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Characterization of colorectal-cancer-related cDNA clones obtained by subtractive hybridization screening.

In an attempt to seek out new factors that are related to colorectal carcinogenesis at the molecular level, subtractive hybridization between cDNA of normal mucosal tissues and mRNA of colorectal carcinoma tissues was performed. Subsequent screenings of the cDNA libraries, constructed from normal mucosal tissues, using the "subtractive probes" generated a total of 46 clones that were expressed in normal mucosa but were either expressed at a significantly reduced level or not expressed at all in cancer tissues. Partial nucleotide sequences of all of these cDNA clones were determined, and sequence homology analyses were performed with the Genbank database. Of the 46 cDNA samples, 44 contained substantial sequence homologies with 32 immunoglobulin gene fragments, a helix-loop-helix basic phosphoprotein gene, an acidic ribosomal phosphoprotein P2 gene, a BLR1 gene for Burkitt's lymphoma receptor 1 gene, D5S419 DNA segment containing (C-A) repeats, a glucokinase (GCK) gene, a Na+, K+-ATPase alpha-subunit gene, a histocompatibility system HLA-DR heavy-chain gene, a dystrophic gene, a mucin (MUC2) gene, a mu-glutathione S-transferase gene, a Menkes disease protein gene, and a 40-kDa keratin intermediate filament precursor gene. The remaining two cDNA clones (now registered under GenBank accession numbers U17714 and U20428) showed few (less than 60%) sequence homologies with any known sequences in the GenBank database and, therefore, may represent novel genes whose expression was down-regulated in human colorectal carcinomas. The possible clinical significance of these findings and the involvement of these two genes in the carcinogenesis of colorectal as well as other cancers are being investigated.

Base Sequence↗

Cloning of integral mature peptide gene of human GDF-5.

The integral mature peptide gene of human growth differentiation factor-5 (GDF-5) was cloned to provide the essential foundation for study on the biological characteristics of GDF-5 at gene and protein levels. Two primers were chemosynthesized according to the hGDF-5 sequence reported in Genbank. The hGDF-5 gene was gained by RT-PCR methods from the total RNA extracted from human fetus cartilage tissue, and was cloned into vector pMD18-T. The sequence of recombinant plasmid pMD18-T-hGDF-5 was analyzed by sequence analysis. DNA agarose gel electrophoresis showed that the product of RT-PCR was about 380bp, and double enzyme digestion of the recombinant plasmid corresponded with it. The result of sequence assay was in agreement with the reported hGDF-5 sequence in Genbank. Our results showed that the integral mature peptide gene of human GDF-5 was cloned successfully from human fetal cartilage tissue, and totally identified with the sequence of human GDF-5 in Genbank.

Bone Morphogenetic Proteins↗

A novel gene, RSD-3/HSD-3.1, encodes a meiotic-related protein expressed in rat and human testis.

The expression of stage-specific genes during spermatogenesis was determined by isolating two segments of rat seminiferous tubule at different stages of the germinal epithelium cycle delineated by transillumination-delineated microdissection, combined with differential display polymerase chain reaction to identify the differential transcripts formed. A total of 22 cDNAs were identified and accepted by GenBank as new expressed sequence tags. One of the expressed sequence tags was radiolabeled and used as a probe to screen a rat testis cDNA library. A novel full-length cDNA composed of 2228 bp, designated as RSD-3 (rat sperm DNA no.3, GenBank accession no. AF094609) was isolated and characterized. The reading frame encodes a polypeptide consisting of 526 amino acid residues, containing a number of DNA binding motifs and phosphorylation sites for PKC, CK-II, and p34cdc2. Northern blot of mRNA prepared from various tissues of adult rats showed that RSD-3 is expressed only in the testis. The initial expression of the RSD-3 gene was detected in the testis on the 30th postnatal day and attained adult level on the 60th postnatal day. Immunolocalization of RSD-3 in germ cells of rat testis showed that its expression is restricted to primary spermatocytes, undergoing meiosis division I. A human testis homologue of RSD-3 cDNA, designated as HSD-3.1 (GenBank accession no. AF144487) was isolated by screening the Human Testis Rapid-Screen arrayed cDNA library panels by RT-PCR. The exon-intron boundaries of HSD-3.1 gene were determined by aligning the cDNA sequence with the corresponding genome sequence. The cDNA consisted of 12 exons that span approximately 52.8 kb of the genome sequence and was mapped to chromosome 14q31.3.

Adult↗

Characterization and molecular genetic mapping of microsatellite loci in pepper.

Microsatellites or simple sequence repeats are highly variable DNA sequences that can be used as informative markers for the genetic analysis of plants and animals. For the development of microsatellite markers in Capsicum, microsatellites were isolated from two small-insert genomic libraries and the GenBank database. Using five types of oligonucleotides, (AT)(15), (GA)(15), (GT)(15), (ATT)(10) and (TTG)(10), as probes, positive clones were isolated from the genomic libraries, and sequenced. Out of 130 positive clones, 77 clones showed microsatellite motifs, out of which 40 reliable microsatellite markers were developed. (GA)(n) and (GT)(n) sequences were found to occur most frequently in the pepper genome, followed by (TTG)(n) and (AT)(n). Additional 36 microsatellite primers were also developed from GenBank and other published data. To measure the information content of these markers, the polymorphism information contents (PICs) were calculated. Capsicum microsatellite markers from the genomic libraries have shown a high level of PIC value, 0.76, twice the value for markers from GenBank data. Forty six microsatellite loci were placed on the SNU-RFLP linkage map, which had been derived from the interspecific cross between Capsicum annuum "TF68" and Capsicum chinense "Habanero". The current "SNU2" pepper map with 333 markers in 15 linkage groups contains 46 SSR and 287 RFLP markers covering 1,761.5 cM with an average distance of 5.3 cM between markers.

Capsicum↗

Phylogeny and megasystematics of phagotrophic heterokonts (kingdom Chromista).

Heterokonts are evolutionarily important as the most nutritionally diverse eukaryote supergroup and the most species-rich branch of the eukaryotic kingdom Chromista. Ancestrally photosynthetic/phagotrophic algae (mixotrophs), they include several ecologically important purely heterotrophic lineages, all grossly understudied phylogenetically and of uncertain relationships. We sequenced 18S rRNA genes from 14 phagotrophic non-photosynthetic heterokonts and a probable Ochromonas, performed phylogenetic analysis of 210-430 Heterokonta, and revised higher classification of Heterokonta and its three phyla: the predominantly photosynthetic Ochrophyta; the non-photosynthetic Pseudofungi; and Bigyra (now comprising subphyla Opalozoa, Bicoecia, Sagenista). The deepest heterokont divergence is apparently between Bigyra, as revised here, and Ochrophyta/Pseudofungi. We found a third universal heterokont signature sequence, and deduce three independent losses of ciliary hairs, several of 1-2 cilia, 10 of photosynthesis, but perhaps only two plastid losses. In Ochrophyta, heterotrophic Oikomonas is sister to the photosynthetic Chrysamoeba, whilst the abundant freshwater predator Spumella is biphyletic; neither clade is specifically related to Paraphysomonas, indicating four losses of photosynthesis by chrysomonads. Sister to Chrysomonadea (Chrysophyceae) is Picophagea cl. nov. (Picophagus, Chlamydomyxa). The diatom-parasite Pirsonia belongs in Pseudofungi. Heliozoan-like actinophryids (e.g. Actinosphaerium) are Opalozoa, not related to pedinellids within Hypogyristea cl. nov. of Ochrophyta as once thought. The zooflagellate class Bicoecea (perhaps the ancestral phenotype of Bigyra) is unexpectedly diverse and a major focus of our study. We describe four new biciliate bicoecean genera and five new species: Nerada mexicana, Labromonas fenchelii (=Pseudobodo tremulans sensu Fenchel), Boroka karpovii (=P. tremulans sensu Karpov), Anoeca atlantica and Cafeteria mylnikovii; several cultures were previously misidentified as Pseudobodo tremulans. Nerada and the uniciliate Paramonas are related to Siluania and Adriamonas; this clade (Pseudodendromonadales emend.) is probably sister to Bicosoeca. Genetically diverse Caecitellus is probably related to Anoeca, Symbiomonas and Cafeteria (collectively Anoecales emend.). Boroka is sister to Pseudodendromonadales/Bicoecales/Anoecales. Placidiales are probably divergent bicoeceans (the GenBank Placidia sequence is a basidiomycete/heterokont chimaera). Two GenBank 'opalinid' sequences are fungal; Pseudopirsonia is cercozoan; two previous GenBank 'Caecitellus' sequences are Adriamonas.

Cells, Cultured↗

A first catalog of genes involved in pig ovarian follicular differentiation.

As a first step toward the characterization of genetic expression in pig ovaries, we have selected 238 clones by differential hybridization from a pig granulosa cell cDNA library, using probes prepared from RNA extracted from either untreated or FSH-treated cells and, in order to generate expressed sequence tags (ESTs), we have performed 3' and 5' single-pass sequencing of these clones. Sequences of the 3' end of the 167 clones that produced informative sequence data were first compared with each other, revealing a redundancy level of 21%. Sequences from the 136 unique clones were analyzed for similarities with sequence data included in Genbank and EMBL databases. Among these unique clones, 54 (40%) matched significantly with sequences from either Genbank of EMBL: 4 with known genes in pig, 35 matched with previously reported human genes, and 15 with other mammalian genes. Eighty-two clones (60%) showed no significant match with any gene or DNA sequence in the Genbank and EMBL databases and thus may represent new pig transcripts.

Animals↗

Non-amplification of an allele of the D8S1179 locus due to a point mutation.

During a population study of 128 Korean families (626 persons) with the AmpF/STR Profiler Plus PCR amplification system, we found an unusual homozygous genotype at the D8S1179 locus in 4 families. Therefore, a new pair of primers was designed for the D8S1179 locus from GenBank data (GenBank Accession No. G08710) to evaluate the cause. The newly designed primers amplified alleles that were not amplified with the AmpFlSTR Profiler Plus PCR amplification system. We sequenced alleles of the family members who had non-amplified alleles and we found a G-to-A transition at the position of the 147th base of the GenBank sequence.

Alleles↗

A novel gene is disrupted at a 14q13 breakpoint of t(2;14) in a patient with mirror-image polydactyly of hands and feet.

Mirror-image polydactyly of hands and feet (MIP) is a very rare congenital anomaly characterized by mirror-image duplication of digits. To isolate the gene responsible for MIP, we performed translocation breakpoint cloning from an MIP patient with t(2;14)(p23.3;q13). We isolated a good candidate gene for MIP that was disrupted by the translocation of the patient. We had previously con structed a 1.2-megabase bacterial artificial chromosome (BAC)/P1-derived artificial chromosome (PAC) contig covering the 14q13 breakpoint of t(2;14)(p23.3;q13). From a 500-kb segment consisting of seven BAC/PAC clones in the contig, we isolated a novel gene (the mirror-image polydactyly 1 gene, designated as MIPOL1, GenBank Accession No. AY059470), in addition to the hepatocyte nuclear factor 3 alpha gene (HNF3A, GenBank Accession No. XM 007360). MIPOL1 spans about 350kb, comprises 15 exons, and encodes 442 amino acids. Northern blot analysis revealed that MIPOL1 expression is definite but very weak in adult heart, liver, skeletal muscle, kidney, and pancreas, and in fetal kidney. In view of the genome sequence and the contig map constructed, the 14q13 breakpoint of the patient was identified as located in intron 11 of MIPOL1, indicating that the gene was disrupted by the translocation, and that the breakage resulted in MIPOL1 protein truncation. Whole-mount in situ hybridization in mouse resulted in mouse Mipol1 signals all over E10.5-E13.5 mouse embryos. Two other unrelated patients with limb anomalies similar to MIP were subjected to mutation analysis of MIPOL1, but none had any mutations. We then isolated BAC clones from the other breakpoint, 2p23.3. A search for genes and expressed sequence tags in a more than 300-kb region around the 2p23.3 breakpoint found only the neuroblastoma-amplified protein gene (NAG, GenBank Accession No. NM 015909), which is located at least 50kb centromeric to the breakpoint and is not likely to be related to MIP. MIPOL1 is a good candidate gene for the MIP type of anomaly.

Chromosomes, Human, Pair 14↗

Evolution and distribution of (GT)n repetitive sequences in mammalian genomes.

The dinucleotide repetitive sequence, (GT)n, is highly interspersed in eukaryotic genomes and may have functional roles in genetic recombination or the modulation of transcriptional activity. We have examined the distribution and conservation of position of GT repetitive sequences in several mammalian genomes. The distribution of GT repetitive sequences in the human genome was determined by the analysis of over 3700 cosmid clones containing human insert DNA. On average, a GT repetitive sequence occurs every 30 kb in DNA from euchromatic regions. GT repetitive sequences are significantly underrepresented in centric heterochromatin. The density of GT repetitive sequences in the human genome could also be estimated by analyzing GenBank genomic sequences that include introns and flanking sequences. The frequency of GT repetitive sequences found in GenBank human DNA sequences was in close agreement with that obtained by experimental methods. GenBank genomic sequences also revealed that (GT)n repetitive sequences (n greater than 6) occur every 18 and 21 kb, on average, in mouse and rat genomes. Comparative analysis of 31 homologous sequences containing (GT)n repetitive sequences from several mammals representing four orders revealed that the positions of these repeats have been conserved between closely related species, such as humans and other primates. To a lesser extent, positions of GT repetitive sequences have been conserved between species in distantly related groups such as primates and rodents. The distribution and conservation of GT repetitive sequences is discussed with respect to possible functional roles of the repetitive sequence.

Animals↗

Conservation and evolution of (CT)n/(GA)n microsatellite sequences at orthologous positions in diverse mammalian genomes.

The distribution and evolution of (CT)n microsatellites were examined in GenBank mammalian DNA sequences because these microsatellites are known to play important roles in the regulation of some genes in Drosophila melanogaster. A total of 236 (CT)n microsatellite loci were found in GenBank mammalian gene sequences. To determine whether (CT)n microsatellite arrays were conserved at orthologous positions in distantly related mammalian sequences, we determined whether orthologous sequences existed in GenBank for each of the 236 loci. A total of 47 sequence alignments could be made. For rodent x rodent comparisons, 7 of 8 (CT)n arrays were conserved at identical positions in each pair of orthologous sequences. Comparisons of orthologous sequences between different orders of mammals indicated that 11 of 39 (CT)n arrays occurred at orthologous positions or within 1 kb of orthologous positions in each pair of sequences. It appears that there is some level of conservation of (CT)n repeats in distantly related mammals. However, this level of conservation may not be greater than what might be expected to occur by chance. In 13 cases where (CT)n arrays were not conserved at orthologous positions, the lack of a (CT)n array in one sequence resulted from either nucleotide substitution within an array or nonexpansion of a shorter (CT)n element. In these cases, significant sequence identity could be detected throughout the entire region even though the repeat array was not detected in one of the sequences. In contrast, there was a disruption of sequence identity in the (CT)n microsatellite region that ranged from 24 to 1600 bp in 21 cases.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Evolution of tRNA-like sequences and genome variability.

Transfer RNA (tRNA)-like sequences were searched for in the nine basic taxonomic divisions of GenBank-121 (viruses, phages, bacteria, plants, invertebrates, vertebrates, rodents, mammals, and primates) by an original program package implementing a dynamic profile alignment approach for the genetic texts' analysis, in using 22 profiles of tRNAs of different isotypes. In total, 175,901 previously unknown tRNA-like sequences were revealed. The locations of the tRNA-likes were considered over the regions whose functional meaning is described by standard Feature Keys in GenBank. Many regions containing the tRNA-like sequences were recognized as known repeats. A mode of distribution of the tRNA-like sequences in a genome was proposed as expansion in a content of the various transposable elements. An analysis of the integrity of RNA polymerase III inner promoters in the tRNA-like sequences over the GenBank divisions has shown a high possibility of generating new copies of short interspersed nuclear element (SINE) repeats in all divisions, excepting primates. The numerous tRNA-likes found in the regions of RNA polymerase II promoters have suggested an adaptation of RNA polymerase III promoter to a binding of RNA polymerase II.

Algorithms↗

The discovery of four distinct glutamate dehydrogenase genes in a strain of Halobacterium salinarum.

In earlier work, two glutamate dehydrogenase (GDH) proteins were purified from a strain of the halophilic archaeon Halobacterium salinarum (NRC-36014). One of these, an NAD+-specific enzyme, was matched to a cloned gene from H. salinarum (GenBank accession number: X63837 S75579) by sequencing peptide fragments. Analysis of enzymatic digests of the NADP+-GDH and database searching have now established that a gene encoding this protein exists in the full genomic sequence of Halobacterium sp. NRC-1 as gdhA1, together with two other distinct gdh genes, gdhA2 and gdhB. From N-terminal sequence, it is clear that the genomic listing incorrectly assigns the start codon for gdhA1 and the corresponding protein is 43 amino acids longer than previously indicated. The three genes could be amplified by PCR either from NRC-1, as expected, or from NRC-36014 (GenBank accession numbers: YA840085-AY840087). A gene encoding the previously purified NAD+-GDH, is absent from the NRC-1 genome but can be successfully amplified from genomic DNA of NRC-36014 (GenBank accession number: AY840088). This establishes that NRC-36014 contains four gdh genes.

Amino Acid Sequence↗

The sequence heterogenicities among 16S rRNA genes of Salmonella serovars and the effects on the specificity of the primers designed.

Previously, we have reported a 16S rDNA targeted polymerase chain reaction (PCR) method for the specific detection of Salmonella serovars [J. Appl. Bacteriol. 80 (1996) 659]. The target sites of its primers, i.e. 16SFI and 16SIII, according to the data in GenBank, were found mismatched to the corresponding sequences of some Salmonella serovars, such as those of S. Houten, S. Chingola, S. Bareilly, and S. Weltevreden. Accordingly, a PCR method using a nonspecific primer MINf combined with a primer modified from our 16SFI primer, i.e. the primer MINr, was developed and displayed better detection specificity [Int. J. Food Microbiol. 80 (2003) 67]. In this study, we show the sequence heterogenicity at the primer 16SFI targeting sites for some Salmonella serovars. Thus, the sequence used for designing of PCR primers might be just one of the several possible sequences. Such a situation may lead to the misjudgment on evaluation of the specificity of the primers if this was only based on the data in GenBank. Strains of the above described Salmonella serovars with target sequences from GenBank mismatched to the primer 16SF1 were reidentified and their PCR results were confirmed. Meanwhile, their 16SFI/16SIII primer annealing sites were sequenced and the sequences obtained were found completely and highly homologous to those of 16SFI and complementary to those of 16SIII primer, respectively.

Base Sequence↗

Spatiotemporal patterns of Rift Valley fever virus in Africa: a retrospective genomic epidemiology and phylodynamic modelling study.

BACKGROUND: Rift Valley fever virus (RVFV) is a mosquito-borne zoonotic pathogen causing outbreaks in humans and ruminants across Africa and the Arabian Peninsula. Originally restricted to the Great Rift Valley, RVFV has expanded geographically, prompting its classification by WHO as a pathogen of pandemic potential. We investigated the evolutionary and spatial dynamics of RVFV across Africa. METHODS: We used genomic data generated at the International Livestock Research Institute Nairobi genomic laboratory (BioProject PRJNA1106221) and combined with publicly available datasets retrieved from the National Center for Biotechnology (NCBI) GenBank nucleotide database. In retrieving RVFV genome sequences from the NCBI GenBank, we applied the search terms "Rift Valley fever virus segment L AND 6404[SLEN]", "Rift Valley fever virus segment M AND 3885[SLEN]", and "Rift Valley fever virus segment S AND 1520:1690[SLEN]" for L (Large), M (Medium), and S (Small) segments, respectively. For sequences without additional spatiotemporal information, we searched PubMed to extract the associated sequence metadata. We performed molecular clock analysis, phylogenetic inference, phylodynamic modelling (continuous phylogeographic reconstruction), and landscape phylogeography on the three RVFV genome segments (L, M, and S). We aimed to assess evolutionary rates, dispersal patterns, and environmental drivers. Focus was placed on lineage C, the most widely distributed variant. FINDINGS: The global dataset used in this study consisted of large (n=236), medium (n=237), and small (n=247), which were further filtered to exclude potential reassortants and vaccine strains. Genome sequences retrieved from NCBI GenBank database comprised large (n=180), medium (n=184), and small (n=202). The genome sequences from retrospective human and livestock isolates comprised large (n=56), medium (n=53), and small (n=45) collected in Burundi (2018), Kenya (2007, 2018, 2019, 2021, and 2022), and Rwanda (2018 and 2022). Our dataset revealed that RVFV exhibited low overall genetic diversity. Lineage C, however, showed evidence of active evolution, with substitution rates ranging from 3·58 × 10-4 to 9·76 × 10-4 substitutions per site per year. This lineage probably originated in Zimbabwe in the mid-1970s and has since expanded across eastern and southern Africa. Phylogeographic reconstructions revealed rapid spread, with diffusion coefficients exceeding 50 000 km2 per year. INTERPRETATION: Lineage C appears capable of establishing endemic transmission in new regions, with ongoing diversification observed during interepidemic periods. These observations reinforce the value of continuous genomic surveillance, particularly during cryptic transmission phases when adaptive mutations might emerge. Although further evidence is needed, observed trends in climate variability and land-use change point to the potential benefit of targeted surveillance in settings that could be at increased risk, including urban centres and wetlands. FUNDING: This work was supported by the German Federal Ministry for Economic Cooperation and Development, the Rockefeller Foundation, and the Africa Centres for Disease Control and Prevention.

Rift Valley fever virus↗

Molecular characterization of two novel splice variants of G alphai2 in the rat vestibular periphery.

GTP binding proteins play an important role in mediating signals transduced across the cell membrane by membrane-bound receptors. We previously described a partial sequence, termed Galphai2vest, obtained from rat vestibular tissue that was nearly identical to rat Galphai2. Using an experimental strategy to further characterize Galphai2vest (GenBank accession number AF189020) and identify other possible Galphai2-related transcripts expressed in the rat vestibular periphery, we employed a RecA-based gene enrichment protocol in place of conventional library screening techniques. We identified two novel Galphai2 splice variants, Galphai2(a) (GenBank accession number AY899210) and Galphai2(b) (GenBank accession number AY899211), that have most of exons 8 and 9 deleted, and exons 5 through 9 deleted, respectively. In situ hybridization studies were completed to determine the differential expression of Galphai2 between the vestibular primary afferent neurons and the vestibular end organs. Computer modeling and predicted 3D conformation of the wild type Galphai2 and the two splice variants were completed to evaluate the changes associated with the Gbetagamma and GTP binding sites. These two novel alternatively spliced isoforms of Galphai2 putatively encode truncated proteins that could serve unique roles in the physiology of the vestibular neuroepithelium. Galphai2vest was found to be a processed pseudogene.

Alternative Splicing↗

Temporal and cell-specific gene expression by human endometrium after coculture with trophoblast.

OBJECTIVE: Our purpose was to identify temporal and stage-specific expression of endometrial genes during coculture with trophoblast cells. STUDY DESIGN: Endometrial stromal cells were cultured to confluence in the presence of estradiol and progesterone. During these culture conditions the gene expression of 1 tissue specimen that secreted abundant prolactin (415 ng/mL culture medium at 21 days) was compared with a second specimen that did not. These 2 tissues were coincubated with trophoblast tissue in a specialized coculture flask. After 4 and 24 hours of culture messenger ribonucleic acid was extracted and reverse transcribed, and the complementary deoxyribonucleic acid products were amplified by polymerase chain reactions. The reverse transcriptase-polymerase chain reaction products were separated by electrophoresis, and potentially important complementary deoxyribonucleic acid fragments were reamplified, inserted into a plasmid vector, and sequenced after recovery. Sequences were submitted for Basic Local Alignment Search Tool searches of GenBank. RESULTS: We observed up-regulation of 6 gene fragments in decidualized endometrium after 4 hours of coculture with choriocarcinoma-derived trophoblast BeWo cells, but only 1 gene fragment was up-regulated after 24 hours of exposure. Conversely, 2 fragments were down-regulated in decidualized stroma that was exposed to BeWo for 4 hours and 2 fragments were underexpressed after the 24-hour exposure. In the parallel experiment stromal cells that failed to secrete prolactin did not elicit the same regulation of expression. The nondecidualized endometrium overexpressed 1 gene fragment after 4 hours of BeWo exposure and overexpressed 4 gene fragments after exposure to BeWo for 24 hours. Underexpression of gene products also occurred with the nondecidualized endometrium, and we observed 2 fragments and 1 fragment to be underexpressed after 4 and 24 hours of BeWo exposure, respectively. To date, 3 of the candidate differential display fragments from these experiments have been cloned and sequenced. An up-regulated fragment (C6225J4EB-1) was 99% identical (167/168 sequences) to a reported nonredundant expressed sequence tags isolated from muscle, brain, ovary, testis, liver, and pregnant uterus tissues. A second up-regulated fragment (C4375J4EB-1) matched 100% identity (117/117) with a reported gene fragment in the expressed sequence tags database of GenBank that was derived from fetal heart and pregnant uterus. Additional characterization of these expressed sequence tags has not been reported. The third up-regulated fragment (C4250J24EB-2) was 100% identical (265/265) to human reduced nicotinamide adenine dinucleotide dehydrogenase III in the nonredundant gene database of GenBank. CONCLUSION: This report demonstrates the potential usefulness that endometrial-trophoblast coculture and differential display can offer for the molecular analysis of implantation phenomena. We have recognized both overexpression and underexpression of interesting gene fragments during the early phases of endometrial responses to paracrine regulators derived from BeWo trophoblast cells. These responses appear to be specific to the degree of endometrial transformation (decidualization) before challenge by the trophoblast and to the duration of the BeWo exposure. Sequence data identified 1 gene with an unidentified function, another gene with a known function, and a fragment not previously recognized. We submit that our model of endometrial-trophoblast coculture offers a novel tool to test cellular responses during implantation, and differential display represents a sensitive technique that can identify many of the important elements of genomic signaling during nidation.

Coculture Techniques↗

Identification of a delta isoform of preprotachykinin mRNA in human mononuclear phagocytes and lymphocytes.

We have characterized preprotachykinin (PPT-A) gene transcript splicing products and identified a fourth isoform of PPT-A mRNA transcript in human peripheral blood-isolated monocytes and PBL. Using RT-PCR, Southern blot analysis and nucleotide sequencing analysis, we have identified the four isoforms of PPT-A transcripts (alpha, beta, gamma and delta) in human peripheral blood-isolated monocytes and PBL. The delta-PPT transcript present in the immune cells lacks exons 4 and 6. The sequences of exons 3, 5 and 7 of delta-PPT transcript completely match those of beta-PPT transcript. The alpha-PPT and beta-PPT sequences in these cells are identical to those obtained by Tan and Too (GenBank accession number U37539) and Harmar et al. (Genbank accession number X54469), but differ by a single nucleotide from another entry by Chiwakata et al. (Genbank accession number M68906). In comparison to this latter sequence, there was a C-->T change at amino acid position 87 (CCT-->CTT) which may result in a Pro to Leu change. Identification of the new SP mRNA transcript in both human CNS and immune cells supports the concept of an important biological link between CNS and immune system.

Adult↗

Distinguishing plant and fungal sequences in ESTs from infected plant tissues.

Expressed sequence tags (ESTs) from fungal-infected plant tissues are composed of a mixture of plant and fungal sequences. Using freely available software and tools, a novel procedure is described for distinguishing plant and fungal DNA sequences. Although the GenBank non-redundant (NR) database is larger and therefore one would presume that BLASTX analysis of it would be more accurate, superior resolution of 700 randomly selected fungal ESTs was found with Standalone TBLASTX analyses with a local matching database composed of a plant and a fungal genome. Standalone TBLASTX analyses of 3,983 ESTs from nine different fungal-infected plant EST libraries also proved to be superior in identifying the origin of sequences as either plant or fungal compared to GenBank BLASTX analysis. Standalone TBLASTX with a matching database comprised of a single plant and a single fungal genome appears to be a faster and more accurate method than BLASTX searches of the GenBank non-redundant database to distinguish fungal and plant sequences in mixed EST collections.

DNA, Fungal↗