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Denial of separation anxiety as measured by a serial tachistoscopic technique.

A mother-child separation stimulus was repeatedly presented by standard Defense Mechanism Test procedure, at increasing durations of tachistoscopic exposure to 60 clinical and nonclinical subjects. Subjective verbal reports were coded blindly for evidence of perceptual distortions presumably indicative of denial of separation anxiety. Low scores on two items measuring sensitivity to separation anxiety and intolerance of aloneness were, as predicted, significantly more often characterized by codings of denial on the tachistoscopic exposures than subjects with high sensitivity to separation anxiety. Stability of effect became stronger when only very low and very high scores were compared for perceptual denial on the last four presentations of the series. This technique, employing other types of anxiety-evoking stimuli, may represent a reliable instrument to reveal the presence of defences toward each of the most relevant conflictual areas of the personality.

Adult↗

Stability of genetic evaluations for active artificial insemination bulls.

Genetic evaluations for milk, fat, and protein from 1995 through August 2003 for 17,987 Holstein bulls in active artificial insemination (AI) service were examined for changes to the November 2003 evaluation. Evaluations for active AI bulls at each of 31 evaluation dates showed mean declines to November 2003. No evidence was seen of a worsening situation over time. Bulls' early evaluations with active AI status showed much larger declines, but this overevaluation diminished and essentially disappeared after 3 yr. The bulls with first active AI evaluations since 1995 were the primary focus of the study. The influx of second-crop daughters did not appear to cause a decline in evaluations for these bulls, attesting to the successful modification to the genetic evaluation system by expanding the genetic variance of short records. Mean declines and the variation of those differences were generally similar by bull sampling organization. A change from active to inactive AI status was generally concurrent with a decline in predicted transmitting ability (PTA). Bulls coded as having standard AI sampling declined less than bulls coded as having other sampling, but the differences were much less than in previous reports. Larger increases in reliability were generally associated with greater declines in PTA, and the magnitude of these changes decreased over time (increasing evaluation number). Change in reliability underpredicted the variance of change in PTA, indicating that other important factors contribute or that the assumptions for the calculation of the expected change in PTA are not met. Declines in estimated merit over time are not sufficient to alter present genetic selection programs, but reasons for the declines continue to elude explanation.

Animals↗

Influences of progeny test programs on genetic evaluations of young sires.

Our purpose was to examine differences among AI progeny test programs in their effectiveness in identifying elite young sires for milk and protein. Data were from 6238 Holstein sires in five animal model evaluations of the USDA from January 1995 to February 1997. Bulls were required to be < or = 8 yr of age and to have > or = 10 daughters in production at the time of the evaluation. Bulls in AI programs were placed in nine groups based on affiliation with major AI organizations; from these nine groups, bulls with daughters averaging < 150 DIM and bulls sampled in > 100 herds were placed in two separate groups. Bulls sampled in organizations with controller numbers > or = 30 and bulls that had no connection to a sampling organization formed two additional groups. We also classified bulls by sampling codes of the National Association of Animal Breeders. A model predicting daughter yield deviation included effects of organization or sampling code, parent average (free of progeny information), and the interaction of organization or sampling method and parent average. When all data were used, a common intercept for milk was appropriate for all sampling methods, but the slopes differed (R2 = 0.44). Neither a common intercept nor a common slope was appropriate for protein. When data were restricted to the nine major organizations, a common intercept and slope were appropriate for milk, and R2 decreased to 0.14. A common intercept and slope were found for protein, and R2 decreased to 0.15. We detected no important differences in response to pedigree selection among progeny-testing methods used by major organizations that provide semen, but a difference was detected among the sampling codes of the National Association of Animal Breeders.

Animals↗

LINC01871-Mediated Sensitivity to Cyclin-Dependent Kinase 4/6 Inhibitors in Human Breast Cancer.

Breast cancer remains the most frequently diagnosed malignancy in women, and resistance to cyclin-dependent kinase 4 and 6 (CDK4/6) inhibitors limits long-term treatment efficacy. This study aimed to identify long non-coding RNAs (lncRNAs) associated with predicted sensitivity to CDK4/6 inhibitors and to investigate their biological functions in breast cancer. Transcriptomic data from The Cancer Genome Atlas (TCGA) and drug sensitivity data from the Genomics of Drug Sensitivity in Cancer 2 (GDSC2) database were integrated, and drug sensitivity was predicted using the oncoPredict algorithm. Candidate lncRNAs were identified through differential expression analysis, weighted gene co-expression network analysis, prognostic analysis, and machine learning. The biological functions of LINC01871 were subsequently evaluated using in vitro and in vivo experiments. Sixty-two lncRNAs associated with predicted sensitivity to ribociclib and palbociclib were identified, and six core lncRNAs were selected. LINC01871 showed the highest discriminatory performance for predicted drug sensitivity. Overexpression of LINC01871 was associated with increased sensitivity of breast cancer cells to ribociclib and palbociclib, inhibition of cell proliferation, promotion of apoptosis, and suppression of nuclear factor kappa B (NF-&#x3ba;B) signaling. Single-cell transcriptomic analysis demonstrated high LINC01871 expression in T cells and natural killer (NK) cells, while transcriptome-based immune infiltration analyses showed that high LINC01871 expression was associated with increased immune infiltration. These findings identify LINC01871 as a candidate biomarker of sensitivity to CDK4/6 inhibitors and demonstrate its tumor-suppressive effects in breast cancer. Further clinical and mechanistic studies are required to validate its predictive value and therapeutic relevance.

Humans↗

The cell cycle of early mammalian embryos: lessons from genetic mouse models.

Genes coding for cell cycle components predicted to be essential for its regulation have been shown to be dispensable in mice, at the whole organism level. Such studies have highlighted the extraordinary plasticity of the embryonic cell cycle and suggest that many aspects of in vivo cell cycle regulation remain to be discovered. Here, we discuss the particularities of the mouse early embryonic cell cycle and review the mutations that result in cell cycle defects during mouse early embryogenesis, including deficiencies for genes of the cyclin family (cyclin A2 and B1), genes involved in cell cycle checkpoints (Mad2, Bub3, Chk1, Atr), genes involved in ubiquitin and ubiquitin-like pathways (Uba3, Ubc9, Cul1, Cul3, Apc2, Apc10, Csn2) as well as genes the function of which had not been previously ascribed to cell cycle regulation (Cdc2P1, E4F and Omcg1).

Animals↗

Differential mRNA display cloning and characterization of a Cryptosporidium parvum gene expressed during intracellular development.

Differential mRNA display was used to detect differences in gene expression between mock-infected and Cryptosporidium parvum-infected human adenocarcinoma cells. A reproducible band present only in C. parvum-infected cells, ddHC-10 was isolated and cloned. Northern blot analysis was used to confirm the differential expression of the HC-10 mRNA. As differential mRNA display does not differentiate between parasite and host mRNAs, Southern blot analysis was used to demonstrate that ddHC-10 represented a C. parvum gene. Northern blot analysis demonstrated that HC-10 mRNA is expressed by sporozoites prior to invasion of host cells. Screening of a C. parvum genomic library identified 2 different genomic clones, HC-10-13C and HC-10-6C. The combined genomic sequence contained a predicted open reading frame of 2,952 base pairs (bp), coding for a protein of 984 amino acids with a predicted molecular weight of approximately 106 kDa. Reverse transcription polymerase chain reaction mapping of the HC-10 transcript demonstrated that the HC-10 gene lacks introns, and the approximately 4,789-bp mRNA contains relatively large 5' (approximately 1,390-bp) and 3' (approximately 440-bp) untranslated regions. The predicted polypeptide contained a high proportion of polar amino acids, with the most abundant amino acids being serine (10.5%), threonine (9.8%), and cysteine (7.6%). The C-terminal region of the predicted polypeptide is characterized by a threonine-rich region containing multiple repeats of the sequence TTTTRP. This repeat motif is similar to that found in the mucin-like genes of vertebrates and lower eukaryotes that have been shown to play important roles in cell-cell interactions in multicellular organisms and invasion of host cells by unicellular parasites.

Amino Acid Sequence↗

[Molecular cloning for testis spermatogenesis cell apoptosis related gene TSARG1 and Mtsarg1 and expression analysis for Mtsarg1 gene].

Spermatogenesis cell apoptosis is a very complex process, which needs many molecules to take part in the programmable death of cells in testis. At present, research of apoptosis for spermatogenesis cell is at the primary step. It is very important to clone spermatogenesis cell apoptosis related genes and spermatogenesis genes in testis. Applying the bioinformatics and experiment technique, we have cloned human and mouse novel gene cDNA sequences--human testis and spermatogenesis cell apoptosis related gene 1 (TSARG1) and mouse testis and spermatogenesis cell apoptosis related gene 1(Mtsarg1) from human and mouse testis cDNA library respectively, using a cDNA fragment (GenBank accession number: BE644538) as an electronic probe, which was significantly changed in expression in cryptorchidism. The GeneBank accession numbers of Mtsarg1 and TSARG1 are AF399971 and AY032925 (NM_139073), respectively. The Mtsarg1 has a 55% identity and 61% similarity with TSARG1 at the amino acid level, which did not share significant homology with any other known protein in databases. The full-length cDNA of TSARG1 gene is 973 bp, including 549 bp open reading frame(ORF) and coding 183 amino acids, whereas the full-length cDNA of Mtsarg1 gene is 1103 bp, including 576 bp ORF and coding 192 amino acids. The predicted molecule weight of TSARG1 is 19948.61 Dolton, and the deduced iso-electric point is 10.24, whereas the Mtsarg1 is 20875.93 and is 9.83, being alkaline proteins. RT-PCR analysis showed that Mtsarg1 was expressed significantly in testis and faintly in epididymis in the ten tissues of testis, ovary, spleen, kidney, lung, heart, brain, epididymis, liver and skeletal muscle in mouse, while it wasn't expressed in the other eight tissues. Therefore, our results suggested that Mtsarg1 and TSARG1 would be pay potential roles in spermatogenesis cell apoptosis or spermatogenesis.

Amino Acid Sequence↗

Quality assessments of HMO diagnosis databases used to monitor childhood vaccine safety.

OBJECTIVE: To assess the quality of automated diagnoses extracted from medical care databases by the Vaccine Safety Datalink (VSD) study. METHODS: Two methods are used to assess quality of VSD diagnosis data. The first method compares common automated and abstracted diagnostic categories ("outcomes") in 1-2% simple random samples of study populations. The second method estimates positive predictive values of automated diagnosis codes used to identify potential cases of rare conditions (e.g., acute ataxia) for inclusion in nested case-control medical record abstraction studies. RESULTS: There was good agreement (64-68%) between automated and abstracted outcomes in the 1-2% simple random samples at 3 of the 4 VSD sites and poor agreement (44%) at 1 site. Overall at 3 sites, 56% of children with automated cerebella ataxia codes (ICD-9 = 334) and 22% with "lack of coordination" codes (ICD-9 = 781.3) met objective clinical criteria for acute ataxia. CONCLUSIONS: The misclassification error rates for automated screening outcomes substantially reduce the power of screening analyses and limit usefulness of screening analyses to moderate to strong vaccine-outcome associations. Medical record verification of outcomes is needed for definitive assessments.

Child, Preschool↗

The yeast SEC17 gene product is functionally equivalent to mammalian alpha-SNAP protein.

The SEC17 gene of Saccharomyces cerevisiae is required for vesicular transport between the endoplasmic reticulum and the Golgi apparatus. Here we report that the product of the SEC17 gene has the exact biochemical properties expected for a yeast homologue of the mammalian transport factor, alpha-SNAP. The DNA sequence of SEC17 codes for a protein of predicted molecular mass of 33 kDa. Immunoblotting indicates that Sec17p fractionates as a peripheral membrane protein and is mostly soluble when overexpressed, suggesting the presence of a saturable membrane receptor for Sec17p. Sec17p was purified from yeast cytosol using a SNAP-dependent in vitro mammalian Golgi transport assay. Kinetic analysis using this assay shows Sec17p acts temporally close to the fusion of transport vesicles with the medial Golgi compartment. In yeast extracts, Sec17p binds to Sec18p with a 1:1 stoichiometry. The interaction between Sec17p and Sec18p requires an activity provided by yeast membranes, and this putative membrane receptor activity is not extracted by high salt treatment of membranes.

Amino Acid Sequence↗

Evaluation of sustained hyperplasia and other short-term tests as predictors of tumorigenic potential in oil products.

Some oil products are known to cause skin tumors following long-term application while others do not. The ability to predict which ones might cause tumors is important. Development of reliable short term tests which can accurately predict tumorigenic potential of oil products is needed to avoid the high cost and long time required for traditional animal bioassays. Several short term tests were evaluated for their ability to predict tumorigenic potential of 10 coded oil samples and results were compared to results of mouse bioassays. Analytical determinations of PAC content (DMSO extraction) and 3-6 ring PAC content were also made for each of the 10 samples for further comparison. Tests which showed good correlation with bioassay results and thus were considered good predictors of tumorigenic potential were: Sustained Epidermal Hyperplasia as measured by epidermal thickness, Nuclear Area of epidermal basal cells, Modified Ames Test and DMSO extraction for PAC content. Tests which did not show good correlation with bioassay results and which were not considered good predictors of tumorigenic potential were: Polymorphonuclear leukocyte (PMN) infiltration into the dermis, Unscheduled DNA Synthesis in epidermal cells and Changes in Nuclear DNA Content of CHO cells.

Animals↗

CHST6 mutations in North American subjects with macular corneal dystrophy: a comprehensive molecular genetic review.

PURPOSE: To evaluate mutations in the carbohydrate sulfotransferase-6 (CHST6) gene in American subjects with macular corneal dystrophy (MCD). METHODS: We analyzed CHST6 in 57 patients from 31 families with MCD from the United States, 57 carriers (parents or children), and 27 unaffected blood relatives of affected subjects. We compared the observed nucleotide sequences with those found by numerous investigators in other populations with MCD and in controls. RESULTS: In 24 families, the corneal disorder could be explained by mutations in the coding region of CHST6 or in the region upstream of this gene in both the maternal and paternal chromosome. In most instances of MCD a homozygous or heterozygous missense mutation in exon 3 of CHST6 was found. Six cases resulted from a deletion upstream of CHST6. CONCLUSIONS: Nucleotide changes within the coding region of CHST6 are predicted to alter the encoded protein significantly within evolutionary conserved parts of the encoded sulfotransferase. Our findings support the hypothesis that CHST6 mutations are cardinal to the pathogenesis of MCD. Moreover, the observation that some cases of MCD cannot be explained by mutations in CHST6 suggests that MCD may result from other subtle changes in CHST6 or from genetic heterogeneity.

5' Untranslated Regions↗

[Automatic identification of structural gene fragments using a set of peptides].

A computer program is designed to facilitate the identification of coding gene's fragments using a set of peptides. The program is written on Basic programming language for personal computer "Iskra-226" (USSR). To accelerate some operations, computer code commands are used. Treatment of 50 DNA fragments by means of 10 peptides takes ca. 1 h of computer time. The program outputs list coding gene's fragments and corresponding peptides. The suggested algorithm is based on our finding that the number of false identifications of a coding gene fragments may be predicted by Poisson distribution and minimized using correct criteria. The suggested method enables one to evaluate the reliability of the true identification of DNA fragments in case of mistakes in primary structure of the gene fragments or peptides.

3',5'-Cyclic-GMP Phosphodiesterases↗

Predicted structures of apolipoprotein II mRNA constrained by nuclease and dimethyl sulfate reactivity: stable secondary structures occur predominantly in local domains via intraexonic base pairing.

Analyses of apolipoprotein II mRNA with chemical and enzymatic probes showed that double- and single-stranded regions were distributed uniformly along the mRNA except for a large (72 nucleotides) single-stranded region containing the translation stop codon. Secondary structure models constrained by the experimental data were made by varying the distance (along the mRNA) over which base pairing was allowed. Four prominent secondary structures were seen with restrictions of 165, 330, or 659 nucleotides suggesting that such structures from via local interactions over distances of 50-120 nucleotides. Predicted long range interactions involve only 2-3 base pairs while local interactions involve helices of 4-10 base pairs. Predicted helices of greater than or equal to 4 base pairs occur primarily within exons, raising the possibility that prominent secondary structures in mRNAs may be largely due to intraexonic base pairing. Tests of single- and double-stranded domains by oligonucleotide-directed RNase H cleavage and primer extension were in accord with the structure model and with nuclease and chemical modification data. The model predicting base pairing between the coding and the 3' noncoding regions was tested by RNase H cleavage followed by oligo(dT)-cellulose chromatography to separate 5' and 3' mRNA fragments. Most (82%) of the 5' fragment remained associated with the 3' noncoding region in a structure with a tm = 50 degrees C in 0.2 M Na+ suggesting that this stem could be stable in vivo. This stem may be stable in the isolated mRNA, but would likely occur transiently in polyribosomal apolipoprotein II mRNA due to ribosome transit through the 5' side of the stem. Alternate structures may occur in this region during ribosome transit and play a role in translation termination or in determining the susceptibility of the mRNA to degradation.

Animals↗

Genes encoding the core proteins of adenovirus type 2.

The nucleotide sequence of the HindIII-D fragment of adenovirus type 2 has been determined. The sequence, which is located between coordinates 41.8 and 51.0, covers most of the L2 cotermination family. It includes three major open translational reading frames encoding the carboxyl-terminal part of the penton base as well as the major core polypeptides V and VII. An additional minor open translational reading frame encoding a highly basic polypeptide was detected in the sequence. The L2 region has a very compact organization with very short distances between the different genes, although no overlapping coding sequences were found. The predicted amino acid sequences of core proteins V and VII reveal that they are highly basic proteins and polypeptide VII resembles the arginine-rich H4 histones in its amino acid composition, but no striking similarities are apparent at the amino acid sequence level. The candidate polypeptide encoded by the newly discovered translational reading frame contains 29% basic residues and includes a hypothetical recognition sequence for the adenovirus-encoded endopeptidase. In conjunction with previously published sequences and those reported in accompanying papers (Akusjärvi, G., Aleström, P., Pettersson, M., Lager, M., Jörnvall, H., and Pettersson, U. (1984) J. Biol. Chem. 259, 13976-13979; Roberts, R. J., O'Neill, K. E., and Yen, C. E. (1984) J. Biol. Chem. 259, 13965-13975) a complete sequence can now be reconstructed for the 35,937-base pairs adenovirus type 2 genome.

Adenoviruses, Human↗

Nucleotide sequence and expression of the Escherichia coli dapB gene.

The Escherichia coli dapB gene encodes dihydrodipicolinate reductase. This enzyme is part of the diaminopimelate-lysine pathway, and its synthesis is repressed by lysine. The dapB gene was cloned into pBR322 from a transducing lambda bacteriophage, its complete nucleotide sequence established, and the transcriptional start localized. The DNA sequence predicts that the dapB gene codes for a 273-amino acid polypeptide, Mr 28,798. No attenuation-type sequence can be found between the mRNA start and the coding sequence. The dapB promoter signals appear to be weak as compared to RNA polymerase consensus sequences. Nevertheless an efficient in vivo synthesis of beta-galactosidase was obtained when the lac operon was inserted in vitro in the dapB gene, downstream of the dapB regulatory signals. Further studies were performed on an in-frame gene fusion constructed in vitro between the dapB and the lacZ genes. They indicated that repression by lysine is exerted on a DNA region restricted to a 153-base pair fragment with only 102 nontranscribed nucleotides. Finally, dapB gene expression showed a gene dosage effect which suggests that it is not controlled by an element present in limiting amounts in the cell.

Amino Acid Sequence↗

Translation and characterization of the fatty acid synthetase messenger RNA.

Fatty acid synthetase messenger RNA was obtained from rat liver polysomal RNA and then injected into Xenopus laevis oocytes. The radioactive fatty acid synthetase protein synthesized in the oocytes was identified by immunoprecipitation with anti-fatty acid synthetase antibody and the immunoprecipitate was then characterized by electrophoresis on sodium dodecyl sulfate-polyacrylamide gel. Co-migration of authentic fatty acid synthetase and the labeled product synthesized in oocytes was observed. Based on sucrose density gradient analysis, the rat liver fatty acid synthetase mRNA has a sedimentation coefficient of approximately 33 S, which agrees with the predicted minimum size necessary to code for the fatty acid synthetase protein. In addition, this mRNA was partially purified with oligo(dT)-cellulose, which indicates that it has a polyadenylate region. The relative in vivo rate of synthesis of fatty acid synthetase and the level of fatty acid synthetase mRNA in liver were also determined during the course of dietary induction of this enzyme. The results indicate that the dietary-induced increase in the level of fatty acid synthetase is probably due to an increased level of the fatty acid synthetase mRNA.

Animals↗

Peptide splicing in the vacuolar ATPase subunit A from Candida tropicalis.

Subunit A of the vacuolar proton pump appears to be responsible for the ATP hydrolysis which is coupled to the pumping of protons into a variety of intracellular acid compartments, including the fungal vacuole. We report here the cloning and sequence determination of the gene encoding subunit A from Candida tropicalis. Southern blot hybridization analysis indicates that there is a single gene which encodes this protein. The gene contains a single intron at the extreme 5'-end of the coding region. The gene is predicted to encode a polypeptide of 1088 residues with a calculated molecular mass of 119,019 daltons, yet the mature polypeptide appears to be approximately 67 kDa, indicating that this protein probably undergoes the same sort of processing that is evidenced in the homologous protein from Saccharomyces cerevisiae in which an approximately 50-kDa polypeptide (the spacer) is spliced out of the mature protein. The Candida gene, with and without this middle portion, has been expressed in S. cerevisiae and found to restore a Saccharomyces subunit A deletion mutant (tfp1-delta 8) to apparently wild-type growth at pH 7.6, and normal vacuolar acidification. The peptide sequence of the two predicted mature ends is very similar to the sequences of the analogous proteins from Daucus carota, S. cerevisiae, and Neurospora crassa (60.5, 87.4, and 72.9% identity, respectively), but the middle portion bears only very limited homology with the Saccharomyces protein sequence. Processing of the gene product occurs in S. cerevisiae, Escherichia coli, and in rabbit reticulocyte-mediated in vitro translation, indicating that the excision is probably autocatalytic. The limited sequence identity seen between the Saccharomyces and Candida spacer domains may considerably narrow the functionally important regions responsible for the excision event.

Adenosine Triphosphatases↗

Exon screening of the genes encoding the beta- and gamma-subunits of cone transducin in patients with inherited retinal disease.

PURPOSE: To screen the exons of the genes encoding the beta3-subunit (GNB3) and gammac-subunit (GNGT2) of cone transducin for mutations in a large number of unrelated patients with various forms of inherited retinal disease including cone dystrophy, cone-rod dystrophy and macular dystrophy. METHODS: Exons of the two genes were screened for mutations by denaturing gradient gel electrophoresis (DGGE) and/or single strand conformation polymorphism electrophoresis (SSCP); any variants were sequenced directly. RESULTS: Although many sequence variants were found in both genes, none could be associated with disease. Additionally, the gene structure and sequence of the coding exons of GNB3 were determined and compared with those of the dog homolog. Both human and canine GNB3 have nine coding exons and their two predicted amino acid sequences have 97% identity. CONCLUSIONS: The results indicate that GNB3 and GNGT2 are unlikely sites of mutations responsible for inherited retinal degenerations that predominantly effect cone-mediated function (cone and cone-rod dystrophies) or have a predilection for disease in the macula (macular dystrophies).

Amino Acid Sequence↗