of full-length cDNAs in the library and the fold enrichment in the subtracted cDNA population.

Affinity Labels↗

A novel cDNA extension procedure. Isolation of chicken fatty acid synthase cDNA clones.

We have developed a simple and versatile cDNA extension method using lambda-exonuclease-generated single-stranded DNA as a primer. This plasmid-based cDNA extension method can be used to synthesize unidirectional extensions of the existing cDNA clones or subcloned fragments of the untranslated and exon regions of genomic DNA clones. The method is simple to use and involves no addition of linkers or tailing. We have successfully used this method to isolate 4.6 kilobase pairs of chicken fatty acid synthase cDNA clones, starting from the fragment of a genomic clone coding for the untranslated region of the fatty acid synthase mRNA. About 2.8 kilobase pairs of the cDNA coding for the chicken fatty acid synthase has been sequenced. The sequence has an open reading frame coding for 945 amino acids of the fatty acid synthase. In the sequence, we have identified the enoyl reductase, NADPH binding region, a putative beta-ketoacyl reductase region, and the entire sequences of acyl carrier protein and the thioesterase domains. The arrangement of these partial activities in this sequence confirms the arrangement of these activities as determined through partial proteolytic mapping studies. The amino acid sequence of chicken fatty acid synthase deduced from cDNA sequences shows a high degree of homology with the rat fatty acid synthase sequence, suggesting that these multifunctional proteins are conserved evolutionarily.

Amino Acid Sequence↗

Structure of mouse interferon-beta cDNA clones: sequence rearrangements in a cloned cDNA.

A fraction enriched in interferon (IFN) mRNA was prepared from mouse C243-3 induced cells and was used for the construction of a cDNA library. Two plasmids were obtained after screening by differential colony hybridization and IFN mRNA hybridization-selection and translation. The nucleotide sequences of the cDNA inserts revealed that both were partial copies of IFN-beta mRNA. The cDNA 861 corresponds to the entire 3' nontranslated region of the mRNA while the cDNA 2939 consists of rearranged translated regions of IFN mRNA. A mechanism for the rearrangement events during cDNA synthesis is proposed. A chromosomal DNA fragment hybridizing to cDNA 2939 was identified by screening a mouse genomic library.

Animals↗

Rat very-long-chain acyl-CoA dehydrogenase, a novel mitochondrial acyl-CoA dehydrogenase gene product, is a rate-limiting enzyme in long-chain fatty acid beta-oxidation system. cDNA and deduced amino acid sequence and distinct specificities of the cDNA-expressed protein.

cDNA encoding the precursor of rat very-long-chain acyl-CoA dehydrogenase (VLCAD) was cloned and sequenced. The longest cDNA insert had 2117 bases. This cDNA encodes the entire protein of 655 amino acids, including a 40-amino acid leader peptide and a 615-amino acid mature polypeptide. The identity of the VLCAD clone was confirmed by matching the amino acid sequence predicted from the cDNA to the NH2 terminus and seven internal proteolytic peptide sequences from purified rat liver VLCAD. The calculated molecular masses of the precursor protein, the mature protein, and the leader peptide are 70,961, 66,508, and 4,470 daltons, respectively. At the amino acid level, the significant homology to the other acyl-CoA dehydrogenases was found at the range from the 94th to the 473rd amino acid residue of the amino-terminal side. The catalytic residue and the residue lying near the dimethylbenzene side (si-side) of the flavin ring were speculated to be Glu-462 and Trp-249, respectively. The VLCAD cDNA was expressed in four kinds of hepatoma cells using a vaccinia virus expression system and was shown to encode the catalytically active enzyme. The cDNA expression in both rat hepatoma H4IIEC3 and McA-RH7777 enhanced about 3-fold mitochondrial beta-oxidation activity of long-chain fatty acids such as palmitic acid and stearic acid; hence, VLCAD is probably a rate-limiting enzyme in the long-chain fatty acid beta-oxidation system in these cell lines.

Acyl-CoA Dehydrogenase, Long-Chain↗

Structure of a gene and cDNA of a major constitutive form of testosterone 6 beta-hydroxylase (P450/6 beta A) encoding CYP3A2: comparison of the cDNA with P450PCN2.

P450/6 beta A gene was isolated from a rat genomic library and its encoding protein was characterized by the expression of the corresponding cDNA in COS-1 cells. Between exon regions of P450/6 beta A gene and P450PCN2 cDNA (F. J. Gonzalez, B.-J. Song, and J. P. Hardwick (1986) Mol. Cell. Biol. 6, 2969-2976), 12 nucleotide differences were observed, involving two amino acid changes, His-->Asp [429] and Asp-->Gly [445], respectively. A cDNA (6 beta-A cDNA), whose nucleotide sequence was completely identical with the corresponding exon of P450/6 beta A gene, was isolated from a rat cDNA library. Northern blotting using specific oligonucleotide probes showed that 6 beta-A mRNA, but not P450PCN2 mRNA, was a major form in livers of the male rats. 6 beta-A protein expressed in COS-1 cells (at about 0.1 to 0.3% of total microsomal protein) catalyzed testosterone 6 beta-hydroxylation. The reaction was enhanced by the addition of NADPH-P450 reductase (2.5-fold) and by the simultaneous addition of cytochrome b5 and NADPH-P450 reductase (13.7-fold). Catalytic properties of 6 beta-A for typical CYP3A substrates were consistent with those of purified rat P450(6 beta-1) and P450(6 beta-3), corresponding, respectively, to CYP3A2 or the variant form (K. Nagata, F. J. Gonzalez, Y. Yamazoe, and R. Kato (1990) J. Biochem. 107, 718-725). Apparent Michaelis constants (Km) of 6 beta-A for testosterone 6 beta-hydroxylation and a O-dealkylation ratio of propoxycoumarin to pentoxycoumarin, however, showed higher degrees of similarity to those of purified P450(6 beta-3) than those of P450(6 beta-1).

Amino Acid Sequence↗

Revolutions in rapid amplification of cDNA ends: new strategies for polymerase chain reaction cloning of full-length cDNA ends.

Rapid amplification of cDNA ends (RACE) is a polymerase chain reaction (PCR)-based technique which was developed to facilitate the cloning of full-length cDNA 5'- and 3'-ends after a partial cDNA sequence has been obtained by other methods. While RACE can yield complete sequences of cDNA ends in only a few days, the RACE procedure frequently results in the exclusive amplification of truncated cDNA ends, undermining efforts to generate full-length clones. Many investigators have suggested modifications to the RACE protocol to improve the effectiveness of the technique. Based on first-hand experience with RACE, a critical review of numerous published variations of the key steps in the RACE method is presented. Also included is a detailed, effective protocol based on RNA ligase-mediated RACE/reverse ligation-mediated PCR, as well as a demonstration of its utility.

Base Sequence↗

Construction of Onchocerca volvulus cDNA libraries and partial characterization of the cDNA for a major antigen.

Adult Onchocerca volvulus were isolated from nodules removed from onchocerciasis patients at four locations--two in the West African Sudan-savanna region (near Bamako, Mali, and Touboro, Cameroon), one in a West African forest region (Kumba, Cameroon) and one near Guatemala City, Guatemala. Four different cDNA expression libraries were constructed in bacteriophage lambda gt11 using poly(A)+ RNA from the adult female worms. Individual cDNA clones of single copy genes were used to compare the genomes of parasites from the different locales and to show that the haploid genome of O. volvulus is 1.5 x 10(8) base pairs. About 1 in 700 recombinant clones in each of the four amplified cDNA libraries produces a fusion protein recognized by pooled human anti-O. volvulus antisera. Partial sequence determination of a 2.0 kb cDNA clone for an O. volvulus protein that induces an immunodominant response in rabbits revealed that this antigen has sequence similarities with Caenorhabditis elegans myosin and with schistosome paramyosin (which confers partial protection against schistosome infection). The four cDNA libraries have been deposited with American Type Culture Collection (ATCC), 12301 Parklawn Drive, Rockville, MD 20852, U.S.A., for general distribution under ATCC Number 37509.

Animals↗

A powerful method for the preparation of cDNA libraries: isolation of cDNA encoding a 100-kDal nucleolar protein.

An easy and quick method to synthesize large cDNA molecules and to clone them with very high efficiency in the expression vector lambda gt11 is described. The technique employs RNase H and Escherichia coli DNA ligase treatment during second-strand synthesis, followed by repair of the ds cDNA extremities by S1 nuclease and PolIk (Klenow fragment) treatment. This treatment allows efficient addition of suitable linkers and results in a 100-fold increase in the yield of cloned cDNA, when compared with other published techniques. Using 75 ng of poly(A)+ RNA from CHO cells, we have prepared a library of 1.1 X 10(7) clones. This library was screened with polyclonal antibodies raised against a 100-kDal nucleolar protein of CHO cells. Five recombinants were isolated with inserts of 500-2500 bp. The average size of cDNA obtained by this method is considerable: the 2500-bp cDNA represents 90% of the mRNA coding for the 100-kDal protein.

Animals↗

Random rapid amplification of cDNA ends (RRACE) allows for cloning of multiple novel human cDNA fragments containing (CAG)n repeats.

We describe a new technique for isolating cDNA fragments in which (i) either a partial sequence of the cDNA is known or (ii) a repeat sequence is utilized. We have used this technique, termed random rapid amplification of cDNA ends (random RACE), to isolate a number of trinucleotide repeat (CAG)n-containing genes. Using the random RACE (RRACE) technique, we have isolated over a hundred (CAG)n-containing genes. The results of our initial analysis of ten clones indicate that three are identical to previously cloned (CAG)n-containing genes. Three of our clones matched with expressed sequence tags, one of which contained a CA repeat. The remaining four clones did not match with any sequence in GenBank. These results indicate that this approach provides a rapid and efficient method for isolating trinucleotide repeat-containing cDNA fragments. Finally, this technique may be used for purposes other than cloning repeat-containing cDNA fragments. If only a partial sequence of a gene is known, our system, described here, provides a rapid and efficient method for isolating a fragment of the gene of interest.

Base Sequence↗