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Biomedical subjects

J C Watson

Publications and source records attributed to J C Watson.

At least 55 records · Page 3Linked to original sources

An evaluation of measles revaccination among school-entry-aged children.

BACKGROUND: A two dose measles vaccination schedule is recommended routinely for all school-entry-aged children. We evaluated this recommendation by determining both measles antibody seroprevalence and the response to revaccination in seronegative children in this age group. METHODS: Children 4 to 6 years of age who had received a single dose of measles vaccine between the ages of 15 to 17 months were tested for measles antibody by using enzyme-linked immunosorbent assay (ELISA) microneutralization technique. Seronegative children were revaccinated and again tested for measles antibody (immunoglobulin M [IgM] and neutralizing). RESULTS: Of 679 children tested, 37 (5.4%) were seronegative. Seronegativity was not significantly associated with age, sex, race, age at initial vaccination, time since vaccination, or maternal year of birth. However, children mothers with a college degree were 12 times more likely to be seronegative than children of mothers who never attended college (P < .01). Of the 37 seronegative children, 36 seroconverted after revaccination--33 producing IgM measles antibody, suggestive of a primary immune response. The cost per seroconversion would have been an estimated $415 if all 679 children had been revaccinated. CONCLUSIONS: Revaccination reduces the pool of children who are susceptible to measles. Although the cost per seroconversion is high, a two-dose schedule should reduce the substantial costs of controlling measles out breaks by reducing the number of outbreaks.

Antibodies, Viral↗

Molecular cloning and biochemical characterization of a receptor-like serine/threonine kinase from rice.

A receptor-like protein kinase, OsPK10, has been cloned from rice (Oryza sativa). The 2.8 kb cDNA contains an open reading frame capable of encoding a peptide sequence of 824 amino acids. The topological features of the predicted OsPK10 protein include an N-terminal signal peptide, a cysteine-rich extracellular ligand-binding domain, a membrane-spanning segment, and a cytoplasmic domain possessing all the hallmarks of catalytic domains of eukaryotic protein kinases. The cytoplasmic domain was selectively expressed in Escherichia coli and assayed for kinase activity. The results show the protein is capable of autophosphorylation using either ATP or GTP as the phosphate donor. Phosphoamino acid analysis reveals phosphorylation of threonines, consistent with the substrate specificity indicated by sequence motifs in the catalytic core. A single amino acid substitution of Glu for Lys-528 completely abolishes autophosphorylation activity. DNA gel blot analyses suggest that the haploid rice genome contains a single copy of the OsPK10 gene. OsPK10 transcripts appear to be more abundant in shoots than in roots of rice seedlings.

Adenosine Triphosphate↗

Molecular cloning and characterization of rho, a ras-related small GTP-binding protein from the garden pea.

The rho proteins, members of the ras superfamily of small GTP-binding proteins, play a central role in the modulation of cellular functions involving the actin cytoskeleton such as in the establishment of cell polarity and morphology. As a first step in elucidating signal transduction pathways leading to processes mediated by the actin cytoskeleton in plants, we initiated cloning and characterization of rho proteins from pea. One rho-related, partial cDNA clone of 167 bp was isolated utilizing a polymerase chain reaction-based cloning strategy, using degenerate primers that correspond to conserved domains within the rho proteins. A full-length cDNA was isolated by screening a pea cDNA library using the 167-bp cDNA as a probe. The Rho1Ps cDNA contains an open reading frame encoding a polypeptide (Rho1Ps) of 197 amino acids that shows 45-64% sequence identity to members of the rho family and about 30% identity to other members of the ras superfamily. In addition to the nucleotide-binding and GTPase domains, Rho1Ps shares conserved residues and motifs unique to the rho proteins. Purified Rho1Ps protein expressed in Escherichia coli retains specific GTP-binding activity. These data indicate that Rho1Ps encodes a small GTP-binding protein of the rho family. The Rho1Ps transcript is expressed in all organs of pea seedlings, being more abundant in root tips and apical buds. DNA gel blot analyses show that the rho proteins in pea are encoded by a multigene family.

Amino Acid Sequence↗

Immunoglobulin M antibody response to measles virus following primary and secondary vaccination and natural virus infection.

The use of IgM antibody detection for the classification of the primary and secondary measles antibody response in persons following primary and secondary vaccination and natural measles virus infection was examined. Of 32 nonimmune children receiving primary measles vaccination, 31 (97%) developed IgM antibodies, consistent with a primary antibody response. Of 21 previously vaccinated children with low levels of preexisting IgG antibodies who responded to revaccination, none developed detectable IgM antibodies, whereas 33 of 35 (94%) with no detectable preexisting IgG antibodies developed an IgM response. Of a sample of 57 measles cases with a prior history of vaccination, 55 (96%) had detectable IgM antibodies. Of these, 30 (55%) were classified as having a primary antibody response and 25 (45%) a secondary antibody response based on differences in their ratios of IgM to IgG antibodies. Differences in the severity of clinical symptoms between these 2 groups were consistent with this classification scheme. These findings suggest that 1) an IgM response follows primary measles vaccination in the immunologically naive, 2) an IgM response is absent on revaccination of those previously immunized, and 3) an IgM response may follow clinical measles virus infection independent of prior immunization status.

Adolescent↗

Vertical transmission of hepatitis A resulting in an outbreak in a neonatal intensive care unit.

Vertical transmission of hepatitis A virus (HAV) has not been reported. From 25 October to 15 November 1989, 10 cases of symptomatic HAV infection occurred among neonatal intensive care unit (NICU) staff. Testing of other NICU staff and patients identified 4 infected infants. Hepatitis A among staff was associated with caring for 1 of these infants, infant A (relative risk [RR], undefined; P = .05). Risk of illness was greater for staff who did not routinely wash their hands after treating infant A for apnea and bradycardia (RR = 4.9; P = .02). Staff, infants, visitors, and transfused blood products could not be implicated as a source of infant A's infection. Infant A's mother, however, was diagnosed with hepatitis A 10 days after premature labor and delivery. Evidence suggests that infant A was infected by his mother before or during birth. HAV then spread within the NICU because of breaks in infection control precautions. To prevent future outbreaks, NICU staff should adhere rigorously to body substance isolation measures.

Adult↗

Protein farnesyltransferase in plants. Molecular cloning and expression of a homolog of the beta subunit from the garden pea.

Protein farnesyltransferase is a heterodimeric enzyme that attaches a farnesyl moiety to C-terminal cysteine residues. Both the alpha and beta subunits have recently been cloned and sequenced from yeast and rat. Degenerate oligonucleotides, corresponding to conserved regions of the beta subunit, were used as primers for the polymerase chain reaction to amplify cDNA synthesized from total cellular RNA from the apical buds of pea (Pisum sativum L.) seedlings. The 171-bp fragment obtained encodes an open reading frame of 57 amino acids showing 65% identity to the rat protein farnesyltransferase beta subunit. Using this fragment to screen a pea cDNA library, one full-length cDNA clone, designated PsFTb, was obtained that contains an open reading frame encoding a polypeptide of 419 amino acids. The predicted amino acid sequence exhibits 48 and 40% identity to the rat and yeast beta subunits, respectively, indicating that this cDNA encodes a pea homolog of the beta subunit of farnesyltransferase. Gel blot hybridizations show that PsFTb is likely to be encoded by a single-copy gene and is expressed as a transcript of approximately 1.7 kb. During photoregulated leaf development in continuous white light, PsFTb transcript levels within apical buds decline by approximately 5-fold.

Alkyl and Aryl Transferases↗

Resuscitation of hypovolemia in pigs using near saturated sodium chloride solution in dextran.

A 7.5% sodium chloride/6% Dextran solution (HSD) is effective for restoration of cardiovascular function after hemorrhagic shock. In the present experiments, we tested the usefulness and side effects of a 25% NaCl/24% Dextran solution (SSD), compared to HSD and 0.9% NaCl (NS). After 1 hr of baseline observation, 21 anesthetized pigs were submitted to hemorrhagic shock, maintaining a mean arterial pressure of 45 mmHg for 60 min. Continuous intravenous infusion of one of the solutions was then initiated and the infusion rate adjusted to restore and maintain cardiac output at baseline levels for 2 hr. The NS group required 121 +/- 22 ml/kg to achieve full resuscitation, while the HSD and SSD groups required 6.3 +/- 1.3 and 1.7 +/- 0.2 ml/kg, respectively. We conclude that SSD infusions were exceedingly effective at restoring cardiovascular function in volumes equal to only 10% of bled volume, but were associated with transient hemolysis and peripheral vein inflammation.

Animals↗

The E3L gene of vaccinia virus encodes an inhibitor of the interferon-induced, double-stranded RNA-dependent protein kinase.

A vaccinia virus-encoded double-stranded RNA-binding protein, p25, has been previously implicated in inhibition of the interferon-induced, double-stranded RNA-activated protein kinase. In this study, we have identified the vaccinia viral gene (WR strain) that encodes p25. Amino acid sequence analysis of a chymotryptic fragment of p25 revealed a close match to the vaccinia virus (Copenhagen strain) E3L gene. The WR strain E3L gene was cloned and expressed either in COS-1 cells or in rabbit reticulocyte lysates in vitro. A M(r) 25,000 polypeptide that could bind to poly(rI).poly(rC)-agarose and that reacted with p25-specific antiserum was produced in each case. In addition, COS cells expressing E3L gene products inhibited activation of the double-stranded RNA-activated protein kinase in extracts from interferon-treated cells. Removal of E3L-encoded products by adsorption with anti-p25 antiserum resulted in loss of kinase inhibitory activity. These results demonstrate that the vaccinia virus E3L gene encodes p25 and that the products of the E3L gene have kinase inhibitory activity. Comparison of the deduced amino acid sequence of the E3L gene products with the protein sequence data base revealed a region closely related to the human interferon-induced, double-stranded RNA-activated protein kinase.

Amino Acid Sequence↗

A comparison of the cerebral protective effects of isoflurane and mild hypothermia in a model of incomplete forebrain ischemia in the rat.

The present study was undertaken to examine the cerebral protective properties attributed to isoflurane and at the same time to compare its protective effects with those of mild hypothermia (temperature reduction by 3 degrees C). Twenty-one fasted Wistar-Kyoto rats were assigned to one of three groups (n = 7); 1.3 MAC (end-tidal) isoflurane-normothermia (pericranial temperature 38.0 degrees C), 1.3 MAC halothane-normothermia, and 1.3 MAC halothane-hypothermia (pericranial temperature 35.0 degrees C during ischemia). In each animal the trachea was intubated and the lungs were mechanically ventilated. Each animal was subjected to temporary incomplete forebrain ischemia induced by 10 min of bilateral carotid artery occlusion with simultaneous hypotension (mean arterial pressure 35 mmHg) induced by trimetaphan and blood withdrawal. After a 3-day survival period, perfusion-fixation was performed, and two blinded observers assessed histopathologic injury according to a four-point scale (0 = no damage; 1 = less than 10% of neurons damaged; 2 = 10-50% damaged; and 3 = greater than 50% damaged). The assessment was performed at two points in the rostrocaudal axis chosen to permit evaluation of regions with varying levels of ischemic damage. In the rostral sections, in the isoflurane- and halothane-normothermia groups, moderate to severe injury was observed in striatum, cerebral cortex, hippocampus (CA1 and CA3 areas), and reticular nucleus of the thalamus (e.g., the median scores for the CA1 area were 3 in both the halothane-hypothermia and the isoflurane-normothermia groups), and there were no differences between the two groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

An assessment of the cerebral protective effects of etomidate in a model of incomplete forebrain ischemia in the rat.

The cerebral protective effects of etomidate were evaluated in a model of incomplete forebrain ischemia. Fourteen Wistar-Kyoto rats were anesthetized with halothane. After preparation, the rats were alloted to either the control group (halothane anesthesia, n = 7) or the etomidate group (n = 7). In the etomidate group, immediately before and during the period of ischemia, the animals received etomidate in sufficient concentration to achieve electroencephalogram burst suppression (loading dose, 7.5 mg/kg; infusion, 0.3-0.5 mg/kg/min). Both groups were subjected to a 10-minute ischemic insult accomplished by bilateral carotid artery occlusion and simultaneous hypotension (mean arterial pressure, 35 mm Hg). Histological evaluation of the brain was performed after a 4-day recovery period. Injury was evaluated in coronal brain sections in five structures: neocortex, striatum, reticular nucleus of the thalamus, and the CA1 and CA3 areas of the hippocampus. The location of the sections in the rostral-caudal axis was chosen to encompass anterior areas within the core of the ischemic territory as well as more posterior regions within the anticipated "watershed" zone between the occluded anterior and the intact posterior circulations. In the animals that received etomidate, statistically significant (P less than 0.05) reduction in the severity of the ischemic injury was observed in the CA3 area and in the ventral portion of the CA1 area of the hippocampus in the more posterior sections. There was an apparent trend toward protection in other structures in both rostral and caudal sections, but these changes were not statistically significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Resuscitation of intraoperative hypovolemia: a comparison of normal saline and hyperosmotic/hyperoncotic solutions in swine.

BACKGROUND AND METHODS: We compared a hypertonic saline-dextran solution (7.5% NaCl/6% dextran-70) with 0.9% NaCl (normal saline) for treatment of intraoperative hypovolemia. Fourteen anesthetized pigs (mean weight 36.3 +/- 2.1 kg) underwent thoracotomy, followed by hemorrhage for 1 hr to reduce mean arterial pressure to 45 mm Hg. A continuous infusion of either solution was then initiated and the flow rate was adjusted to restore and maintain aortic blood flow at baseline levels for 2 hrs. RESULTS: Full resuscitation to initial values of aortic blood flow was achieved with both regimens, but the normal saline group required substantially larger volumes and sodium loads to maintain stable hemodynamic values. Normal saline resuscitation produced increases in right ventricular preload (central venous pressure) and afterload (pulmonary arterial pressure and pulmonary vascular resistance), resulting in increased right ventricular work. CONCLUSIONS: Hypertonic saline-dextran solution resuscitation of intraoperative hypovolemia is performed effectively with smaller fluid and sodium loads, and is devoid of the deleterious effects associated with fluid accumulation induced by a conventional isotonic solution regimen.

Animals↗

Molecular cloning and sequencing of cDNAs encoding the proteolipid subunit of the vacuolar H(+)-ATPase from a higher plant.

To understand the molecular structure of the vacuolar H(+)-translocating ATPase from plants, cDNAs encoding the N,N'-dicyclohexylcarbodiimide-binding 16-kDa proteolipid from oat (Avena sativa L. var. Lang) have been obtained. A synthetic oligonucleotide corresponding to a region of the bovine proteolipid cDNA (Mandel, M., Moriyama, Y., Hulmes, J.D., Pan, Y.-C.E., Nelson, H., and Nelson, N. (1988) Proc. Natl. Acad. Sci. U.S.A. 85, 5521-5524) was used to screen an oat cDNA library constructed in lambda gt11. The nucleotide sequences of several positive clones (VATP-P1, clones 12, 54, 93) demonstrated the presence of a small multigene family. The four clones showed extensive divergence in their codon usage and their 3'-untranslated regions; however, the deduced amino acid sequences of the proteins were 97-99% identical. These clones encoded the proteolipid subunit as one of them (clone 12) expressed a fusion protein that reacted with an antibody to the 16-kDa proteolipid. The open reading frame of one cDNA clone (VATP-P1) predicted a polypeptide of 165 amino acids with a molecular mass of 16,641. Based on hydropathy plots, a molecule with four membrane-spanning domains was predicted, in which domain IV was especially conserved among different species. This domain showed 80% identity in nucleotide or amino acid sequences between the oat and the bovine proteolipids and contained a glutamate residue that is the putative N,N'-dicyclohexylcarbodiimide-binding residue. The presence of a small multigene family of the 16-kDa proteolipid was confirmed by Southern blot analysis showing that several distinct restriction fragments of oat nuclear DNA hybridized with the VATP-P1 cDNA.

Amino Acid Sequence↗

Differential accumulation of transcripts encoding protein kinase homologs in greening pea seedlings.

Degenerate oligonucleotides, corresponding to conserved regions within the catalytic domain of known protein-serine/threonine kinases, were used as primers for the polymerase chain reaction to amplify cDNA synthesized from poly(A)+ RNA purified from the apical buds of 7-day-old pea seedlings. Five partial cDNAs were obtained and designated PsPK1 through PsPK5 (for Pisum sativum protein kinase) in order of decreasing length. The deduced amino acid sequences show that each member of the PsPK series is different in length, and, although their sequences are quite similar overall, each has a unique sequence. Moreover, each member of the PsPK series has structural features typical of members of the protein-serine/threonine kinase family of protein kinases. All are equally similar to cyclic nucleotide-dependent protein kinase and protein kinase C, suggesting that the pea homologs may be involved in signal transduction. DNA gel blots show that each PsPK cDNA is likely to be encoded by a single gene within the pea genome. RNA blot analyses show that the PsPK transcripts accumulate differentially during greening of etiolated seedlings. PsPK3 and PsPK5 transcripts show a large and rapid decline during deetiolation. In contrast, the level of PsPK4 RNA increases steadily during deetiolation whereas PsPK1 and PsPK2 transcripts show little change during the greening period. Thus light regulates changes in the levels of transcripts encoding putative protein kinases in plants.

Amino Acid Sequence↗