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Biomedical subjects

J Stock

Publications and source records attributed to J Stock.

At least 55 records · Page 3Linked to original sources

The supply of orthotist prosthetists. The application of workforce projection techniques in determining future national training places.

Discusses the application of workforce planning techniques in the context of "target" levels of demand and uses a study of the future supply of orthotists and prosthetists as an example. Describes the derivation of an appropriate model, the quantification of the labour market for the profession, and an analysis of the characteristics of the workforce. Information was gathered through two surveys and from discussions with relevant organizations.

Allied Health Personnel↗

Evidence that the methylesterase of bacterial chemotaxis may be a serine hydrolase.

CheB, the methylesterase of chemotactic bacteria, catalyzes the hydrolysis of glutamyl-methyl esters in bacterial chemoreceptor proteins. The two cysteines predicted by the amino acid sequence of CheB were replaced by alanine residues. The resulting mutants, Cys207-Ala, Cys309-Ala and a double cysteine mutant Cys207-Ala/Cys309-Ala, retained methylesterase activity, indicating that sulfhydryls are not crucial for CheB mediated catalysis. A homology search revealed a conserved serine active-site region between residues 162 and 166 which is homologous to the active-site region of acetylcholine esterases, suggesting that Ser164 of CheB is the active-site nucleophile. Oligonucleotide-directed mutagenesis was used to change the serine to a cysteine. This Ser164-Cys mutant had less than 2% of the wild-type activity. Unlike the serine proteinases which utilize a 'catalytic triad' mechanism, CheB does not have the conserved histidine and aspartic acid residues located in positions N-terminal to the active-site serine. In addition, CheB is not labeled with di-isopropylfluorophosphate, a potent inhibitor of other serine hydrolases. A novel mechanism is proposed for CheB involving substrate-assisted catalysis to account for these apparent anomalies.

Amino Acid Sequence↗

Folding and trimerization of clathrin subunits at the triskelion hub.

The triskelion shape of the clathrin molecule enables it to form the polyhedral protein network that covers clathrin-coated pits and vesicles. Domains within the clathrin heavy chain that are responsible for maintaining triskelion shape and function were identified and localized. Sequences that mediate trimerization are distal to the carboxyl terminus and are adjacent to a domain that mediates both light chain binding and clathrin assembly. Structural modeling predicts that within this domain, the region of heavy chain-light chain interaction is a bundle of three or four alpha helices. These studies establish a low resolution model of clathrin subunit folding in the central portion (hub) of the triskelion, thus providing a basis for future mutagenesis experiments.

Clathrin↗

Rapid cytokine release in cancer patients treated with interleukin-2.

Serum concentrations of interleukin-2 (IL-2), tumor necrosis factor-alpha (TNF-alpha), interferon-gamma (IFN-gamma), interleukin-6 (IL-6), interleukin-1 (IL-1) and interferon-alpha (IFN-alpha) were determined by commercially available enzyme-linked immunosorbent assay (ELISA) or radioimmunoassay (RIA) in cancer patients treated with recombinant IL-2 (rIL-2) either as 1-h infusion (3 or 5 x 10(6)/m2) or continuous intravenous infusion for 5 days (3 x 10(6)/m2/day). A significant increase of TNF-alpha and IL-6 serum levels was observed in each patient. One-hour infusion of IL-2 induced a very rapid secretion of TNF-alpha, IL-6 and IFN-gamma with considerably higher peak levels than during IL-2 continuous intravenous infusion. IFN-gamma was released into the blood of all patients receiving IL-2 1-h infusion, but only occasionally during or after IL-2 continuous intravenous infusion. Neither IFN-alpha nor IL-1 were detectable in the serum before, during, or following IL-2 treatment in all patients studied. The kinetics of IL-2 after 1-h infusion fitted to a two-compartment model, suggesting the synthesis of considerable amounts of endogenous IL-2. Following IL-2 1-h infusion, rising TNF-alpha serum levels preceded the increase of serum IFN-gamma or IL-6. The serum peak levels of IFN-gamma and IL-6 decreased rapidly with a half-life of 0.29 to 2.5 h. The concentration time profiles of TNF following 1-h infusion of IL-2 demonstrated a considerably longer half-life than that of intravenously administered recombinant TNF as done in other studies.(ABSTRACT TRUNCATED AT 250 WORDS)

Carcinoma, Renal Cell↗

A single activity carboxyl methylates both farnesyl and geranylgeranyl cysteine residues.

Members of the Ras superfamily of small GTP-binding proteins, gamma-subunits of heterotrimeric G proteins and nuclear lamin B are subject to a series of post-translational modifications that produce prenylcysteine methylester groups at their carboxyl termini. The thioether-linked polyisoprenoid substituent can be either farnesyl (C15) or geranylgeranyl (C20). Small molecule prenylcysteine derivatives with either the C15 or C20 modification, such as N-acetyl-S-trans,trans-farnesyl-L-cysteine (AFC), S-trans,trans-farnesylthiopropionate (FTP), as well as the corresponding geranylgeranyl derivatives (AGGC and GGTP) are substrates for the carboxyl methyltransferase. Saccharomyces cerevisiae ste14 mutants that lack RAS and a-factor carboxyl methyltransferase activity are also unable to methylate farnesyl and geranylgeranylcysteine derivatives. Moreover, C20-substituted cysteine analogs directly compete for carboxyl methylation with the C15-substituted cysteine analogs and vice versa. Finally, AGGC is even more effective than AFC as an inhibitor of Ras carboxyl methylation, despite the fact that Ras is methylated at a farnesylcysteine rather than a geranylgeranylcysteine residue.

Animals↗

Reconstitution of the bacterial chemotaxis signal transduction system from purified components.

In bacterial chemotaxis, transmembrane receptor proteins detect attractants and repellents in the medium and send intracellular signals that control motility. The cytoplasmic proteins that transduce information from the receptors to the flagellar motor have previously been purified and many of their enzymatic activities have been identified. Here we report the reconstitution of the complete signal transduction system from purified components. The protein kinase, CheA, plays a central role in both the initial excitation response to stimuli as well as subsequent events associated with adaptation. This kinase provides phosphoryl groups to two acceptor proteins, CheY, which interacts with the flagellar motor, and CheB, which demethylates the receptors. The purified aspartate receptor, Tar, reconstituted into phospholipid vesicles, acts in conjunction with an auxiliary protein, CheW, to stimulate the rate of kinase autophosphorylation greater than 10-fold. This stimulation is inhibited by aspartate. The activity of the kinase is increased by increased levels of receptor methylation. This effect provides a mechanism that explains how changes in receptor methylation mediate adaptive responses to attractant and repellant stimuli.

Adenosine Triphosphatases↗

Predicting coiled coils from protein sequences.

The probability that a residue in a protein is part of a coiled-coil structure was assessed by comparison of its flanking sequences with sequences of known coiled-coil proteins. This method was used to delineate coiled-coil domains in otherwise globular proteins, such as the leucine zipper domains in transcriptional regulators, and to predict regions of discontinuity within coiled-coil structures, such as the hinge region in myosin. More than 200 proteins that probably have coiled-coil domains were identified in GenBank, including alpha- and beta-tubulins, flagellins, G protein beta subunits, some bacterial transfer RNA synthetases, and members of the heat shock protein (Hsp70) family.

Amino Acid Sequence↗

Evidence for an S-farnesylcysteine methyl ester at the carboxyl terminus of the Saccharomyces cerevisiae RAS2 protein.

The protein products of yeast and mammalian ras genes are posttranslationally modified to give mature forms that are localized to the inner surface of the plasma membrane. We have previously demonstrated that the mature form of the Saccharomyces cerevisiae RAS2 gene product is methyl esterified at a modified C-terminal cysteine residue. Here we provide evidence that this residue is an S-farnesylcysteine alpha-carboxyl methyl ester. This result establishes common posttranslational modifications for RAS proteins and fungal sex factors. These polypeptides exhibit sequence similarities at their C-termini that appear to be the critical recognition elements for a common set of modification enzymes. In mammalian cells, proteins with analogous C-terminal sequences appear to be prenylated and carboxyl methylated by a similar mechanism.

Amino Acid Sequence↗

Novel mutations that alter the regulation of sporulation in Bacillus subtilis. Evidence that phosphorylation of regulatory protein SpoOA controls the initiation of sporulation.

Sporulation in Bacillus subtilis is a complex developmental process that occurs in response to nutrient deprivation. To identify components of the mechanism that allows cells to monitor their nutritional status and to understand how this sensory information is transduced into a signal to activate specific sporulation genes, we have isolated mutants that are able to sporulate efficiently under nutritional conditions that strongly inhibit sporulation in wild-type bacteria, a phenotype we refer to as Coi (control of initiation). Four coi mutations were found to be within the coding sequence of spoOA, a gene in which null mutations prevent the initiation of sporulation and a gene whose product shares a domain of homology with phosphorylation-activated proteins that play signal transduction roles in bacteria. All four of the spoOA mutations were within this conserved domain and in close proximity to the presumptive phosphoacceptor site. The wild-type and one of the mutant SpoOA proteins were purified and shown to be competent to accept phosphoryl groups from a phosphohistidine within a bacterial signal transduction kinase (CheA). The mutant SpoOA protein exhibited enhanced phosphoacceptor activity compared with the wild-type. This property of the mutant protein, together with additional genetic information, supports a model for regulation of sporulation initiation by control of the phosphorylation level of SpoOA.

Alleles↗

Phosphorylation of an N-terminal regulatory domain activates the CheB methylesterase in bacterial chemotaxis.

Two types of reversible protein modification reactions have been identified in bacterial chemotaxis, methylation of membrane receptor-transducer proteins at glutamate side chains and phosphorylation of cytoplasmic signal transduction proteins at histidine and aspartate side chains. CheB is a bifunctional enzyme that is involved in both these modification processes. Its C-terminal domain is a methylesterase that catalyzes the hydrolysis of gamma-carboxyl glutamyl methyl esters in the cytoplasmic domain of chemoreceptor proteins. Its N-terminal domain is a phosphatase that catalyzes the hydrolysis of phospho-CheA, the central response regulator of bacterial chemotaxis. Phospho-CheB, produced as an intermediate in the phosphatase reaction, has dramatically increased methylesterase activity. The interplay between the methylesterase and phosphatase activities of CheB may provide a crucial link between adaptation and excitation in stimulus-response coupling.

Carboxylic Ester Hydrolases↗

RAS2 protein of Saccharomyces cerevisiae is methyl-esterified at its carboxyl terminus.

Yeast and mammalian RAS gene products are GTP-binding proteins that are posttranslationally localized to the inner surface of the plasma membrane. This localization is accomplished by the addition of a lipid moiety to a conserved cysteine residue close to the carboxyl terminus. In a previous report we showed that the mammalia Ha-ras protein is also modified posttranslationally by methyl esterification. Here we show that the yeast RAS2 protein is posttranslationally modified by methyl esterification at or near the carboxyl terminus. We also present evidence indicating that the methyl ester is linked to the conserved cysteine residue, implying that RAS2 protein is cleaved to expose this cysteine as the carboxyl-terminal residue. This maturation pathway may be shared by a family of proteins that are initially synthesized as soluble proteins and must become membrane-localized to function.

Chromatography, Liquid↗

Evidence for a complex regulatory array in the first intron of the human adenosine deaminase gene.

Adenosine deaminase (ADA) is expressed ubiquitously by diverse mammalian cells and tissues but at levels that vary according to tissue and species. In humans, the thymus exhibits levels of the enzyme up to 100-fold higher than most other tissues. Using transgenic mice, we identified human ADA gene regulatory domains. Up to 3.7 kb of 5'-flanking and first exon DNA from the human ADA gene failed to promote the expression of a chloramphenicol acetyl transferase (CAT) reporter gene in an efficient, reproducible, or tissue-appropriate manner in transgenic mice. However, when 12.8 kb of DNA from the first intron of the human ADA gene was placed 3' of CAT-coding and -processing sequences, transgenic mice reproducibly expressed CAT activity in most tissues, with profoundly high levels in the thymus. DNase I hypersensitivity studies demonstrated that among transgenic mouse tissues, human thymus, and a variety of human cell lines, a region of the intron 4-10 kb downstream of the first exon exhibited an array of hypersensitive sites that varied according to tissue and cell type. Deletion of this region from the gene construction eliminated high-level expression in transgenic mice. In transfection-transient expression assays, the 12.8-kb intron fragment exhibited enhancer activity in several cell types. A 1.3-kb fragment encompassing two of the hypersensitive sites exhibited some of these activities. The results of these studies suggest that the diverse pattern of human ADA gene expression is determined, in part, by a cluster of cis-regulatory elements contained within its large first intron.

Adenosine Deaminase↗

Calcium-dependent release of N-terminal fragments and intact immunoreactive parathyroid hormone by human pathological parathyroid tissue in vitro.

The regulation of PTH secretion by extracellular calcium was studied in parathyroid tissue obtained from patients with hyperparathyroidism (adenoma or hyperplasia) using both an amino (N)-terminal RIA as well as an immunoradiometric assay (intact assay) specific for the intact hormone. The parathyroid glands separated into three major groups when examined in terms of absolute amounts of PTH secreted, degree of suppressibility, and set-point for calcium (the concentration of calcium causing half-maximal inhibition of PTH release). In cell preparations from group A (two different adenomas, two hyperplastic glands from a patient with renal failure, and a hyperplastic gland from a patient with hypophosphatemic rickets), both assays showed comparable PTH release (agreeing within 2-fold), similar degrees of suppressibility and similar, if not identical, set-points. In group B (two adenomas and one hyperplastic gland from a patient with renal failure), PTH secretion, as measured in the N-terminal assay, was 3- to 6-fold more than that measured in the intact assay. The set-points and maximal degrees of suppressibility were, however, still comparable. In group C [two adenomas and one gland from a patient with hypophosphatemic rickets (the sister of the patient in group A)], no suppressibility was observed when PTH release was measured using the intact assay (i.e. less than 50% suppression of PTH release at 2-3 mM Ca2+). In one of these three glands, the N-terminal assay was used in addition to the intact assay, and no suppressibility was present with either assay. Thus, in general, the effects of extracellular Ca2+ on PTH secretion from pathological parathyroid tissue were similar when assessed with both an N-terminal and an intact assay, at least with respect to setpoint and maximal suppressibility. In a few cases, maximal PTH release was greater when measured with the N-terminal assay, consistent with substantial release of N-terminal fragments in addition to intact PTH. In addition, nonsuppressible glands were not uncommon when PTH release was measured by the intact assay, confirming previous studies with less specific assays.

Adolescent↗