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At least 253 records · Page 14Linked to original sources

Identification of sequence motifs causing band compressions on human cDNA sequencing.

In order to characterize DNA sequences leading to band compressions in an automated dideoxy-DNA sequencing system which uses fluorescent dye primers, we compiled DNA sequences at compression sites from accumulated sequence data of human cDNAs (about 205 kb in total length). The results clearly showed that almost all the 3'-end regions at the compression sites (> 98%) carried two types of common sequence motifs. The predominant one (about 68%) contained a sequence of 5'-Y'GN1-2AR'-3' (Y' and R': pyrimidine and purine residues capable of base pairing). The remainder (about 32%) carried a hairpin motif with a relatively stable GC-rich stem (> or = 3 bp) connected by a loop consisting of 3 or 4 nucleotides. The occurrence of compressions at these motif sites was further confirmed by using synthetic DNAs with random sequences (about 58 kb in total length). Since DNA sequences at compression sites analyzed so far shared either of the type of motifs in the sequencing system employed here, it was possible to predict the nucleotide residue to be located at a compression site by carefully checking the sequence preceding the site.

Artifacts↗

PCR with end trimming and cassette ligation: a rapid method to clone exon-intron boundaries and a 5'-upstream sequence of genomic DNA based on a cDNA sequence.

We described a method for PCR amplification of unknown flanking genomic DNA fragments. This method is a combination of PCR with "end-trimming method" and "cassettes and cassette-primers method". In this method, genomic DNA was digested with three different groups of restriction enzymes. DNA in group 1 was digested with BamHI, BglII, FbaI, or MboI. DNA in group 2 was digested with BlnI, NheI, SpeI, or XbaI. DNA in group 3 was digested with SalI or XhoI. Digested DNA in each group was end-trimmed with Klenow fragment of DNA polymerase I in the presence of only one dNTP; dGTP, dCTP, and dTTP for group 1, 2, and 3, respectively. The synthesized cassettes, C1, C2, and C3, had 5'protruding sequences of 5'-ATC-3',5'-TAG-3', and 5'-CGA-3', respectively. Each compatible cassette was ligated to the end-trimmed DNAs in group 1-3, respectively. Nested PCR was then performed using an end-trimmed and cassette-ligated DNA as a template. Primers annealing to known sequences and cassettes were used for the nested PCR. The amplified DNA fragments were electrophoresed on a polyacrylamide gel and purified. The sequences of the DNA fragments were determined after cloning into pBluescript.

Amidophosphoribosyltransferase↗

The sexual inducer of Volvox carteri. Primary structure deduced from cDNA sequence.

The primary structure of the sexual inducer of Volvox carteri f. nagariensis has been deduced by cloning and sequence analysis of cDNA. The sexual inducer contains 208 amino acids including a signal sequence. A total of six potential N-glycosylation sites are found within the polypeptide chain. At the genomic level, the sexual inducer protein is encoded in five exons.

Algal Proteins↗

Purification and characterization of tilapia (Oreochromis mossambicus) deoxyribonuclease I--primary structure and cDNA sequence.

DNase I of tilapia (Oreochromis mossambicus) was purified to homogeneity. Tilapia DNase I is most active at pH 8.5 with Mg2+ as activator. The Ca2+/Mg2+ pair has a synergistic effect on activation. The enzyme is readily inactivated by heating above 55 degrees C, but is not inactivated by trypsin or 2-mercaptoethanol under alkaline conditions, with or without CaCl2. Its isoelectric point is 6.0. The 258-amino-acid sequence of tilapia DNase I was derived from overlapping sequences of tryptic, chymotryptic and CNBr peptides. The purified enzyme has two variants differing by a single Lys-->Arg mutation at position 125. The polypeptide chain has one disulfide bridge and one carbohydrate side chain. By mass spectrometry, the purified enzyme shows many molecular mass forms differing by Lys/Arg substitution and sugar-chain length. The major form has a molecular mass of 30,914 Da. A 1061-bp nucleotide sequence for the cDNA of tilapia DNase I, obtained by gene cloning and DNA sequencing, contains an ORF coding for a putative 26-residue transmembrane peptide and the mature DNase I polypeptide.

Amino Acid Sequence↗

Tektin B1 from ciliary microtubules: primary structure as deduced from the cDNA sequence and comparison with tektin A1.

Tektins are a class of proteins that form filamentous polymers in the walls of ciliary and flagellar microtubules, and they may also be present in centrioles, centrosomes and mitotic spindles. We report here the cloning and sequencing of a cDNA for ciliary tektin B1. Comparison of the predicted amino acid sequence of tektin B1 with the previously published sequence for tektin A1 reveals several features that better define this class of proteins. Like tektin A1, the central region of the tektin B1 polypeptide chain is predicted to form a coiled-coil rod, consisting of four major alpha-helical regions that are separated by non-helical linkers. Between the central rod domains of tektins A and B there is a 34%/20% amino acid sequence identity/similarity, including equivalent 50-residue segments containing 36 identities, and a high probability of long-range structural homology. The tektin polypeptide chains are divided into two major segments that have significant sequence homology to each other, both within a given tektin chain and between tektins A and B, indicative of gene duplication events. The tektins have a secondary structure and molecular design similar to, but a low primary sequence homology with, intermediate filament proteins. Unlike tektin A1, tektin B1 lacks any part of the C-terminal IFP consensus sequence.

Amino Acid Sequence↗

The cDNA sequence and chromosomal location of the murine GABAA alpha 1 receptor gene.

The murine GABAA/benzodiazepine (GABAA/BZ) receptor alpha 1 subunit cDNA has been isolated from a BALB/c mouse brain library and sequenced. The cDNA is 2665 nucleotides long with an open reading frame of 455 amino acids. It shows significant homology to the GABAA receptor alpha 1 subunit cDNA sequences of other species. Excluding deletions, the murine GABAA alpha 1 receptor exhibits 96% nucleotide and 100% amino acid sequence homology to the rat alpha 1 receptor cDNA and over 91% nucleotide and 98% amino acid sequence homology to the bovine and human alpha 1 receptor cDNAs in the protein coding region. This murine cDNA was used to locate the alpha 1 receptor subunit gene, Gabra-1, to murine Chromosome 11 between Il-3 and Rel. This assignment extends proximally the segment of mouse Chromosome 11 with known homology to human chromosome 5.

Amino Acid Sequence↗

Molecular cloning of androgen receptors from divergent species with a polymerase chain reaction technique: complete cDNA sequence of the mouse androgen receptor and isolation of androgen receptor cDNA probes from dog, guinea pig and clawed frog.

We have cloned and sequenced 2.8 kilobases of cDNA encoding the mouse androgen receptor by RNA amplification with transcript sequencing. Sequence analysis predicts that this cDNA contains an open reading frame of 2697 nucleotides encoding a polypeptide of 899 amino acids. Androgen receptor cDNA probes of dog, guinea pig, and frog were also isolated and sequenced using consensus primers derived from human and rat androgen receptor cDNAs. Northern blot analysis with the species-specific probes revealed similarities in size between amphibian and mammalian mRNAs. These results demonstrate the utility of this technique in obtaining nucleic acid probes and sequence information of steroid receptors from different species. The sequence data and the Northern blot analysis of the receptors in different species demonstrate that the androgen receptor has been well-conserved during evolution.

Amino Acid Sequence↗

Murine heparin cofactor II: purification, cDNA sequence, expression, and gene structure.

Heparin cofactor II (HCII) is a glycoprotein in human plasma that inhibits thrombin rapidly in the presence of dermatan sulfate or heparin. Unexpectedly, we found that HCII activity in murine plasma is present in two proteins of 68 and 72 kDa. The two proteins have the same N-terminal amino acid sequence, and both react with an antibody raised against the C-terminal nine amino acid residues of murine HCII predicted from the cDNA sequence. Treatment of the two proteins with peptide-N4-(N-acetyl-beta-glucosaminyl)asparagine amidase yields a single 54-kDa band. Thus, murine plasma contains two forms of HCII that appear to have identical amino acid sequences but differ in the composition of their N-linked oligosaccharides. HCII cDNA clones isolated from a murine liver library include a 1434 bp open reading frame following the first Met codon, a TAA stop codon, and 580 bp of 3'-untranslated sequence terminating in a poly(A) tail. The amino acid sequence deduced from the cDNA contains the N-terminal sequence of purified murine plasma HCII preceded by a 23-residue hydrophobic sequence presumed to be the signal peptide. The amino acid sequence of murine HCII is 87% identical to that of human HCII, the greatest variability occurring in the N-terminal portion of the protein. Northern blot analysis reveals a 2.3-kb HCII mRNA in murine and human liver, but no HCII mRNA is detectable in heart, brain, spleen, lung, skeletal muscle, kidney, testis, placenta, pancreas, or intestine. Southern blot analysis of restriction fragment length polymorphisms in progeny on interspecific and intersubspecific crosses indicates that mice have a single HCII gene (designated Hcf2), which maps to chromosome 16 between Prm-1 and Igl. The murine HCII gene is approximately 7.1 kb in size and consists of at least four exons and three introns. The intron/exon organization is identical to that of the human HCII gene except at the 5' end, where the murine gene may lack a large intron in the 5'-untranslated region. Our results indicate that HCII is more highly conserved than the human and murine homologues of other serpins such as alpha 1-antitrypsin and alpha 1-antichymotrypsin.

Amino Acid Sequence↗

Sequence analysis of frog alpha B-crystallin cDNA: sequence homology and evolutionary comparison of alpha A, alpha B and heat shock proteins.

alpha-Crystallin is a major lens protein present in the lenses of all vertebrate species. Recent studies have revealed that bovine alpha-crystallins possess genuine chaperone activity similar to small heat-shock proteins. In order to facilitate the determination of the primary sequence of amphibian alpha B-crystallin, cDNA encoding alpha B subunit chain was amplified using a new "Rapid Amplification of cDNA Ends" (RACE) protocol of Polymerase Chain Reaction (PCR). PCR-amplified product corresponding to alpha B subunit was then subcloned into pUC18 vector and transformed into E. coli strain JM109. Plasmids purified from the positive clones were prepared for nucleotide sequencing by the automatic fluorescence-based dideoxynucleotide chain-termination method. Sequencing more than five clones containing DNA inserts coding for alpha B-crystallin subunit constructed only one complete full-length reading frame of 522 base pairs similar to that of alpha A subunit, covering a deduced protein sequence of 173 amino acids including the universal translation-initiating methionine. The frog alpha B crystallin shows 69, 66 and 56% whereas alpha A crystallin shows 83, 81 and 69% sequence similarity to the homologous chains of bovine, chicken and dogfish, respectively, revealing a more divergent structural relationship among these alpha B subunits as compared to alpha A subunits. Structural analysis and comparison of alpha A- and alpha B-crystallin subunits from eye lenses of different classes of vertebrates also shed some light on the evolutionary relatedness between alpha B/alpha A crystallins and the small heat-shock proteins.

Amino Acid Sequence↗

The complete cDNA sequence encoding plasminogen from the European hedgehog (Erinaceus europaeus).

Using a PCR-based strategy, we have determined the complete cDNA sequence encoding hedgehog plasminogen (Plg). The 2700-nucleotide cDNA (corresponding to a 2.9-kb liver-derived transcript) encodes an open reading frame of 811 amino acids which shares 74-76% identity with Plg characterized from mouse, human and rhesus monkey. Residues corresponding to the catalytic triad, tPA-cleavage site, as well as seven of the eight lysine-binding residues in kringle IV are conserved in the hedgehog. However, potential N-linked glycosylation sites which have been reported in human and rhesus Plg are not present in analogous positions in the hedgehog Plg sequence.

Amino Acid Sequence↗

Partial titin cDNA sequence isolated from rabbit cardiac muscle RNA.

Two regions of the rabbit cardiac titin cDNA were amplified from rabbit cardiac muscle total RNA using primers based on rabbit skeletal muscle titin (connectin) cDNAs. These 1.7 kb and 1.5 kb RNA-PCR products were based on the 3' regions of the skeletal muscle titin clones CE12 and MS2, respectively. The cDNA sequence of the 1.7 kb product was extended an additional 1.5 kb by a novel 3' extension technique which used random primers in RNA-PCR. The cardiac titin cDNAs were 99% identical in nucleotide sequence to their skeletal muscle counterparts and predicted two types of 100-residue repeats. Southern blot analysis suggested that both cardiac and skeletal titin are encoded by the same gene. PCR amplification of human genomic DNA with titin specific primers indicated that there is strong sequence similarity between rabbit and human titin sequences. The successful amplification of a 907 basepair region from human genomic DNA suggested that titin contains large exons which span multiple motif borders. This may be particularly advantageous in the processing of such a large RNA transcript.

Animals↗

An approach towards experimental cDNA sequence determination of predicted genes: an example from Arabidopsis U3-55k homologues.

Experimental cDNA sequence determinations lag behind in silico gene structure predictions in some recently sequenced genomes. This may be due in part to low transcript abundance and/or the severely spatio-temporarily restricted expression pattern of some genes. Here we characterize the predicted repressed gene of Arabidopsis thaliana (At4g21130) that encodes a homologue of the Arabidopsis U3-55K-like protein (At4g05410) and of the U3-55K (RNU3IP2, Rrp9p) proteins from other eukaryotes. In man and yeast, U3-55K is involved in the processing of the pre-ribosomal RNA. Here we show that treatment with inhibitors of histone deacetylases (trichostatin A, sodium butyrate) or DNA methyltransferases (5-aza-2'-deoxycytidine) induces a low but distinct level of mRNA from the repressed Arabidopsis At4g21130 locus, which can be detected by RT-PCR amplification. Direct sequencing of PCR products reveals the open reading frame that differs, in part, from the hypothetical one and encodes a seven-WD-repeat protein highly conserved when compared to U3-55K proteins from various eukaryotic species. This suggests the conservation of its function. The described approach may help to determine the nucleotide sequences of transcripts from predicted genes with a low level of expression.

Amino Acid Sequence↗

Murine myb protooncogene mRNA: cDNA sequence and evidence for 5' heterogeneity.

We have sequenced two overlapping cDNA clones from a murine pro-B cell library to generate a composite sequence that includes 3413 bases of the murine c-myb mRNA. There is a single long open reading frame, beginning at the first base of this sequence, and continuing from the first methionine codon at nucleotide 265 to a TGA termination codon at nucleotide 2173. The predicted murine translation product contains 636 amino acid residues and is about 71 kDa long, which is in good agreement with the 75-kDa molecular size determined for the avian c-myb protein. The murine c-myb protein shows a striking 82% amino acid homology in the region (amino acids 71-444) where it can be compared to the published avian c-myb gene sequence. S1 nuclease protection analysis indicates extreme heterogeneity at the 5' end of steady-state murine c-myb mRNA.

Animals↗

Comparison of human lymphotoxin gene expression in CHO cells directed by genomic DNA or cDNA sequences.

Four recombinant plasmids coding for human lymphotoxin (LT) were constructed with genomic DNA (gDNA) or cDNA sequences. The simian virus 40 (SV40) early region, which contains the early promoter, an intron of the small-t-antigen-encoding gene, and polyadenylation signal sequences, was used for transcriptional and post-transcriptional regulatory elements in the construction of these plasmids. Two of them contained gDNA and the other two contained cDNA. One of the gDNA plasmids and one of the cDNA plasmids carry the SV40 intron between the structural gene and polyadenylation signal. Transient and stable gene expression levels of these plasmids in Chinese hamster ovary (CHO) cells were measured by assaying the secreted LT. The plasmid carrying gDNA without the SV40 intron was expressed more efficiently than the other three plasmids in both transient and stable gene expression assays.

Animals↗

The cDNA sequence of an excitatory insect selective neurotoxin from the scorpion Buthus martensi Karsch.

The full-length cDNA of an excitatory insect selective neurotoxin was amplified from total cDNAs of venomous glands of the scorpion Buthus martensi Karsch (BmK) using the 3'RACE and 5'RACE (rapid amplification of cDNA ends, RACE) method and sequenced. The cDNA encoded a precursor of the insect toxin of 88 amino acid residues, including a signal peptide of 18 residues and a mature toxin of 70 residues. The cDNA deduced sequence of this toxin was homologous with the determined amino acid sequence of BmK IT1, an excitatory insect toxin purified from the scorpion venom, except for three different residues, two at the positions 24-25, and another in the COOH-terminus of the toxin. Among them the COO-terminal residue Gly in the cDNA deduced sequence was predominantly different from the conserved residue Asn found in other known scorpion excitatory insect toxins.

Amino Acid Sequence↗

cDNA sequence and structure of a trout HMG-2 gene. Evidence for a trout-specific 3'-untranslated region.

A complete cDNA sequence (1026 bp) and a partial structure of a gene encoding the trout testis chromosomal HMG (high mobility group) 2 protein (HMG-T2) is presented. The deduced protein consists of 214 amino acids and shares over 80% similarity to the trout HMG-1 protein (HMG-T1) as well as to the mammalian or avian HMG-2 proteins. Northern blot analysis revealed two transcripts, a major one of 1.2 kb and a minor one of 1.6 kb. Southern analysis and polymerase chain reaction of trout genomic DNA indicated that the HMG-T2 gene is encoded by several introncontaining genes. The 5'-UTR (untranslated region) of the HMG-T2 is interrupted by an intron and the coding region of the HMG-T2 is divided into four exons by three relatively short introns (173, 91 and 78 bp). The exon/intron boundaries of trout HMG-2 are identical to those of human HMG-2, as reported earlier [Shirakawa and Yoshida, J. Biol. Chem. 267 (1992) 6641-6645], suggesting the evolution of the HMG-1/2 family genes from a common ancestor. Phylogenetic analysis indicated that the common ancestor of trout HMG-1/2 genes very likely diverged from the ancestor of the mammalian (or avian) HMG-1/2 genes before its separation into two distinct mammalian or (avian) HMG-1 and HMG-2 genes. Sequence comparisons of the 3'UTR of trout HMG-2 cDNA with the corresponding regions in the mammalian (or avian) HMG-2 revealed that the trout 3'-UTR was clearly distinct from the 3'-UTR of the mammalian or avian HMG-2 cDNAs which were otherwise remarkably well conserved.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗