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The lactate-proton symport of Saccharomyces cerevisiae is encoded by JEN1.

A mutant of Saccharomyces cerevisiae deficient in the lactate-proton symport was isolated. Transformation of the mutant with a yeast genomic library allowed the isolation of the gene JEN1 that restored lactate transport. Disruption of JEN1 abolished uptake of lactate. The results indicate that, under the experimental conditions tested, no other monocarboxylate permease is able to efficiently transport lactate in S. cerevisiae.

Biological Transport↗

Selective generation of chromosomal cosmid libraries within the Trypanosoma cruzi genome project.

From a total genomic cosmid library of the pathogen Trypanosoma cruzi, specific sublibraries of the smallest four chromosomes were isolated by hybridization of the respective chromosomal bands obtained from pulsed-field gels. These libraries form the basis for initial mapping analyses that should provide information useful for both the ongoing physical mapping of the entire genome and eventual sequence analyses. Selectivity of the procedure was high with 75% to 92%, although cross-hybridization had to be expected from ubiquitous DNA features, such as centromeric and telomeric sequences, and other regions homologous between individual chromosomes. Overall, the number of identified clones was slightly higher than expected but well within the intrinsic experimental variation considering the uncertainty about the exact genome size, the variability in clonability and the higher frequency of repeat sequences in larger chromosomes. Chromosome III- and IV-specific cosmids were analyzed on Southern blots of chromosomal separations. For strain CL Brener, all clones tested exhibited cross-hybridization to a homologous chromosome larger than 1 Mbp, supporting the assumption of the respective chromosome couple being diploid pairs.

Animals↗

Complete nucleotide sequence, structural organization, and an alternatively spliced exon of mouse h1-calponin gene.

From a CC1.2 embryonic stem cell genomic library, we isolated and sequenced a 10.4-kb DNA segment (GenBank/EMBL Data Bank accession number L49022) containing the entire gene encoding mouse h1-calponin, an actin-associated smooth muscle-specific protein and a potential modulator of contraction. Sequence data revealed that there are seven exons and six introns in the h1-calponin gene. Determined by primer extension mapping of the RNA transcripts, the transcription of h1-calponin gene initiates at the same site in stomach, urinary bladder and pregnant uterus smooth muscles. The genomic organization suggests that the previously identified alpha- and beta-calponin isoforms are produced by splicing of exon 7 at two alternative acceptor sites. Isolation and structural characterization of the h1-calponin gene provides information to further investigate the expression regulation of this smooth muscle-specific gene.

Alternative Splicing↗

Sequence of a gene encoding periplasmic Pseudomonas syringae ankyrin.

A gene encoding ankyrin (Ank) was isolated from a genomic library of the plant pathogen Pseudomonas syringae pathovar syringae strain 61 (Pss61). The gene encodes an 183-amino-acid (aa) polypeptide which has homology to the 33-aa repeat domain of mammalian Ank and Ank homologs from other bacteria, animals and plants.

Amino Acid Sequence↗

Characterization of a unique genomic clone located 5' upstream of the Oshsp16.9B gene on chromosome 1 in rice (Oryza sativa L. cv Tainung No. 67).

Small heat-shock proteins (sHSP) are the most abundant heat stress-induced proteins in plants. In rice, there are at least seven members of class-I sHSP. A 1.6-kb DNA fragment was isolated from the EcoRI-digested rice genomic library probed with the cDNA pTS1 encoding a 16.9-kDa class-I sHSP. This fragment was composed of 365-bp tandem direct repeats (DRs) and 441-bp near perfect long terminal inverted repeats (LTIRs). The DRs contain 123-bp regions with 99% nucleotide identity to the 5' coding region of the Oshsp16.9B gene. Two putative pseudogenes were deduced from the DRs. Using the LTIR as a specific probe, Southern-blotting analysis showed that there was a single copy of this 1.6-kb DNA fragment in the rice genome. By genomic walking, we located this fragment in proximity 5'-upstream of the Oshsp16.9B gene that was mapped on chromosome 1 with other two class-I sHSP genes, Oshsp16.9A and Oshsp16.9C. By comparative analysis of the nucleotide sequences of class-I sHSP genes clustered on chromosome 1 between Tainung No. 67 and Nipponbare cultivars, we confirmed our mapping results of these genes and only the promoter region of Oshsp16.9B was different. However, we found that the expression profile of Oshsp16.9B upon different heat stresses in Nipponbare was not significantly different relative to that in Tainung No. 67.

Amino Acid Sequence↗

Isolation and characterization of 45 polymorphic microsatellites from the bovine genome.

A small-insert bovine genomic library was constructed in pBluescript II SK(+) and enriched for microsatellites by selective rescue of single-stranded pBluescript DNA carrying (CA)n/(TG)n tandem repeats. Approximately 50% of the clones in the enriched library contained (CA)n repeats or CA-rich sequences. Sequencing of clones selected for (CA)n repeats resulted in the identification and characterization of 45 (CA)n polymorphic microsatellites. Genotyping in 9 large paternal half-sib families indicated that 40 of these microsatellite markers exhibit autosomal Mendelian inheritance. The numbers of alleles range from 2 to 18, with an average of 6.3 per locus. The polymorphic microsatellite markers we have identified and characterized will contribute to the construction of a high-resolution linkage map of bovine genome.

Animals↗

Isolation and chromosomal localization of a novel nonerythroid ankyrin gene.

Immunoreactive isoforms of erythrocyte ankyrin have been shown to be present in a variety of nonerythroid tissues. Isolation of the genes that encode these isoforms will clarify their relationship to erythrocyte ankyrin. Using an erythrocyte ankyrin cDNA clone as a hybridization probe, we screened a human genomic library and isolated a clone that hybridizes with the probe at low stringency but not at high stringency. Partial nucleotide sequence of the clone revealed the presence of a 99-bp segment that is homologous to an exon of the erythrocyte ankyrin gene. Northern analysis showed that a labeled fragment of the clone hybridized to a 7-kb message in RNA of fetal brain but not of erythroid cells, suggesting that this clone is part of a novel gene that is expressed predominantly in nonerythroid tissue. Comparison of the sequence of the genomic clone with that of a recently isolated cDNA clone for brain ankyrin (Otto et al., 1989) showed identity of 96 of 99 bp between the putative exon and a segment of the cDNA clone (V. Bennett, personal communication, 1991), suggesting that the genomic clone is part of a gene for nonerythroid ankyrin, which we have designated ANK2. By analysis of somatic cell hybrids and fluorescence in situ hybridization, we assigned ANK2 to human chromosome 4 at a position equivalent to bands 4q25-q27.

Amino Acid Sequence↗

Chromatin organization in Entamoeba histolytica.

The chromatin structure of Entamoeba histolytica was investigated. It was found that this protozoan organizes its chromatin in nucleosome-like particles 10 nm in diameter, but digestion of the chromatin with micrococcal nuclease did not render a regularly spaced DNA ladder in agarose gels. Southern blot analysis of the products of Entamoeba chromatin digestion using total amebic DNA and a non-transcribed repetitive sequence produced a banding pattern characteristic of eukaryotic chromatin with a repetitive size of approximately 130 bp. Conversely, hybridization with two active gene probes, actin and ribosomal RNA, showed that these sequences are not part of the chromatin organized in nucleosomes. It was also found that the basic nuclear proteins differ from histones of higher eukaryotes in electrophoretic mobility. Screening of an E. histolytica HM1-IMSS genomic library with Saccharomyces cerevisiae H3 and H4 genes and attempts to amplify E. histolytica sequences, homologous to these yeast histone genes, gave negative results suggesting that the Entamoeba proteins involved in chromatin organization are not typical histones.

Actins↗

A cluster of alpha 2-macroglobulin-related genes (alpha 2 M) on human chromosome 12p: cloning of the pregnancy-zone protein gene and an alpha 2M pseudogene.

The characterization of two alpha 2-macroglobulin (alpha 2M)-related genomic clones, isolated from two human genomic libraries by use of alpha 2M cDNA [Kan et al., Proc. Natl. Acad. Sci. USA 82 (1985) 2282-2286] as a probe, is reported. Sequence comparison of the clone EPZP6 with the human alpha 2M cDNA revealed the presence of five exons with the proper splice signals. Alignment of the corresponding amino acid (aa) sequence of these exons with the published partial pregnancy-zone protein (PZP) aa sequence (Sottrup-Jensen et al., Proc. Natl. Acad. Sci. USA 81 (1984) 7353-7357] showed a perfect match, thereby identifying EPZP6 as a PZP genomic clone. The clone MPAM16 showed a considerable degree of sequence conservation when compared to the human alpha 2M cDNA sequence, and several putative exons were identified. However, a frame-shift mutation leading to a premature stop codon was found in the coding sequence, classifying this gene as an alpha 2M pseudogene. Human alpha 2M, PZP and the related pseudogene were mapped to the human chromosome 12p12-13, with the help of gene-specific probes and in situ hybridization. This result was confirmed in Southern-blot experiments with DNA from a human-Ltk- mouse somatic-cell hybrid containing only a human isochromosome 12p in a mouse background.

Amino Acid Sequence↗

Studies of the murine homolog of the multiple endocrine neoplasia type 1 (MEN1) gene, men1.

The murine homolog of the multiple endocrine neoplasia type 1 (MEN1) gene (men1), which in humans is associated with tumors of the parathyroids, pancreas, and pituitary, has been characterized by isolating 27 clones from a mouse embryonic stem cell cDNA library. The insert sizes ranged from 600-2500 bp, and sequence analysis identified a 1833 bp open reading frame encoding a 611 amino acid protein. In addition, two clones contained an unspliced intron 1, and another two clones contained 20-29 bp of an upstream sequence, which suggested the presence of an alternate exon 1. This was supported by an analysis of the homologous human sequence. The mouse and human coding regions had 89% and 96% identity of the nucleotide and amino acid sequences, respectively. Investigation of clones isolated from a 129ola mouse genomic library, revealed the men1 gene to consist of 10 exons that spanned approximately 6 kb. Northern blot analysis demonstrated the ubiquitous expression of 2.9 kb and 3. 4 kb transcripts in mouse adult tissues and embryos from 7 days. DNA sequence analysis of the larger 3.4 kb transcript revealed it to result from a retention of intron 1. In situ hybridization confirmed an early ubiquitous expression in whole mount mouse embryos and adult tissues, but in the latter, different levels of cellular expression were observed, e.g., men1 expression was higher in testicular Sertoli cells than in germ cells. Thus, the mouse men1 gene and the basis of alternative transcripts have been defined, and these will help to facilitate studies of a mouse model.

Amino Acid Sequence↗

Inhibition of topoisomerases from Pneumocystis carinii by aromatic dicationic molecules.

Pentamidine and related derivatives inhibit an ATP-dependent topoisomerase activity from Pneumocystis carinii extracts. Since it would be extremely difficult to purify ample quantities of the organisms to allow characterization of the enzyme and carry out drug binding experiments, we have begun the cloning of the topoisomerase genes with a goal towards expression of each gene in a heterologous system. Following construction of genomic libraries in the vectors lambda DASH and lambda ZAP, oligonucleotides corresponding to conserved regions of both topoisomerases I and II were used in the polymerase chain reaction (PCR) of P. carinii DNA to generate probes. Candidate clones for both genes have been identified. Partial DNA sequence of the topoisomerase II gene has been determined.

Animals↗

Cloning of a human platelet-activating factor receptor gene: evidence for an intron in the 5'-untranslated region.

A clone encoding a gene for a human platelet-activating factor (PAF) receptor has been isolated from a human genomic library. A 6-kb Hind III fragment was subcloned and was found to contain a full coding sequence identical with that previously reported for cDNA clones encoding PAF receptors from leukocyte cDNA libraries. Sequencing of the 6-kb Hind III fragment upstream from the start codon revealed that the 5'-untranslated region deviated from reported cDNA sequences beginning at base -39, suggesting the presence of an intron in this region. Consensus sequences for a splice junction appear appropriately located at the predicted 3' end of the purported intron. Restriction map analysis of the region revealed that the size of the intron in the 5'-untranslated region was at least 16 kb. These data indicate that a gene for a human PAF receptor is present in the genome without introns in the coding sequence and that splicing of mRNA encoding PAF receptors appears to occur in the 5'-untranslated region.

Amino Acid Sequence↗

Transport of pyruvate in Saccharomyces cerevisiae and cloning of the gene encoded pyruvate permease.

Pyruvate uptake in Saccharomyces cerevisiae was not observed at 0 degrees C and was prevented by the uncoupler carbonyl cyanide m-chlorophenylhydrazone (CCCP). The initial uptake rate of S. cerevisiae kyokai No. 901 was maximum at pH 6 and Km = 4.1 mM. It seemed that lactate inhibited the pyruvate uptake competitively from the results of the Lineweaver-Burk plots. The inhibition constant (Ki) in the presence of 3 mM lactate was 1.6 mM. The pyruvate uptake was inhibited by D-glucose and deoxyglucose, but not by L-glucose, acetate or ethanol. Mutants of laboratory strain No. 5022 ((a) his(2,6), ura3) deficient in pyruvate uptake were isolated from fluoropyruvate resistant mutants. Transformation of the mutant with a yeast genomic library allowed the isolation of the gene JEN1 (YKL217w), which restored pyruvate uptake. Disruption of JEN1 abolished the uptake of pyruvate and gained the resistance against fluoropyruvate. The results indicate that no other monocarboxylate permease is able to efficiently transport pyruvate in S. cerevisiae.

Biological Transport↗

A new plasmid display technology for the in vitro selection of functional phenotype-genotype linked proteins.

BACKGROUND: Display technologies which allow peptides or proteins to be physically associated with the encoding DNA are central to procedures which involve screening of protein libraries in vitro for new or altered function. Here we describe a new system designed specifically for the display of libraries of diverse, functional proteins which utilises the DNA binding protein nuclear factor kappa B (NF-kappa B) p50 to establish a phenotype-genotype link between the displayed protein and the encoding gene. RESULTS: A range of model fusion proteins to either the amino- or carboxy-terminus of NF-kappa B p50 have been constructed and shown to retain the picomolar affinity and DNA specificity of wild-type NF-kappa B p50. Through use of an optimal combination of binding buffer and DNA target sequence, the half-life of p50-DNA complexes could be increased to over 47 h, enabling the competitive selection of a variety of protein-plasmid complexes with enrichment factors of up to 6000-fold per round. The p50-based plasmid display system was used to enrich a maltose binding protein complex to homogeneity in only three rounds from a binary mixture with a starting ratio of 1:10(8) and to enrich to near homogeneity a single functional protein from a phenotype-genotype linked Escherichia coli genomic library using in vitro functional selections. CONCLUSIONS: A new display technology is described which addresses the challenge of functional protein display. The results demonstrate that plasmid display is sufficiently sensitive to select a functional protein from large libraries and that it therefore represents a useful addition to the repertoire of display technologies.

Blotting, Western↗

Characterization of tomato DNA clones with sequence similarity to human minisatellites 33.6 and 33.15.

A tomato lambda genomic library was screened with the human minisatellites 33.6 and 33.15. Similar tomato sequences are estimated to occur on average every 4000 kb. In thirteen hybridizing clones characterized, the size of minisatellite arrays varied between 100 bp and 3 kb. The structure of the repetitive elements is complex as the human core sequence is interspersed with other elements. In three cases, sequences similar to the human minisatellites were part of a higher-order tandem repeat. The chromosomal position of these sequences was established by ascertaining linkage to previously mapped RFLP markers. In contrast to the human genome, no clustering of minisatellite loci was observed in tomato. The fingerprints generated by hybridizing tomato minisatellites to genomic DNA of a set of cultivars were, in two cases, more variable than those obtained with 33.6 or 33.15. Two of the characterized probes detected 4-8 alleles of a single locus, which displayed 10-15 times more polymorphism than random RFLP clones. Some minisatellites contain di- and tri-nucleotide microsatellite repeated motifs which may account for the high level of polymorphism detected with these clones.

Base Sequence↗

Cloning and expression of a Porphyromonas (Bacteroides) gingivalis protease gene in Escherichia coli.

A genomic library of Bacteroides gingivalis W83 chromosomal DNA was constructed in the Escherichia coli lambda (lambda) vector EMBL 4. Three recombinant lambda phages expressing a cloned protease were identified in the library. All three lambda phages contained cloned overlapping DNA fragments from the same region of the chromosome and encoded the same cloned protease. The cloned protease was expressed poorly using its own promoter in E. coli.

Bacteroides↗

Pseudomonas aeruginosa PAO1 bacterial artificial chromosomes: strategies for mapping, screening, and sequencing 100 kb loci of the 5.9 Mb genome.

Pseudomonas aeruginosa is an opportunistic bacterial pathogen frequently found in nosocomial infections and is a major cause of morbidity and mortality in patients with cystic fibrosis. To facilitate molecular studies of this organism, we have generated a bacterial artificial chromosome (BAC) library. Genomic DNA was isolated from the prototype strain PAO1, partially digested with HindIII, size selected after pulsed-field gel electrophoresis, and used to construct a BAC library using the pBeloBAC11 vector. DNAs from approximately 850 clones, representing more than 9.5-fold physical coverage of the 5.9-Mb PAO1 genome, were analyzed after SpeI and HindIII digestions and agarose gel electrophoresis. The BAC library had clones with insert fragments ranging from 20 to more than 290 kb. A subset of 264 BACs having inserts > 80 kb, representing > 4 genome equivalents, were rearrayed into 96-well plates, and a clone pooling and PCR screening strategy was developed. The PCR library screening enabled the identification and recovery of BACs containing genes implicated in cell division and in cell wall biosynthesis, as well as a series of known genes mapping to different regions of the PAO1 chromosome. A physical and genetic map was constructed for the 98-kb pMOC5 BAC clone, which spans the entire fts-mur locus. Chromosome walking from each end of the pMOC5 clone placed it within a contig spanning 243 kb. The BAC library and screening resources now allow a PCR-based screening of a P. aeruginosa genomic library for any gene of interest. The restriction fragment analysis of overlapping clones indicated that BAC clones stably maintain and propagate Pseudomonas DNA, providing evidence that the PAO1 BAC library is an appropriate reagent for genome sequencing.

Bacterial Proteins↗