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Laboratory characterization of influenza A viruses (H3N2)--pathogens of Leningrad 1983 epidemic.

Seventy strains of influenza A virus (H3N2) isolated in Leningrad during the influenza epidemic in January--March 1983 were studied. The virus isolates appeared to be markedly heterogeneous with respect to antigenic characteristics of surface glycoproteins, biological properties (haemagglutinating and neuraminidase activities, sensitivity to gamma-inhibitors, etc.) as well as genome structure. The identity of the virus isolates with the reference influenza A virus was as follows: 10% were similar to A/Texas/1/77 virus, 30% to A/Bangkok/1/79 virus, and 20% to A/Philippines/2/82 virus. A large part of the isolated viruses (27 of 70) were characterized by a certain (mainly unilateral) relatedness with the virus A/Victoria/35/72. The isolates were extremely heterogeneous with respect to genomic characteristics as determined by cRNA-vRNA hybridization test and differed from the corresponding reference strains by the homology of genes 1-6.

Animals↗

Increase of urokinase-type plasminogen activator gene expression in human lung and breast carcinomas.

To assess the postulated correlation between plasminogen activators (PAs) and malignancy, we determined the mRNA content for urokinase-type (u-PA) and tissue-type (t-PA) enzymes in a prospective series of 29 primary lung and 27 primary breast carcinomas. Dot blots of total RNAs were hybridized with appropriate cRNA probes under conditions that allow quantitative measurement of the mRNA level for each PA. Most tumors (43 of 56) had a u-PA mRNA content higher than the mean + 1 SD of nonmalignant tissue counterparts. A large, 4- to 20-fold, increase in u-PA mRNA content was demonstrated in 14 of 29 lung carcinomas and in 10 of 27 breast carcinomas. A statistically significant correlation (Fisher's test, P = 0.007) was found between elevated u-PA mRNA content in lung carcinomas and the presence of regional lymph node metastases. These results are consistent with a role for u-PA in tumor invasiveness and metastatic propensity and may have important prognostic and therapeutic implications.

Adenocarcinoma↗

Tissue-specific regulation of glucocorticoid receptor mRNA by dexamethasone.

The effect of glucocorticoids on tissue-specific regulation of glucocorticoid receptor mRNA was studied in intact and adrenalectomized rats. Glucocorticoid receptor mRNA was examined by Northern blot hybridization and quantitated by slot blot hybridization using a glucocorticoid cRNA probe. Glucocorticoid receptor mRNA was greatest in the lung with the relative levels in other tissues as follows: spleen, 70%; brain, 55%; liver, 50%; kidney, 43%; heart, 35%; adrenal, 13%; and testis only 8%. A tissue-specific difference in glucocorticoid receptor mRNA accumulation was found after adrenalectomy. There was little change in glucocorticoid receptor mRNA levels in liver and lung, but the brain and kidney demonstrated a 40 and 80% increase in mRNA, respectively. In contrast, dexamethasone treatment resulted in a consistent decrease of 40-60% in the accumulation of glucocorticoid receptor mRNA in all tissues studied. These results provide in vivo evidence for the autoregulation of the glucocorticoid receptor by its homologous ligand and demonstrate the existence of tissue-specific regulation of the glucocorticoid receptor mRNA levels in states of glucocorticoid excess and depletion.

Adrenalectomy↗

Antipeptide antibodies that recognize a lymphocyte substance P receptor.

In an effort to investigate the presence of substance P (SP) receptors on lymphocytes, polyclonal antibodies against SP receptors were developed. The immunogen used to generate these antibodies was a peptide encoded by an RNA complementary to the mRNA for SP. The rationale for using this SP complementary peptide (termed SP CP) as an immunogen resulted from the observation that 3H-SP bound to microtiter wells coated with SP CP in a dose dependent and saturable fashion. Furthermore, binding was blocked with excess unlabeled SP or SP antagonist, D-Pro2-D-Phe7-D-Trp9-SP. Inasmuch as the peptide, SP CP, specifically bound 3H-SP, we hypothesized that antibodies against this peptide might recognize a SP receptor binding site. Using the SP receptor positive lymphoblast cell line, IM-9, affinity-purified antibodies against SP CP but not antibodies against keyhole limpet hemocyanin recognized a molecule on the surface of IM-9 cells. Anti-SP CP binding to IM-9 cells was blocked with excess SP antagonist, suggesting that the antibody and the SP antagonist were competing for the same binding site. In support of this possibility, anti-SP CP antibodies blocked 3H-SP binding to IM-9 cells. An immunoaffinity column coupled with antibodies against SP CP bound protein from solubilized IM-9 cells. This isolated protein bound 125I-Tyr8-SP and binding was specifically blocked with SP as well as by SP antagonist, neurokinin A, and eledoisin. Passthrough material did not bind SP suggesting that a SP receptor had been purified. Western blot analysis of solubilized IM-9 cell proteins using anti-SP CP antibodies but not preimmune IgG recognized a single protein of 58,000 D. Taken together, these results demonstrate that antibodies against SP CP recognize a SP receptor present on the lymphocyte cell line, IM-9.

Animals↗

Lack of CSF-1 receptor message in Reed-Sternberg cells.

The histogenesis of the Reed-Sternberg (R-S) cell in Hodgkin's disease is uncertain. Some have suggested that it is a derivative of the monocyte/macrophage lineage. To explore this possibility, we have searched for the presence of mRNA corresponding to the c-fms proto-oncogene, a marker for cells of the monocyte/macrophage lineage which encodes the colony-stimulating factor-1 receptor. In situ hybridization was performed using a single-stranded c-fms complementary RNA (cRNA) to probe R-S cells, lymphocytes, and eosinophils from touch imprints of a lymph node from a 12-year-old boy with mixed cellularity Hodgkin's disease in relapse. The probe was synthesized from a bacterial plasmid, pSM3, into which a portion of v-fms (a viral-derived oncogene) had been inserted. The plasmid was linearized with a restriction endonuclease, and 35S-labeled cRNA was synthesized from the DNA template using T3 RNA polymerase and the nucleotide analog [35S]UTP. Positive control hybridizations were obtained with the human acute promyelocytic cell line HL-60 induced to monocyte differentiation. R-S cells were clearly negative, supporting a cell of origin other than the monocyte. In situ hybridization is a potentially powerful method for exploring differentiation and assigning cell lineage in R-S cells.

Child↗

Receptor-specific antibodies by immunization with "antisense" peptides?

Synthetic peptides whose sequences are specified by RNA complementary to the mRNA coding for peptide hormones have been reported to be useful antigens for the generation of receptor-specific antibodies. We have synthesized an eikositetrapeptide whose sequence corresponds to the complementary strand of the mRNA coding for the sequence of human ACTH(1-24). This "antisense" ACTH(1-24) peptide, "HTCAh," was coupled to bovine serum albumin or thyroglobulin prior to injection into rabbits. The complex proved to be very antigenic, inducing antisera of high titer and specificity. The antisera were tested in ACTH and MSH binding and bioassays, with or without prior purification of IgG molecules. None of the antisera displayed any effect in these assays, nor did they bind to blotted MSH/ACTH receptor protein from Cloudman S91 melanoma cells or to ACTH antibodies. The HTCAh peptide itself did not display measurable association to tritiated or iodinated ACTH(1-24), nor did it displace ACTH(1-24) in a receptor binding assay. However, the peptide bound to a low affinity site of mouse B16 melanoma cells which was independent of the MSH/ACTH binding site and induced melanin formation in these cells, but only at relatively high peptide concentration. Thus, in our hands, the antisense peptide approach using HTCAh as antigen did not lead to receptor-specific antibodies.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Correlation of modified human papilloma virus early gene expression with altered growth properties in C4-1 cervical carcinoma cells.

In cervical carcinomas and cell lines derived from these tumors the DNA of specific types of human papilloma viruses (HPVs) is integrated into the host cell genome. The two viral open reading frames E6 and E7 are consistently transcribed in tumors and cell lines, and the respective proteins were detected in cells cultured in vitro. As shown here, modulation of HPV 18 E6 and E7 gene expression in C4-1 cervical carcinoma cells is accompanied by an altered cell growth. HPV 18 E6 and E7 expression can be enhanced by glucocorticoid treatment of C4-1 cells, and an increased cell proliferation is observed. In contrast, after introduction of complementary RNA to the HPV 18 E6 and E7 open reading frames, their expression is inhibited, and decreased cell growth is observed. These results support the hypothesis that expression of HPV E6 and E7 open reading frames is directly involved in growth regulation of cervical carcinoma cells.

Biological Transport↗

Differential expression of vasopressin alleles in the Brattleboro heterozygote.

A solution hybridization/RNase protection assay for the molar quantitation of vasopressin and oxytocin mRNAs, using synthetic complementary RNA probes, is described. This assay was optimized to permit the identification of vasopressin (AVP) mRNAs containing the frame-shift point deletion causing inheritable diabetes insipidus in the Brattleboro strain of rat. Examination of RNA from hypothalamic magnocellular tissue punches found that of the 86.1 x 10(-18) mol [86.1 attomoles (amol)] of AVP mRNA detected in the Brattleboro heterozygote paraventricular (PVN) nucleus, 5.2% could be shown to be mutant AVP mRNA (AVPd RNA). The percentage of AVPd RNA increased dramatically to 18.1% after 6 d of chronic intermittent salt-loading. Similar percentages and percentage increases of AVPd RNA were detected in the heterozygote supraoptic nucleus (SON). These values were contrasted with those found in parallel studies in both Long Evans and Brattleboro homozygotes, and compared with values for oxytocin (OT) mRNA in all 3 AVP rat genotypes. The results of continued osmotic regulation of the mutant AVP gene, the low native levels of AVPd RNA found in both the Brattleboro heterozygote and homozygote, and the magnitudes of AVPd expression change with chronic osmotic challenge were interpreted as indicating that (1) in the diploid rat genome, both AVP alleles are transcribed, (2) the osmotic regulation of the mutant AVP gene is normal, and (3) the low levels of AVPd mRNA are consistent with a shorter-than-control effective mRNA half-life.

Alleles↗

Replication of murine cytomegalovirus in reproductive tissues.

Murine cytomegalovirus (MCMV) was found in preproductive tissues of newborn mice acutely infected with this virus. Using 3H-labeled complementary RNA (cRNA) probe made from MCMV DNA, viral genetic material clearly occupied ovarian stromal cells surrounding the follicular region but not cells of the follicle or cells in the outer tunic layers. In the testes, squamous epithelial cells external to the tunica albuginea harbored viral genetic material. The immaturity of germ line cells in testes of one-week-old mice precluded identification of these cells or examination of their involvement. The presence of viral DNA in reproductive tissue during acute infection raised the possibility that the ovary and/or testes might act as a reservoir for latent virus later in life of adult mice. Hybridization kinetics analysis of DNA isolated from ovaries and testes of 5- and 6-month-old mice latently infected with MCMV suggested that the viral genome was present in both organs.

Age Factors↗

Isolation of pseudorabies virus from trigeminal ganglia of a latently infected sow.

A 2-year-old sow with a relatively low virus-neutralization (VN) titer (1:8) against pseudorabies virus (PRV) was brought to the National Animal Disease Center for observation and study. The sow was kept in isolation for approximately 6 weeks, and repeated nasal and tonsillar swabs for virus isolation and blood samples for VN tests were obtained during this interval. At the end of 5 weeks' observation, the sow was injected IM with 200 mg of dexamethasone and was euthanatized 1 week later. Parts of the two trigeminal ganglia, tonsillar tissue, and nasal secretions were cultured in porcine kidney cells. The rest of the trigeminal ganglia was extracted with phenol and tested for presence of the PRV-DNA genome by hybridization with tritiated complementary RNA. The PRV was isolated from the trigeminal ganglia only, and the PRV genome was demonstrated in the same tissue. This latently infected sow was a potential shedder of PRV.

Animals↗

[Repetitious DNA in the genome of Drosophila lummei Hackman and its role in replication and chromosome behavior in mitosis].

The toromere previously found by other workers in the distal end of the sixth chromosome (microchromosome) of D. lummei was studied using differential staining of D. lummei giant chromosomes. The toromere which was first described as a quinacrine-bright structure appears as a C-positive body. Quantitative cytofluorometric analysis showed a significant increase in toromeric DNA under low temperature conditions. In situ hybridization of 125I nick-translated D. virilis sDNA (all three satellites were included in the sample) with polytene chromosomes of D. lummei larvae cultured at 12 degrees C revealed no label incorporation into the toromere region. However in situ hybridization of [3H]RNA complementary to highly repetitious DNA of D. lummei and D. virilis (C0t = 10(-1)--10(-2)) with polytene chromosomes of the larvae cultured at 12 degrees coupled with banding studies enable us to conclude that the toromere probably contains AT-rich repeated DNA. Well-developed toromere in the sixth chromosome of D. lummei was also demonstrated at normal temperature (25 degrees) in interspecific hybrids. The role of the toromere structure in the mitotic behaviour of microchromosomes and their replication pattern is discussed.

Animals↗

Developmental and regional expression pattern of a novel NMDA receptor-like subunit (NMDAR-L) in the rodent brain.

A novel NMDA receptor-like (NMDAR-L) cDNA was isolated that contained an open reading frame coding for a predicted polypeptide of 1115 amino acids that shares approximately 27% identity with NMDA receptor subunits. In situ hybridization experiments indicated that NMDAR-L mRNA was expressed in the developing rodent CNS. On postnatal day 1 (P1), NMDAR-L mRNA expression was pronounced in the entorhinal cortex, the subiculum and the thalamus, in layer V of the developing neocortex, in the superior and inferior colliculi, and various regions of the hindbrain, excluding the cerebellum. On P5, NMDAR-L mRNA was expressed in layer V of the neocortex, in the entorhinal cortex, in the subiculum, and in the thalamus. On P14, NMDAR-L mRNA was expressed in layers II-VI of the neocortex, in the entorhinal and piriform cortex, in the subiculum and CA1 field, and in the nucleus of the lateral olfactory tract. In the adult brain, NMDAR-L mRNA was detected predominately in the nucleus of the lateral olfactory tract. Injection of NMDAR-L cRNA into Xenopus oocytes did not lead to the expression of homomeric glutamate-activated channels. However, coinjection of the triple combination of NMDAR-L with NMDAR1 and NMDAR2B cRNAs led to a striking decrease in the current magnitude compared to currents obtained after coexpression of the double combination of NMDAR1 with NMDAR2B. While the function of NMDAR-L remains to be established, its developmental and regional expression pattern suggests that NMDAR-L may influence axonal outgrowth and synaptogenesis during brain development.

Aging↗

[The localization and preliminary characteristics of antigenic sites (B epitopes) in the nucleocapsid protein of the Lassa virus].

Nucleocapsid protein of Lassa virus contains 4 epitope sites. Three of them were localized in amino acid position 123-1 27, 337-346, and 518-527. Monoclonal antibody 1108 specific to Lassa virus NP-protein reacted with 123-127 synthetic peptide in solid-phase ELISA and precipitated nucleocapsid proteins of Machupo, Tacaribe, and Mopeia arenaviruses in RIP.

Amino Acid Sequence↗

Receptors that couple to 2 classes of G proteins increase cAMP and activate CFTR expressed in Xenopus oocytes.

The cystic fibrosis transmembrane conductance regulator (CFTR), a Cl- channel activated by phosphorylation, was expressed in Xenopus oocytes along with various combinations of several other components of the cAMP signalling pathway. Activation of the coexpressed beta 2 adrenergic receptor increased cAMP and led to CFTR activation. The activation of CFTR (1) requires only short (15 s) exposure to isoproterenol, (2) occurs for agonist concentrations 100-1000 fold lower than those that produce cAMP increases detectable by a radioimmunoassay, (3) requires injection of only 5 pg of receptor cRNA per oocyte, and (4) can be increased further by coexpression of cRNA for adenylyl cyclase type II or III or for Gs alpha. In addition, CFTR activation and cAMP increases by beta 2 activation were enhanced by activation of the coexpressed 5HT1A receptor, which is thought to couple to Gi. The additional activation by the 5HT1A receptor was enhanced by coexpression of adenylyl cyclase type II but not with type III and may proceed via the beta gamma subunits of a G protein. The sensitivity of the assay system is also demonstrated by responses to vasoactive intestinal peptide and to pituitary adenylate cyclase-activating polypeptide in oocytes injected with cerebral cortex mRNA.

Adenylyl Cyclases↗

Antisense inhibition of acetylcholinesterase gene expression causes transient hematopoietic alterations in vivo.

Hematopoietic acetylcholinesterase (ACHE) gene expression and its implication for development were studied by in vivo administration to mice of an antisense phosphorothioate oligonucleotide targetted toward ACHE (AS-ACHE). Hematopoietic alterations were observed by differential cell counts and ACHE mRNA levels determined by quantified RNA polymerase chain reaction (RNA-PCR) and in situ hybridization analyses. In control mice, injected with phosphate-buffered saline and untreated, ACHE mRNA labeling with ACHE [35S]cRNA was about 10-fold higher on megakaryocytes (MK) compared with all other bone marrow cells and increased by 20-fold during MK development, similar to reports for MK actin mRNA. Drastic reductions occurred in the bone marrow lymphocyte and erythroid fractions 12 days following intraperitoneal injection of AS-ACHE (5 micrograms/g weight) into groups of four mice. RNA-PCR revealed over 1000-fold decreases in ACHE mRNA levels in lymph nodes and bone marrow at this time, while actin mRNA levels dropped by 10 and 100-fold in lymph nodes and bone marrow of AS-ACHE treated mice compared with controls. In view of the developmental increase in MK actin, this suggested arrest in MK development as well. By 20 days postinjection, bone marrow actin mRNA was fully restored and the sensitive in situ hybridization technique revealed that ACHE mRNA levels were also restored and reached levels only 2-3-fold lower than in controls in all bone marrow cells of AS-ACHE treated mice. Moreover, lymphocytes and erythroid cells repopulated to levels 25% above normal, and promegakaryocyte and mature MK fractions of the total MK were 3 and 2-fold higher, respectively, than in controls.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholinesterase↗

Internal cRNA standards for quantitative northern analysis.

We report a simple method using copy RNA (cRNA) internal standards for quantitative Northern hybridization. This was accomplished by synthesis of a full-length or "half"-length cRNA and mixing these RNA internal standards with samples to be tested for the abundance of a given mRNA. Both full-length and truncated cRNAs are detected in Northern analysis by the nucleic acid detection probe (which can be labeled with 32P or biotin), and the known amount of the truncated cRNA is compared to the homologous mRNA present in the specimen being examined. We demonstrate the usefulness of this method by measuring the expression of renin in rat kidney with ureteral obstruction and angiotensin II receptor (AT1-R) mRNA in kidneys from spontaneously hypertensive rats. It was found that this method of preparing cRNA internal standards successfully controlled for variables (such as differences in loading, transfer and hybridization efficiency) that often frustrate efforts to use Northern analysis as a quantitative tool and enabled direct estimation of absolute mRNA amount present in samples. This technique may have wide applicability and permit a more quantitative use of Northern analysis.

Animals↗

Tissue-specific, developmental and nutritional regulation of the gene encoding the catalytic subunit of the rat apolipoprotein B mRNA editing enzyme: functional role in the modulation of apoB mRNA editing.

Apolipoprotein B (apoB) mRNA editing, a posttranscriptional site-specific cytidine deamination reaction, is mediated by a protein complex of which the catalytic component (REPR) has recently been cloned. REPR mRNA was demonstrated by RNase protection at highest abundance in small intestine and colon but the transcript was detectable in all tissues examined including kidney, spleen, lung, liver, and ovary. ApoB mRNA was found predominantly in the liver and small intestine but low levels were detected in all adult tissues examined and found to be variably (29-86% TAA) edited. In addition, S100 extracts prepared from spleen and kidney were competent to edit an apoB RNA template in vitro, suggesting that the entire apoB mRNA editing complex is present and functionally active in these tissues. In situ hybridization demonstrated REPR mRNA to be distributed along the entire villus-crypt axis, while apoB mRNA distribution did not extend into the crypts. In the liver, both apoB and REPR mRNA were detected in all cells of the hepatic lobule without an apparent gradient of expression. REPR mRNA was found in the red pulp of the spleen and in the superficial crypt cells of the colon. This distribution of REPR mRNA was recapitulated by immunocytochemical localization of the protein within these tissues. Finally, the developmental and nutritional modulation of REPR was examined in relation to endogenous apoB mRNA editing. Small intestinal apoB mRNA editing was found to undergo a developmentally regulated increase beginning at gestational day 20, preceding a developmental increase in REPR mRNA abundance. Additionally, hepatic and kidney apoB mRNA editing both revealed a temporal dissociation from alterations in REPR mRNA abundance. By contrast, adult rats subjected to fasting and refeeding a high carbohydrate diet, demonstrated concordant modulation of endogenous apoB mRNA editing and REPR mRNA abundance (r = 0.92, P < 0.001). Taken together, the data demonstrate that REPR and other components of the rat apoB mRNA editing complex are widely distributed and undergo distinct developmental and metabolic regulation that interact to regulate apoB mRNA editing in a tissue-specific manner.

APOBEC-1 Deaminase↗