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Biomedical subjects

L Cosgrove

Publications and source records attributed to L Cosgrove.

13 recordsLinked to original sources

Mutational analysis of the N-linked glycosylation sites of the human insulin receptor.

Site-directed mutagenesis has been used to remove 15 of the 18 potential N-linked glycosylation sites, in 16 combinations, from the human exon 11-minus receptor isoform. The three glycosylation sites not mutated were asparagine residues 25, 397 and 894, which are known to be important in receptor biosynthesis or function. The effects of these mutations on proreceptor processing into alpha and beta subunits, cell-surface expression, insulin binding and receptor autophosphorylation were assessed in Chinese hamster ovary cells. The double mutants 16+78, 16+111, 16+215, 16+255, 337+418, the triple mutants 295+337+418, 295+418+514, 337+418+514 and 730+743+881 and the quadruple mutants 606+730+743+881 and 671+730+743+881 seemed normal by all criteria examined. The triple mutant 16+215+255 showed only low levels of correctly processed receptor on the cell surface, this processed receptor being autophosphorylated in response to insulin. The quadruple mutant 624+730+743+881 showed normal processing and ligand binding but exhibited a constitutively active tyrosine kinase as judged by autophosphorylation. Three higher-order mutants were constructed, two of which, 16+337+418+730+743+881 (Delta6) and 16+295+337+418+730+743+881 (Delta7a), seemed normal. The third construct, 16+337+418+514+730+743+881 (Delta7b), was expressed at high levels on the cell surface, essentially as uncleaved proreceptor with only the small proportion of Delta7b that was correctly processed showing insulin-stimulated autophosphorylation. The mutations of Delta6 and Delta7a were incorporated into soluble ectodomains, which had affinities for insulin that were 4-fold that of wild-type ectodomain. The Delta6 ectodomain expressed in Lec8 cells was produced in quantity in a bioreactor for subsequent structural analysis.

Animals↗

Speaking for ourselves: feminist methods and community psychology.

Although feminist and community psychology share a number of epistemological and methodological perspectives that guide their respective theories and research practices, it has been argued that community psychology has not fully integrated a feminist perspective into the discipline. This paper examines how community psychology and feminist research methods might combine to help us better understand women's experiences without essentializing or universalizing those experiences. The authors offer a series of suggested directions for feminist research that may also prove promising for community psychology. Particular attention is paid to feminist social constructionist approaches insofar as they address the complex relationship between epistemology and methodology.

Anecdotes as Topic↗

Single-molecule imaging of human insulin receptor ectodomain and its Fab complexes.

The insulin receptor (IR) is a four-chain, transmembrane dimer held together by disulfide bonds. To gain information about the molecular envelope and the organization of its domains, single-molecule images of the IR ectodomain and its complexes with three Fabs have been analyzed by electron microscopy. The data indicate that the IR ectodomain resembles a U-shaped prism of approximate dimensions 90 x 80 x 120 A. The width of the cleft (assumed membrane-distal) between the two side arms is sufficient to accommodate ligand. Fab 83-7, which recognizes the cys-rich region of IR, bound halfway up one end of each side arm in a diametrically opposite manner, indicating a twofold axis of symmetry normal to the membrane surface. Fabs 83-14 and 18-44, which have been mapped respectively to the first fibronectin type III domain (residues 469-592) and residues 765-770 in the insert domain, bound near the base of the prism at opposite corners. These images, together with the data from the recently determined 3D structure of the first three domains of the insulin-like growth factor type I receptor, suggest that the IR dimer is organized into two layers with the L1/cys-rich/L2 domains occupying the upper (membrane distal) region of the U-shaped prism and the fibronectin type III domains and the insert domains located predominantly in the membrane-proximal region.

Dimerization↗

Eating habits, body-esteem and self-esteem in Scottish children and adolescents.

Two hundred ninety-nine girls, from primary school grade 6 to senior school grade 4 classes in a Scottish, independent, single-gender school completed three questionnaires assessing body-esteem, self-esteem, and eating behavior. The aim of the study was threefold: to see whether there was a significant increase in more abnormal eating habits during adolescence; to see whether there was a significant decline in body-esteem during adolescence; and to see whether there was any association between eating habits, body-esteem, and self-esteem. The results provided some evidence in support of the first two hypotheses and also indicated a strong association between a low level of self-esteem and dislike of body shape, and an abnormal pattern of eating. The risks and implications of dieting in this age group are also discussed.

Adolescent↗

Insulin-responsive tissues contain the core complex protein SNAP-25 (synaptosomal-associated protein 25) A and B isoforms in addition to syntaxin 4 and synaptobrevins 1 and 2.

SNAP-25 (synaptosomal-associated protein 25), syntaxin and synaptobrevin are the three SNARE [soluble NSF attachment protein receptor (where NSF = N-ethylmaleimide-sensitive fusion protein)] proteins that form the core complex involved in synaptic vesicle docking and subsequent fusion with the target membrane. The present study is aimed at understanding the mechanisms of fusion of vesicles carrying glucose transporter proteins with the plasma membrane in human insulin-responsive tissues. It describes the isolation and characterization of cDNA molecules encoding SNAP-25 A and B isoforms, syntaxin 4 and synaptobrevins (also known as vehicle-associated membrane proteins) from two major human insulin-responsive tissues, skeletal muscle and fat. The DNA and deduced amino acid sequences of SNAP-25 revealed perfect identity with the previously reported human neural SNAP-25 A and B isoforms. Our results indicate the presence of both isoforms both in insulin-responsive tissues and in in vitro cultured 3T3-L1 cells, but suggest a differential pattern of gene expression: isoform A is the major species in adipose tissue, and isoform B is the major species in skeletal muscle. The presence of SNAP-25 protein in 3T3-L1 cells was demonstrated by immunofluorescence microscopy using an anti-SNAP-25 monoclonal antibody. Immunoprecipitation experiments using the same monoclonal antibody also revealed the presence of SNAP-25 protein in plasma membrane fractions from rat epididymal fat pads. The syntaxin 4-encoding region from skeletal muscle contains five nucleotide differences from the previously reported placental cDNA sequence, two of which result in amino acid changes: Asp-174 to Glu and Val-269 to Ala. The synaptobrevin 1 cDNA from skeletal muscle contains two nucleotide differences when compared with the corresponding clone from neural tissues, one of which is silent and the other resulting in the amino acid change Thr-102 to Ala. The cDNA sequence of the protein from fat is identical with that of human synaptobrevin 1 from neural tissues. Furthermore, we have confirmed the presence of syntaxin 4 in fat and of synaptobrevin 2 in skeletal muscle by PCR amplification and Southern hybridization analysis. Using the yeast two-hybrid system, an interaction was observed between the full-length cytoplasmic domains of syntaxin 4 and synaptobrevin 2, a vesicle membrane SNARE previously shown by others to be associated with vesicles carrying the GLUT4 glucose transporter protein, but no interaction was seen with synaptobrevin 1. Flow cytometry of low-density microsomes isolated from fat cells was used to demonstrate the binding of syntaxin 4 to a subset of vesicles carrying GLUT4 protein; whereas SNAP-25 on its own bound poorly to these vesicles, the syntaxin 4-SNAP-25 complex gave a strong interaction.

3T3 Cells↗

Purification and properties of insulin receptor ectodomain from large-scale mammalian cell culture.

Ectodomain of the exon 11+ form of the human insulin receptor (hIR) was expressed in the mammalian cell secretion vector pEE6.HCMV-GS, containing the glutamine synthetase gene. Following transfection of the hIR ectodomain gene into Chinese hamster ovary (CHO-K1) cells, clones were isolated by selecting for glutamine synthetase expression with methionine sulphoximine. The expression levels of ectodomain were subsequently increased by gene amplification. Production was scaled up using a 40-liter airlift fermenter in which the transfected CHO-K1 cells were cultured on microcarrier beads, initially in medium containing 10% fetal calf serum (FCS). By continuous perfusion of serum-free medium into the bioreactor, cell viability was maintained during reduction of FCS, which enabled soluble hIR ectodomain to be harvested for at least 22 days. Harvests were concentrated 20-fold by anion-exchange chromatography. Optimal recovery of ectodomain from early harvests containing large quantities of serum proteins was achieved by insulin-affinity chromatography, whereas in later harvests purification was achieved by multistep chromatography. Analysis of the purified hIR ectodomain showed that it had a molecular weight by sedimentation equilibrium analysis of 269,500. Amino-terminal amino acid sequence analysis showed that the ectodomain was correctly processed to alpha and beta chains and that glycosylation characteristics were similar to those of native hIR. The integrity of the ectodomain was demonstrated by the recognition of conformation-dependent anti-hIR antibodies and by its binding of insulin (Kd approximately 2 x 10(-9) M). These results demonstrate the successful production and purification of hIR ectodomain by processes amenable to scale-up and in a form appropriate for structure/function studies of the ligand-binding domain of the receptor.

Animals↗

A monoclonal antibody to the surface membrane of human platelets which inhibits ristocetin- and collagen-induced platelet aggregation reacts with H1 histones of cell nuclei.

A murine monoclonal antibody HuPIA3, produced by immunization with human platelet membranes, reacted by radioimmunoassay with platelets, and inhibited ristocetin- and collagen-induced platelet aggregation and release of 14C-serotonin. The antibody also inhibited ristocetin-induced aggregation of washed, formaldehyde-fixed platelets by von Willebrand factor. On cultures of human and rodent fibroblasts, and on frozen sections of rabbit liver and rat kidney, the antibody gave a diffuse, homogenous immunofluorescence staining of cell nuclei which could be abolished by treatment with 0.1 M HC1 or 2 M NaCl and restored by reconstitution with histones, suggesting a reaction with nuclear histones. Absorption of the antibody with histones abolished nuclear staining and abrogated the inhibitory effect of the antibody on ristocetin- and collagen-induced platelet aggregation and 14C-serotonin release. Conversely, absorption with platelets removed antibody reactivity for platelets and for cell nuclei. In addition, the antibody reacted with H1 histones by radioimmunoassay, and immunoblotting studies showed that the antibody reacted with a protein of 199,000 daltons on platelets and with H1 histones (31,000 dalton and 32,000 dalton). These observations suggest that the antibody recognizes epitopes found on surface molecules of platelets as well as on H1 histones of cell nuclei.

Antibodies, Antinuclear↗

The IIb-IIIa glycoprotein complex that mediates platelet aggregation is directly implicated in leukocyte adhesion.

Evidence is presented that the IIb-IIIa glycoprotein complex, which functions as the receptor for fibrinogen on platelets and is central to platelet aggregation, is expressed on the surface of leukocytes where it may function as a receptor for fibronectin. F(ab')2 fragments of a monoclonal antibody, 25E11, raised against activated large granular lymphocytes, inhibited killing by natural killer cells, blocked the binding of fibronectin-coated particles by monocytes, and stimulated neutrophils to exhibit increased antibody-dependent killing. Immunoprecipitation studies of leukocytes and platelets, and the ability of 25E11 to inhibit platelet aggregation, identified the antigen as an epitope on the IIb-IIIa complex. This glycoprotein thus constitutes the first example of a receptor mediating both platelet aggregation and leukocyte adhesion.

Adult↗

Nutritional rickets in breast-fed infants.

A ten-year literature review was prompted by the fortuitous discovery of nutritional rickets in a "well child." Sixty-three cases were identified, suggesting that this disease is not so rare as thought. Rickets should be considered in the differential diagnosis of nonspecific musculoskeletal complaints and poor growth. Vitamin D supplementation in breast-fed children should be prescribed more often.

Adult↗

Human thymidine kinase: purification and some properties of the TK1 isoenzyme from placenta.

Human thymidine kinase TK1 isoenzyme has been purified 1800-fold from placenta to a specific activity of 2.9 nmoles/min/mg of protein. The rapid purification procedure includes affinity chromatography on a thymidine-Sepharose column. At all stages of purification, the enzyme showed irreversible lability. The native molecular weight was determined to be 45000. Human placental TK1 exhibited specificity for ATP and thymidine as substrates, and significant inhibition was found only with thymidine nucleotides. TTP was the most effective inhibitor.

Female↗

Relationship of raised platelet IgG in thrombocytopenia to total platelet protein content.

Platelet-associated IgG (PA IgG) of washed platelets of 20 normal controls and 45 thrombocytopenic patients was measured by radioimmunoassay and related to total platelet protein content. Mean values (+/- 2 SD) for 20 normals were 4.4 +/- 3.5 fg IgG per platelet (fg IgG/pl), 2.1 +/= 1.0 pg protein per platelet (pg protein/pl) and a ratio of IgG per g platelet protein of 2.1 +/- 1.8 mg IgG/g protein. Patients could be divided into two groups: Group I (31) with normal IgG/g protein ratios and either normal (16) or raised (15) fg IgG/pl, and Group II (14) with both fg IgG/pl and IgG/g protein raised. Of the 21 patients with idiopathic thrombocytopenia (ITP), 13 were in Group I (seven with raised and six with normal fg IgG/pl), and eight in Group II. There was significant correlation between PA IgG (fg IgG/pl) and platelet protein for the entire Group I (r = 0.95, P less than 0.001). The ITP patients in this group showed a similar correlation (r = 0.77, P less than 0.001), suggesting that raised PA IgG levels in Group I patients may be a result of protein-rich platelets. 60-90% of PA IgG was found in the soluble fraction of lysates of platelets from both normals and patients. Thus, it is either non-specifically associated with platelets or is antibody directed towards easily solubilized platelet antigens. Nine thrombocytopenic patients without immune disorders had raised PA IgG. These results question the assumption that raised PA IgG always indicates specific antiplatelet antibody.

Blood Platelets↗