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Biomedical subjects

J Roth

Publications and source records attributed to J Roth.

At least 397 records · Page 22Linked to original sources

Two unrelated patients with familial hyperproinsulinemia due to a mutation substituting histidine for arginine at position 65 in the proinsulin molecule: identification of the mutation by direct sequencing of genomic deoxyribonucleic acid amplified by polymerase chain reaction.

Mutations in the insulin gene can impair the bioactivity of the insulin molecule. Previously, two classes of mutations have been identified: 1) those that impair posttranslational processing of proinsulin to insulin, and 2) those that alter the structure of the insulin molecule, thereby reducing the affinity of the molecule for the insulin receptor. We have investigated two apparently unrelated patients, both of which have mutations that inhibit the conversion of proinsulin to insulin. By directly sequencing genomic DNA amplified by polymerase chain reaction, we have demonstrated that both patients are heterozygous for the same point mutation converting codon 65 from an arginine (CGT) to a histidine (CAT) codon. Because Arg65 is one of the two dibasic amino acids at the site of proteolytic cleavage between the insulin A-chain and C-peptide, this mutation explains the impairment in the cleavage of proinsulin to insulin. Interestingly, the same His65 mutation has been identified in the insulin gene of a Japanese kindred with familial hyperproinsulinemia. Thus, this mutation has occurred in three apparently unrelated kindreds from two different racial groups. This observation is consistent with the hypothesis that the dinucleotide sequence CpG, the first two nucleotides in the arginine (CGT) codon, is a "hot spot" for mutations.

Alleles↗

Brain glucose metabolism in noninsulin-dependent diabetes mellitus: a study in Pima Indians using positron emission tomography during hyperinsulinemia with euglycemic glucose clamp.

To determine whether insulin or noninsulin-dependent diabetes mellitus affects brain glucose metabolism, brain glucose utilization was studied in the basal state and during hyperinsulinemic euglycemic glucose clamps in nondiabetic and diabetic Pima Indians by positron emission tomography with 2-[18F]fluoro-2-deoxy-D-glucose (18FDG). Glucose utilization in 75 brain areas was determined by analysis of single scans and by least squares estimation of the rate parameters for the FDG model; these data were compared to results in normal caucasian volunteers. No effect of ethnicity or diabetic status on brain glucose utilization was observed. During the hyperinsulinemic clamps (mean insulin, 11,708 +/- 3,026 pmol/L), clearance of 18FDG from blood was accelerated, and accumulation of brain radioactivity was reduced. However, glucose utilization by the brain was identical to results during sham glucose clamps (mean insulin, 204 +/- 56 pmol/L) performed in the same patients. During the studies with hyperinsulinemia, k4 (representing loss of tissue radioactivity) was increased in most brain areas (mean increase, 0.0031 +/- 0.0018 min-1; P less than 0.02). The possible mechanisms for this effect are multiple, and the physiological significance, if any, is unknown. Further studies of the effects of insulin on brain glucose metabolism are needed.

Adult↗

Polysialic acid and N-CAM localisation in embryonic rat kidney: mesenchymal and epithelial elements show different patterns of expression.

The expression of polysialic acid (PSA) and the neural cell adhesion molecule (N-CAM) during the embryonic development of rat kidney was investigated using immunocytochemistry and immunoblotting. A monoclonal antibody (mAb 735), which recognised only long chain PSA, and polyclonal antibodies specific for N-CAM were employed. At the earliest stages of metanephros formation, PSA and N-CAM immunostaining was found in both embryonic anlagen, namely the uretic bud and the metanephrogenic mesenchyme. Reactivity in uretic bud derivatives declined during embryonic development and was generally absent in the collecting duct system by embryonic day 18 (E18). Uninduced metanephrogenic mesenchyme was immunostained throughout development while induced mesenchymal cells showed greatly increased PSA and N-CAM immunoreactivity during their transformation into epithelium. This staining declined rapidly as nephrons differentiated. These processes were preceded by sorting of PSA and N-CAM to the basolateral plasma membrane. Similar N-CAM and PSA patterns were observed in mesonephros development. In adult kidney parenchyma both PSA and N-CAM were undetectable. Immunoblotting of samples of embryonic kidney with mAb 735 revealed a broad band ranging from 140 to greater than 200 x 10(3) Mr. N-CAM antibodies revealed reactivity in a band of 140 x 10(3) Mr after removal of PSA by endoneuraminidase treatment. Expression of N-CAM and PSA in both embryonic anlagen indicates that neither molecular species acts primarily as an inductive signal. These molecules were localised in areas where changes in cell adhesion during organogenesis might be important and thus may be involved in the grouping of developing cells.

Animals↗

Immunohistochemical detection of bFGF and TNF-alpha in the course of inflammatory angiogenesis in the mouse cornea.

Tumor necrosis factor alpha (TNF-alpha) and basic fibroblast growth factor (bFGF) have been assigned a major role in the induction of angiogenesis. By performing immunohistochemical studies of cauterized mouse corneas, the in situ distribution of bFGF and TNF-alpha in the course of inflammatory neovascularization was investigated. bFGF was found throughout the corneal epithelium of untreated and cauterized eyes. However it was only rarely detected in the endothelium or in infiltrating cells before the onset of neovascularization. TNF-alpha was not expressed by any cell before the ingrowth of new blood vessels, which took place within 36 hours after cauterization. It is concluded that the release of these cytokines by infiltrating cells is of minor or no importance for the induction of sterile inflammatory angiogenesis.

Animals↗

[Properties of the cell surface of normal and malignant cells: investigations on polysialic acid and terminal sialic acid residues in specific linkages].

Data are reported to demonstrate the usefulness of a monoclonal anti-polysialic acid antibody for (i) the visualization of immature and mature neural elements in human teratomas, and (ii) the distinction of small cell lung carcinoma from bronchial carcinoids as well as squamous cell and adenocarcinomas of the lung. Lectins which discriminate between the various types of sialylated sequences, such as the Sambucus nigra L. I lectin specific for Neu5Ac alpha 2,6 Gal/GalNAc and the leukoagglutinin from Maackia amurensis (MAL) specific for Neu5Ac alpha 2,3 Gal beta 1,4 GlcNAc have been applied to the study of human colonic mucosa. The Neu5Ac alpha 2,3 Gal beta 1,4 GlcNAc sequence was detectable in normal and transitional mucosa and carcinomas, whereas the Neu5Ac alpha 2,6 Gal/GalNAc sequence was found in carcinomas. The lectin Amaranthin reacts with Gal beta 1,3 GalNAc-alpha (the T antigen) and NeuAc alpha 2,3 Gal beta 1,3 GalNAc-alpha (the cryptic T antigen). It stained normal and transitional colonic mucosa as well as carcinoma. The reactivity was solely due to the cryptic T antigen and indicates that the T antigen may not represent a general carcinoma autoantigen.

Cell Membrane↗

[Demonstration of polysialic acid and N-CAM in neuroendocrine tumors].

The neural cell adhesion molecule (N-CAM) is a general calcium-independent cell adhesion molecule. A common structural feature of N-CAM is the presence of homopolymers of alpha-2,8-linked sialic acid residues, which regulates the homophilic adhesive properties of N-CAM. N-CAM undergoes a change from a highly sialyated to a less sialylated form from embryonic to adult life. We have investigated the presence of N-CAM, using a monoclonal antibody against polysialic acid, and polyclonal antibodies against N-CAM. We found the presence of highly sialylated N-CAM in pheochromocytomas, medullary carcinomas of the thyroid, neuroblastomas, small cell cancer of lung and pituitary adenomas. We failed to visualize N-CAM in neuroendocrine tumors of various organs (carcinoids), melanomas and pancreatic endocrine tumors. The visualization of polysialic acid and N-CAM could serve as an additional criterium for the differential diagnosis of neuroendocrine tumors.

Cell Adhesion Molecules, Neuronal↗

Oligosaccharide trimming Man9-mannosidase is a resident ER protein and exhibits a more restricted and local distribution than glucosidase II.

The subcellular distribution of a recently described neutral trimming mannosidase, the Man9-mannosidase, has been investigated by immunoelectron microscopy in pig hepatocytes. This enzyme processes asparagine-linked N-acetylglucosamine2 mannose9 oligosaccharides by specifically cleaving three of the four alpha 1,2-linked mannose residues and is distinct from the presumptive ER alpha-mannosidase and the two Golgi alpha-mannosidases. Specific polyclonal antibodies for Man9-mannosidase have been prepared, affinity-purified and characterized by immunoblotting. Immunolabeling using these antibodies was observed in the rough (rER) and smooth endoplasmic reticulum (sER) as well as transitional elements of the rough endoplasmic reticulum and smooth membrane profiles close to the Golgi apparatus while the cisternal stack of the Golgi apparatus was unlabeled. This indicates that Man9-mannosidase is an ER trimming mannosidase which acts on glycoproteins after glucosidase II trimming and before their transport to the Golgi apparatus. A comparison with glucosidase II by double immunolabeling showed a more restricted and local distribution of Man9-mannosidase since it was undetectable in the nuclear envelope and although present throughout the rER and sER, large portions of rER cisternae and many sER profiles were unlabeled. This local distribution of Man9-mannosidase might provide a morphological basis for its involvement in selective trimming reactions in the ER. The catabolic pathway for Man9-mannosidase, as for glucosidase II, may involve degradation in autophagic vacuoles.

Animals↗

Selective loss of sialic acid from rat small intestinal epithelial cells during postnatal development: demonstration with lectin-gold techniques.

Post-embedding lectin-gold cytochemistry was employed to investigate the distribution of sialic acid and fucose residues in rat small intestinal epithelial cells during postnatal development. During the suckling phase (postnatal day 1) the apical and basolateral plasma membranes of epithelial cells, as well as the goblet cell mucus was intensely stained with the sialic acid-specific Sambucus nigra L. lectin I-gold complex (SNL I-g). By the weaning period (postnatal day 23), the entire villus contained both SNL I-g-positive and negative cells. In adult small intestine, the plasma membranes of all epithelial cells were unreactive with SNL I-g; however, abundant staining was detectable in goblet cell mucus, cells of the lamina propria, and smooth muscle cells. The distribution of fucose residues as detected with a Ulex europaeus lectin I-gold complex (UEL I-g) was virtually opposite that of sialic acid. At postnatal day 1, staining was restricted to goblet cell mucus, whereas by postnatal day 23, a portion of epithelial cells displayed UEL I-g binding sites along the apical and basolateral plasma membranes. In the adult, the apical and basolateral plasma membranes of all epithelial cells, as well as goblet cell mucus were stained with UEL I-g. These results support biochemical data demonstrating a shift from sialylation to fucosylation of intestinal microvillar glycoconjugates during the weaning phase of postnatal development. Moreover, the results indicate that rather than a general decrease in cellular sialylation, specific individual cells at all positions along the crypt-to-villus axis become devoid of sialic acid.

Animals↗

Immunoelectron microscopic investigation of surface coat of Wilms tumor cells. Dense lamina is composed of highly sialylated neural cell adhesion molecule.

In previous studies we demonstrated the presence of polysialic acid in Wilms tumor by immunohistochemistry and immunoblotting. We now show by immunoelectron microscopy that the cell surface coat of Wilms tumor cells consists of a layer of amorphous material containing polysialic acid but not detectable amounts of laminin, laminin-nidogen complex, or low density proteoglycan. Therefore, Wilms tumor cells are covered by a highly developed and chemically specialized cell surface coat that does not represent a basement membrane, although it bears some structural similarities. Polysialic acid is present on neural cell adhesion molecule that exists in Wilms tumor as two isoforms of approximately 120 and 140 kDa. The cell surface coat exhibits variation in its thickness along the plasma membrane of a single tumor cell, and the variation is inversely related to the extent of cell-cell contact. It is therefore proposed that polysialic acid may modulate the behavior and invasive potential of Wilms tumor cells.

Cell Adhesion Molecules, Neuronal↗

The relationship of polysialic acid and the neural cell adhesion molecule N-CAM in Wilms tumor and their subcellular distributions.

In previous studies we have reported that polysialic acid is an oncodevelopmental antigen in human kidney but its relationship to the neural cell adhesion molecule (N-CAM) remained undefined. In the present study, we showed by the combination of immunoprecipitation and immunoblotting that renal polysialic acid is a structural component of N-CAM polypeptide and that two highly sialylated N-CAM isoforms of approximately 120 kDa and 140 kDa existed in Wilms tumor. The presence of a cell surface coat composed of polysialic acid and N-CAM was revealed by immunoelectron microscopy, and morphological evidence for its involvement in modulating cell-cell adhesion has been provided. Furthermore, highly sialylated N-CAM was detectable extracellularly. N-CAM immunolabeling was present in compartments from the nuclear envelope to the plasma membrane. However, polysialic acid was only detectable at the cell surface suggesting that in Wilms tumor cells sialyl polymer synthesis may occur partially or exclusively at this site.

Animals↗

Thermoadaptive influence on reactivity pattern of vasopressinergic neurons in the guinea pig.

In cold-adapted guinea pigs, increased amounts of arginine-vasopressin (AVP) immunoreactive material could be visualized in neurons of the supraoptic and paraventricular nucleus, in fibers projecting to the neurohypophysis and in fiber terminals in the ventral lateral septum and in the amygdala. In warm-adapted animals the reactivity to AVP antiserum was poor in all neuronal structures examined. High AVP-immunoreactivity was accompanied by a reduced febrile response to bacterial pyrogen in cold-adapted guinea pigs.

Adaptation, Physiological↗

Insulin-like growth factor I activity is stored in the yolk of the avian egg.

Growth factors of maternal origin may be incorporated into the vertebrate egg and play a role in early phases of embryo growth and differentiation. An avian insulin-like growth factor I (IGF-I) activity from unfertilized chicken egg-yolk has been partially purified by HPLC. The material is slightly more hydrophobic than recombinant human IGF-I. It reacts in a human IGF-I radioimmunoassay and is specifically depleted by anti-human IGF-I antibodies. Like authentic IGF-I, the extracts enriched in IGF-I activity stimulated the accumulation of delta-crystallin mRNA in epithelial cells from chick embryo lens with a potency approximately equivalent to its IGF-I immunoactivity.

Animals↗

Alteration of terminal glycosylation sequences on N-linked oligosaccharides of Chinese hamster ovary cells by expression of beta-galactoside alpha 2,6-sialyltransferase.

In this report we describe the alteration of the N-linked oligosaccharide terminal sequences of Chinese hamster ovary cell glycoproteins by expression of a beta-galactoside alpha 2,6-sialyltransferase cDNA. While wild type cells normally produce sugar chains terminating in the NeuAc alpha 2,3Gal linkage, the expressed enzyme competes with the endogenous sialyltransferase to attach an alternative terminal sequence, NeuAc alpha 2,6Gal. Subcellular localization of the NeuAc alpha 2,6Gal product by lectin-gold electron microscopy revealed localization throughout the Golgi apparatus cis to trans, post-Golgi membranes and vesicular structures. The results demonstrate the potential for purposefully altering terminal carbohydrate structures in vivo by "mis-expressing" terminal glycosyltransferases that compete with the endogenous enzyme normally produced by the cells.

Animals↗

Xenopus laevis contains two nonallelic preproinsulin genes. cDNA cloning and evolutionary perspective.

We undertook the cloning of preproinsulin cDNAs from the South African clawed toad, Xenopus laevis, in order to study the role of insulin during embryogenesis in this species. We found that X. laevis contains two different preproinsulin cDNAs, both of which code for peptides containing 106 amino acids of typical structure but which differ by eight amino acids: one in the signal peptide, two in the B-chain, four in the C-peptide, and one in the A-chain. Southern blot analysis indicates that the two preproinsulin cDNAs identified correspond to two different nonallelic genes which we believe arose through a recent gene duplication within the amphibian radiation possibly during the development of tetraploidy in this species. Both genes are expressed, since we have recently identified the two corresponding insulins in pancreatic extracts of adult toads (Shuldiner, A.R., Bennett, C., Robinson, E.A., and Roth, J. (1989) Endocrinology, in press). These cDNAs represent the first amphibian preproinsulin sequences to be elucidated.

Alleles↗

18F-labeled insulin: a prosthetic group methodology for incorporation of a positron emitter into peptides and proteins.

In the present study we synthesize 18F-labeled insulin of high specific radioactivity. A new prosthetic group methodology, in which [18F]fluoride displaces a bromide group of 4-(bromomethyl)-benzoylamine intermediates, was used. The 4-(fluoromethyl)benzoyl product was chemically stable. 18F-Labeled insulin retains the essential biological properties of native insulin, as measured in vitro by binding to insulin receptors on human cells and stimulation of glucose metabolism in rat adipocytes. The overall process can be carried out speedily to yield a product of sufficient purity to permit in vivo studies. The method appears to be applicable to a wide variety of peptides.

Adipose Tissue↗

Sudden cardiac death after aortic valve surgery: incidence and concomitant factors.

A retrospective analysis of 599 consecutive patients after aortic valve surgery aged 7-82 years (mean 56) was performed. During a follow-up of 1-14 years (mean 4.7 years) a 4-week perioperative mortality of 6.9% and a late annual mortality of 3.6% were observed. Sudden cardiac death was the most frequent single cause of death, accounting for 24% of all deaths. Patients dying suddenly were younger than patients dying from other causes (51 +/- 17 vs. 59 +/- 14 years, p less than 0.05) and showed more left ventricular hypertrophy by electrocardiographic criteria when compared with matched survivors (mean Estes score 5.2 +/- 2.4 vs. 2.8 +/- 1.9; p less than 0.01) and with patients dying nonsuddenly (mean Estes score 5.2 +/- 2.4 vs. 1.8 +/- 1.8; p less than 0.01). Ventricular premature beats in the resting electrocardiogram were more prevalent in patients dying suddenly than in matched survivors (55 vs. 20%; p less than 0.025) as well as in patients dying from other causes (55 vs. 25%; p less than 0.05). In addition, there were more intracardiac conduction disturbances and more ungrafted coronary vessels with insignificant stenoses at the time of surgery in sudden death patients. Our findings suggest that after aortic valve replacement patients with left ventricular hypertrophy, bundle-branch block, and ventricular premature beats in the resting electrocardiogram are at increased risk for sudden cardiac death. A possible etiological role of concomitant coronary artery disease must be considered.

Adolescent↗