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Progesterone induces expression of endometrial messenger RNA encoding for cyclooxygenase (sheep).

Exogenous progesterone given early in the ovine estrous cycle results in precocious luteolysis. It has been suggested that under this circumstance regression of the corpus luteum is caused by an advancement in the timing of uterine secretion of prostaglandin F2 alpha. Uterine tissues were obtained from ewes following administration of progesterone (or injection vehicle), fixed in paraformaldehyde, and embedded in paraffin. Tissue sections were hybridized using an 35S-labeled cRNA probe specific for cyclooxygenase mRNA. There was approximately an eight-fold increase in the level of hybridization signal, localized mainly to uterine glands, consequential to treatment with progesterone. Thus, progesterone appears to control expression of the endometrial gene and(or) the stability of the message encoding for a rate-limiting enzyme involved in metabolism of arachidonic acid to its luteolytic product, thereby resolving the length of the nonpregnant cycle.

Animals↗

Synaptotagmin I: a major Ca2+ sensor for transmitter release at a central synapse.

Mice carrying a mutation in the synaptotagmin I gene were generated by homologous recombination. Mutant mice are phenotypically normal as heterozygotes, but die within 48 hr after birth as homozygotes. Studies of hippocampal neurons cultured from homozygous mutant mice reveal that synaptic transmission is severely impaired. The synchronous, fast component of Ca(2+)-dependent neurotransmitter release is decreased, whereas asynchronous release processes, including spontaneous synaptic activity (miniature excitatory postsynaptic current frequency) and release triggered by hypertonic solution or alpha-latrotoxin, are unaffected. Our findings demonstrate that synaptotagmin I function is required for Ca2+ triggering of synchronous neurotransmitter release, but is not essential for asynchronous or Ca(2+)-independent release. We propose that synaptotagmin I is the major low affinity Ca2+ sensor mediating Ca2+ regulation of synchronous neurotransmitter release in hippocampal neurons.

Animals↗

Studies of BCR and ABL gene rearrangements in chronic myelogenous leukemia patients by conventional and pulsed-field gel electrophoresis using gel inserts.

Continual monitoring of the presence of the Philadelphia (Ph) chromosome in patients with chronic myelogenous leukemia (CML) is important for diagnosis as well as evaluation of therapy response of these patients. Because the Ph chromosome has been characterized molecularly to involve a reciprocal translocation between the ABL and BCR genes, there is an increasing interest in the use of molecular probes to detect chromosomal rearrangements in this disease. While rearrangements involving the bcr region of the BCR gene can be detected by conventional gel electrophoresis (CGE), detection of those involving ABL generally requires pulsed-field gel electrophoresis (PFGE). Currently, however, CGE and PFGE require different methods of cell preparation, with isolated DNA used in CGE and gel inserts containing whole cells used in PFGE. In this study, we show that the gel-insert method of DNA preparation can be adapted for use in CGE with slight modification of the gel-running conditions. The advantages of this method are demonstrated by studying both bcr and ABL rearrangements in bone marrow and peripheral blood samples of CML patients. Furthermore, we report a novel finding that chromosomal breakpoints in the ABL gene of CML patients occur predominantly between exons 1b and 1a.

Bone Marrow↗

Isolation and nucleotide sequence analysis of the rat testis-specific major heat-shock protein (HSP70)-related gene.

The isolation of a rat hsp 70-related gene which is specifically and highly expressed in testis is described together with the complete nucleotide sequence of the transcription unit (2947 bp), 5' flanking (about 1 kbp) and 3' flanking (about 0.3 kbp) regions. The sequence analysis and nuclease S1 mapping revealed that the isolated gene (referred to as the hst70 gene) represents a novel, distinct member of the hsp70 multigene family. Its transcription unit lacks introns and a single open reading frame encodes a protein of 69.5 kDa. The predicted amino acid sequence of this protein is highly similar (only four out of 633 amino acids are different) to that encoded by the mouse testis-specific hsp70.2 gene (Zakeri, Z.F., Wolgemuth, D.J. and Hunt, C.R. (1988) Mol. Cell. Biol. 8, 2925-2932). The functional significance of multiple potentially regulatory sequences (e.g. TATA-boxes, heat-shock element and estrogen receptor binding site) present in the 5' flanking region of the rat hst70 gene is discussed.

Amino Acid Sequence↗

Effects of fimbria-fornix and angular bundle transection on expression of the p75NGFR mRNA by cells in the medial septum and diagonal band of Broca: correlations with cell survival, synaptic reorganization and sprouting.

Quantitative in situ hybridization techniques were used to examine the effects of lesions which sever hippocampal cholinergic and cortical afferents on p75NGFR mRNA-expressing cells located in the medial septum (MS) and the vertical (VDB) and horizontal (HDB) limbs of the diagonal band of Broca. Animals received either bilateral transection of the fimbria/fornix, unilateral transection of the angular bundle, or sham surgery. Four days later, animals were sacrificed and sections through the MS, VDB and HDB were processed for detection of the p75NGFR mRNA using in situ hybridization techniques previously described (Mol. Brain Res., 6 (1989) 275-287). Transection of the fimbria/fornix and angular bundle differentially affected p75NGFR-expressing cells in the MS, VDB and HDB within 4 days after injury, in ways which were consistent and correlate with subsequent effects on cell survival, synaptic reorganization and growth. In particular, in the MS and VDB, transection of the fimbria/fornix resulted in a significant decrease in the size of p75NGFR-expressing cells (reductions of 25.9% and 15.1% respectively) which was accompanied by a significant reduction (37.9% and 12.7% fewer grains/cell) in relative levels of p75NGFR mRNA. In contrast, in the HDB, transection of the fimbria/fornix had no significant effect on the average size of p75NGFR-expressing cells; however, a significant increase (49%) in the mean relative level of p75NGFR mRNA was observed which may, in turn, reflect a large increase (as much as 2-3 fold) in the levels of p75NGFR mRNA expressed by a subpopulation of hippocampally projecting cholinergic neurons located in the HDB. Finally, transection of the angular bundle resulted in small, but significant increases (9.4% and 10.9%) in relative levels of p75NGFR mRNA in the MS and VDB, as well as an increase (19.6%) in the number of p75NGFR mRNA-expressing cells in the HDB, on the injured side. No increases in p75NGFR expression in the MS, VDB or HDB contralateral to the lesion were observed; however, a decrease in the size (6.9%) and message content (19.4%) of p75NGFR-expressing cells was detected in the MS contralateral to the lesion. Most importantly, all of these effects are consistent with the subsequent effects of these lesions on the survival of basal forebrain cholinergic cells, and the reorganization and growth of cholinergic afferents to the hippocampal formation.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholinesterase↗

Apolipoprotein E epsilon 4 allele frequency in patients with Lewy body dementia, Alzheimer's disease and age-matched controls.

Genotypes of apolipoprotein E (ApoE) were determined by polymerase-chain reaction (PCR) amplification and restriction-sizing of brain DNA from 39 cases of Lewy body dementia (LBD), 68 senile Alzheimer's disease (AD) patients and 47 neuropathologically validated non-demented controls. There was a 3-fold increase in the epsilon 4 allele frequency in both LBD and AD groups compared with controls. These results indicate that LBD and AD share the epsilon 4 allele of ApoE as a major risk factor for the development of disease and suggest a similarity in disease aetiology.

Aged↗

Cloning of human neurotensin/neuromedin N genomic sequences and expression in the ventral mesencephalon of schizophrenics and age/sex matched controls.

A human genomic clone encompassing exons 1-3 of the neurotensin/neuromedin N gene was identified using a canine neurotensin complementary DNA probe. Sequence comparisons revealed that the 120-amino acid portion of the precursor sequence encoded by exons 1-3 is 89% identical to previously determined cow and dog sequences and that the proximal 250 bp of 5' flanking sequences are strikingly conserved between rat and human. The 5' flanking sequence contains cis-regulatory sites required for the induction of neurotensin/neuromedin N gene expression in PC12 cells, including AP1 sites and two cyclic adenosine-5'-monophosphate response elements. Oligonucleotide probes based on the human sequence were used to examine the distribution of neurotensin/neuromedin N messenger RNA in the ventral mesencephalon of schizophrenics and age- and sex-matched controls. Neurotensin/neuromedin N messenger RNA was observed in ventral mesencephalic cells some of which also contained melanin pigment or tyrosine hydroxylase messenger RNA. Neurons expressing neurotensin/neuromedin N messenger RNA were observed in the ventral mesencephalon of both schizophrenic and non-schizophrenic humans.

Adult↗

The cDNA cloning and expression of the gene encoding rat gelatinase B.

During a study aimed at defining the role of tissue remodeling genes implicated in wound healing, we isolated cDNA clones encoding gelatinase B (GelB) from a cDNA library derived from healing rat skin wound. The predicted rat GelB comprising 708 amino acids shows 75% and 82% identity with the human and mouse GelB, respectively. By Northern blot analysis, two GelB transcripts of 2.4 and 3.0 kb were observed in rat tissues, and shown to arise through the differential use of polyadenylation signals. Recombinant rat pro-GelB produced in transfected COS-1 cells exhibited a molecular weight of 92 kDa, as shown by gelatin zymography. Autocatalytic processing to active lower-molecular-weight forms was induced by 4-aminophenylmercuric acetate, and this process was inhibited in the presence of EDTA.

Amino Acid Sequence↗

Immunoreactive enzyme protein in medium-chain acyl-CoA dehydrogenase deficiency.

Medium-chain acyl-CoA dehydrogenase (MCAD) deficiency is a common inborn error of mitochondrial fatty acid oxidation. To determine if immunoreactive enzyme protein is present in patients with MCAD deficiency, we studied cultured skin fibroblasts from patients with the 985 point mutation, present in about 85% of cases, and cell lines from patients in which the point mutation is not present or only involves one allele. Immunoblotting studies, using a polyclonal antibody to the purified protein, showed an absence of immunoreactive protein in mitochondrial fractions prepared from fibroblasts from MCAD-deficient patients. To determine whether MCAD protein accumulated in the cytosol because of impaired transport into the mitochondria, we immunoprecipitated MCAD protein from the fibroblast homogenate. MCAD protein was detected in the immunoprecipitates from controls, but not in those from the MCAD-deficient patients. These results suggest that either the MCAD protein is not synthesised or, if produced, it is rapidly degraded.

Acyl-CoA Dehydrogenase↗

Tight linkage between type III Gaucher's disease (Norrbottnian type) and a MspI polymorphism within the gene for human glucocerebrosidase.

A MspI polymorphism was detected in the beta-glucocerebrosidase gene in 10 Swedish families affected by type III Gaucher's disease. The sizes of the polymorphic fragments were 1.70 and 1.75 kb and the disease was found to segregate with the 1.70-kb fragment in 32 meioses. Only the 1.75-kb fragment was detected in families with no history of Gaucher's disease. The results indicate that the mutation causing type III Gaucher's disease has occurred once within the Swedish population. The polymorphism is useful for carrier detection since biochemical tests sometimes give inconclusive results.

Deoxyribonuclease HpaII↗

Tandem competitive polymerase chain reaction (TC-PCR): a method for determining ratios of RNA and DNA templates.

A sensitive and accurate method for determining the ratios of RNA and DNA templates by polymerase chain reaction (PCR) is presented. A common competitor containing tandemly arranged internal standards differing from the target template by the presence of different restriction enzyme sites is coamplified with the target templates under identical conditions. Products from each template and internal standard are identified by the band pattern after digestion with the restriction enzyme. As the amount of the common competitor is kept constant for all target templates, the ratio of PCR products from the templates reflects their ratio in the reaction mix before amplification. The method was used to study the relative abundance of mRNA for the pro-alpha1 and pro-alpha2 chains of type I collagen and for estimating disturbances of normal ratio in the inherited bone disorder, osteogenesis imperfecta.

Base Sequence↗

Skewed X-inactivation in cloned mice.

In female mammals, dosage compensation for X-linked genes is accomplished by inactivation of one of two X chromosomes. The X-inactivation ratio (a percentage of the cells with inactivated maternal X chromosomes in the whole cells) is skewed as a consequence of various genetic mutations, and has been observed in a number of X-linked disorders. We previously reported that phenotypically normal full-term cloned mouse fetuses had loci with inappropriate DNA methylation. Thus, cloned mice are excellent models to study abnormal epigenetic events in mammalian development. In the present study, we analyzed X-inactivation ratios in adult female cloned mice (B6C3F1). Kidneys of eight naturally produced controls and 11 cloned mice were analyzed. Although variations in X-inactivation ratio among the mice were observed in both groups, the distributions were significantly different (Ansary-Bradley test, P<0.01). In particular, 2 of 11 cloned mice showed skewed X-inactivation ratios (19.2% and 86.8%). Similarly, in intestine, 1 of 10 cloned mice had a skewed ratio (75.7%). Skewed X-inactivation was observed to various degrees in different tissues of different individuals, suggesting that skewed X-inactivation in cloned mice is the result of secondary cell selection in combination with stochastic distortion of primary choice. The present study is the first demonstration that skewed X-inactivation occurs in cloned animals. This finding is important for understanding both nuclear transfer technology and etiology of X-linked disorders.

Animals↗

Sensory and motor effects of experimental muscle pain in patients with lateral epicondylalgia and controls with delayed onset muscle soreness.

This study compares the effect of experimental muscle pain on deep tissue sensitivity and force attenuation in the wrist extensors of patients with lateral epicondylalgia (n=20), and healthy controls (n=20) with experimentally induced sensori-motor characteristics simulating lateral epicondylalgia. Delayed onset muscle soreness (DOMS) in wrist extensors of healthy controls was induced by eccentric exercise in one arm 24h prior to injection (Day 0). Saline-induced pain intensity (visual analogue scale, VAS), distribution, and quality were assessed quantitatively in both arms for both groups. Pressure pain thresholds (PPT) were assessed at three different sites in the wrist extensors. Maximal grip force and wrist extension force were recorded. In response to saline-induced pain in the extensor carpi radialis brevis, regardless of arm, the patient group demonstrated a significantly quicker pain onset (P<0.01), mapped larger pain areas and more referred pain areas, compared to healthy controls (P<0.03). Pain persisted significantly longer in the sore arm of the patient group, compared with all other arms (P<0.02). Patients demonstrated significant bilateral hyperalgesia at extensor carpi radialis brevis during and post saline-induced pain compared to pre-injection and healthy controls (P<0.04). The sore arm in patients and the DOMS arms in healthy subjects showed significantly reduced maximal force (P<0.0001), at all Day 1 times compared with the control arms. In patients, the bilateral increase in deep tissue sensitivity and enlarged referred pain areas during saline-induced pain might suggest involvement of central sensitisation.

Adult↗

Analysis of L-myc gene polymorphism in patients with renal failure outcome to renal transplant.

BACKGROUND: Abnormalities of cell numbers and apoptosis have been observed in renal failure. As uncontrolled expression of c-myc is known to induce apoptosis, we thought that polymorphism in the other myc gene, L-myc gene, which is structually similar to c-myc and reported to be expressed in the kidney, may have a role in the induction of apoptosis and thus have role in chronic renal failure. The aim of this study was to investigate the relationship between the distribution of L-myc genotypes and renal failure. METHODS: In the present study we examined 101 chronic renal failure patients who had either live or cadaveric renal transplants and 105 healthy individuals, for L-myc gene polymorphism by polymerase chain reactions and restriction fragment length polymorphism techniques. RESULTS: Among our patient group, the distribution of the LL, LS, and SS genotypes was 24% (n=25), 71% (n=71), and 5% (n=5), respectively, versus 41% (n=43), 47% (n=49), and 12% (n=13) in our control group. The distribution of genotypes was significantly different between our patients and the control group (chi2=12.281; P=.002). The frequency of the S allele was significantly higher in the patient group (chi2=6.122; P=.013). CONCLUSION: Our study showed that having an S allele in the L-myc gene may increase the risk of renal failure.

Genes, myc↗

Metatranscriptomic analysis of viral sequences associated with Culex nigripalpus at an Alabama aquaculture site.

Mosquitoes associated with aquaculture habitats can harbor diverse viruses, yet the viromes of many locally abundant species remain poorly characterized. At an aquaculture-associated site in Auburn, Alabama, we surveyed mosquito populations and found Culex nigripalpus to be the dominant species collected. To characterize viruses associated with this mosquito, we performed RNA-seq on pooled female Cx. nigripalpus and compared complementary bioinformatic workflows for viral detection and genome recovery. One workflow removed host-associated reads by mapping to the closest available mosquito reference genome prior to assembly, whereas a second workflow used fully de novo assembly and viral database annotation. Additional protein-level filtering, cross-workflow comparison, and comparison of Trinity and rnaSPAdes assemblies were used to prioritize well-supported viral candidates. Across the original analyses, 16 submitted accessions corresponding to 12 collapsed virus/name groups were recovered, including Merida virus, Hubei mosquito virus 5, Zhejiang mosquito virus, Hubei virga-like virus 3, Rinkaby virus, Elemess virus, Qingnian mosquito virus, Serbia narna-like virus 2, XiangYun narna-levi-like virus 8, Ecclesville picorna-like virus, and baculovirus-like fragments. Several candidates were supported across multiple workflows, while others were recovered only under specific analytical conditions, indicating that candidate recovery was influenced by assembly and filtering choices. Selected viral contigs were independently supported by RT-PCR amplification. Overall, these results provide a first characterization of viral sequences associated with Cx. nigripalpus from an Alabama aquaculture-associated site and show that comparison across assembly and filtering strategies helped prioritize the most consistently supported viral candidates.

Animals↗

Lesch-Nyhan disease in a female with a clinically normal monozygotic twin.

Lesch-Nyhan disease (LND) is an inborn error of purine metabolism caused by defective activity of the enzyme hypoxanthine guanine phosphoribosyl transferase (HPRT, EC 2.4.2.8), resulting from mutation in the corresponding gene on the long arm of the X chromosome (Xq26). The classic phenotype occurs almost exclusively in males and is characterized by hyperuricemia, mental retardation, severe dystonia, and self-injurious behavior. Heterozygous carrier females are usually clinically normal. However, a small number of clinically affected females have been described. In all previous cases there was a mutation in one HPRT allele and non-random inactivation of the X chromosome carrying the normal HPRT gene. We have analyzed a female MZ twin pair discordant for Lesch-Nyhan disease. The mother and both twins are heterozygous carriers of a HPRT splicing mutation (IVS8 + 4A > G; c.609 + 4A > G) and all three express the mutant allele at similar frequencies in peripheral blood T cells. The mother and one sister are clinically normal. In the affected twin, the clinical phenotype is classical for Lesch-Nyhan disease, despite the fact that HPRT activity in the blood was also normal. X inactivation analysis showed a skewed pattern in the fibroblasts of the affected twin sister, with the X chromosome carrying the normal HPRT allele preferentially inactivated. As in many other reported cases of X-linked diseases, the discordant phenotype of the two monozygous twin sisters suggests that the process responsible for monozygotic twinning can trigger skewed X inactivation.

Adult↗

Detection of thyrotropin-releasing hormone (TRH) mRNA by the reverse transcription-polymerase chain reaction in the human normal and tumoral anterior pituitary.

To investigate the presence of TRH mRNA in the human anterior pituitary tissue, total RNA from human normal and tumoral anterior pituitary, hypothalamus (positive control) and muscle tissues (negative control) was reverse transcribed (RT) to the first strand of cDNA. RT products were then amplified by polymerase chain reaction (PCR) using a set of three exon-specific primers (two external 5' and 3' primers and one internal 3' primer) for a target sequence of the TRH gene including an intronic sequence of about 650 base pairs (bp). Southern analysis of the RT-PCR products specifically hybridizing with a 45-mer TRH probe showed two bands of the predicted sizes (399 and 351 bp) far more intense in hypothalamus than in normal and tumoral anterior pituitary tissue. The 399 and 351 bp RT-PCR products contained the BglII enzyme restriction site included in the TRH cDNA sequences spanned by the primers and the two respective digested fragments which were, as predicted, 337 and 289 bp long, hybridized with the TRH probe. Based on these results, we can conclude that the RT-PCR products generated from RNA tissue were the target TRH sequences in the human normal and tumoral anterior pituitary tissue as well as in the hypothalamus. Our data imply TRH gene expression in the human anterior pituitary.

Adenoma↗