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Biomedical subjects

D J Goldstein

Publications and source records attributed to D J Goldstein.

At least 19 recordsLinked to original sources

The BPV-1 E5 protein, the 16 kDa membrane pore-forming protein and the PDGF receptor exist in a complex that is dependent on hydrophobic transmembrane interactions.

The E5 oncoprotein of bovine papillomavirus type 1 is a 44 amino acid, highly hydrophobic protein that induces the stable transformation of immortalized murine fibroblasts, presumably through its activation of growth factor receptors. Previous studies have shown that the E5 protein complexes with the 16 kDa (16k) pore-forming protein of vacuolar H(+)-ATPases. This integral membrane protein is essential for the acidification and function of subcellular compartments that process growth factor receptors. Using an SV40 expression system in COS cells, we analyzed whether the E5-16k complexes bind additional cellular proteins, including growth factor receptors. These studies demonstrate that E5 binds to both the 16k protein and the PDGF receptor and that this tri-component complex can be isolated with antibodies specific for each protein. Importantly, the 16k protein bound to the PDGF receptor in the absence of E5, suggesting that E5 binds to the PDGF receptor via its interaction with the 16k protein. An E5 mutant lacking the hydrophilic carboxyl-terminal 14 amino acids retained binding to both 16k and the PDGF receptor, indicating that E5 binds to these proteins through its hydrophobic, membrane-associating domain. These studies reveal that hydrophobic, intramembrane interactions govern the association of E5, 16k and the PDGF receptor, suggesting a ligand-independent mechanism for receptor activation and a potential link between receptor signal transduction pathways and membrane pore activity.

Adenosine Triphosphatases

The BPV-1 E5 oncoprotein expressed in Schizosaccharomyces pombe exhibits normal biochemical properties and binds to the endogenous 16-kDa component of the vacuolar proton-ATPase.

The 44-amino-acid E5 oncoprotein of bovine papillomavirus type 1 transforms immortalized murine fibroblast cell lines. This highly hydrophobic protein forms homodimers, localizes to intracellular membrane compartments (including the Golgi apparatus), and forms a complex with the 16-kDa membrane-embedded constituent (16k) of the vacuolar proton-ATPase. To develop a system for the genetic and biochemical analysis of the E5/16k interaction, the E5 gene was cloned into a new vector which was designed for expression in the fission yeast Schizosaccharomyces pombe. The E5 protein synthesized in this system dimerized normally and bound to endogenous and overexpressed S. pombe 16k protein. Comparison of the S. pombe and mammalian 16k proteins showed strong conservation in carboxyl-terminal amino acids but greater variation in the amino-terminal sequences, suggesting that E5 was interacting with the 16k carboxyl domains. Finally, a new protein epitope tag is described which permitted for the first time the coprecipitation of E5 with antibodies directed against the 16k protein.

Amino Acid Sequence

Variation in the dry mass of mouse embryos throughout the preimplantation period.

Information on the net balance of embryonic metabolism during the preimplantation period is provided by measurements of embryo dry mass. The dry mass of mouse embryos at 10 defined stages of preimplantation development was measured using the Vickers M86 scanning microinterferometer. The results demonstrate that there is an overall loss of dry mass from the unfertilized ovum (39.10 +/- 0.6 ng) to the late blastocyst stage (32.80 +/- 0.53 ng) with these differences being highly significant. However, there is a significant increase in embryonic dry mass from the 1-cell (36.88 +/- 0.34 ng) to 2-cell stage (40.48 +/- 0.40 ng). These results suggest that protein synthesis exceeds degradation during the 2-cell stage but that from the 4-cell to morula stage the reverse is true. In addition, the variation in dry mass between embryos at the same developmental stage is extremely small, suggesting that this may be a useful indicator of embryonic viability.

Animals

A glutamine residue in the membrane-associating domain of the bovine papillomavirus type 1 E5 oncoprotein mediates its binding to a transmembrane component of the vacuolar H(+)-ATPase.

The 44-amino-acid E5 oncoprotein is the major transforming protein of bovine papillomavirus type 1. It is a highly hydrophobic polypeptide which dimerizes and localizes to the Golgi apparatus and endoplasmic reticulum membranes. Recent evidence suggests that E5 modulates the phosphorylation and internalization of the epidermal growth factor and colony-stimulating factor 1 receptors and constitutively activates platelet-derived growth factor receptors in C127 and FR3T3 cells. Although no direct interaction with these growth factor receptors has yet been identified, the E5 oncoprotein has been shown recently to interact with the hydrophobic 16-kDa component of the vacuolar H(+)-ATPase (16K protein) [D. J. Goldstein, M. E. Finbow, T. Andresson, P. McLean, K. Smith, V. Bubb, and R. Schlegel, Nature (London) 352:347-349, 1991]. In the current study, we have further analyzed the E5-16K protein complex by fast protein liquid chromatography and shown that each E5 dimer appears to bind two 16K proteins. In order to define the specific amino acid residues of E5 which participate in this binding, mutated E5 epitope fusion proteins were analyzed for their ability to coprecipitate 16K protein. Transformation-defective mutants containing amino acid substitutions within the short hydrophilic carboxyl-terminal domain retained the ability to associate with the 16K protein. However, E5 mutants lacking the glutamine residue in the hydrophobic domain were markedly inhibited in 16K protein binding. Most interestingly, the placement of a glutamine in several random hydrophobic sequences facilitated 16K protein binding, defining this residue as a potential binding site for the 16K protein component of the proton pump and exemplifying the critical role of hydrophilic amino acids for mediating specific interactions between transmembrane proteins.

Amino Acid Sequence

Nephrotoxic antiserum identifies a beta 1-integrin on rat glomerular epithelial cells.

A postulated mechanism of immune glomerular injury is a direct interaction between antibody and glomerular epithelial cell (GEC) surface antigens. To explore this hypothesis, we examined the interaction of the noncomplement-fixing gamma 2-subclass of sheep anti-rat nephrotoxic serum (NTS), which causes immediate complement- and neutrophil-independent proteinuria in vivo, with rat GECs in culture. Reactivity of NTS with GEC surface antigens was determined by positive immunofluorescence of GEC plasma membranes and by the ability of NTS-coated tissue culture wells to provide an adhesive substrate for GECs. NTS immunoprecipitated two proteins (135 and 118 kDa) from surface-labeled GECs. Proteins of similar molecular mass were precipitated by a polyclonal rabbit antibody that identifies the beta 1-integrin chain of the mouse fibronectin receptor (anti-FnR). In addition, NTS identified similarly sized bands on Western blot analysis of cell membranes from isolated rat glomeruli. Similar reactivity was eluted from the glomeruli of proteinuric rats injected with NTS. NTS significantly inhibited GEC adhesion to laminin, types I and IV collagen, and fibronectin and prevented GEC spreading on types I and IV collagen. Anti-FnR similarly inhibited GEC adhesion. Cell viability was not affected. These results show that NTS recognizes a pair of GEC surface proteins that have the characteristics of an alpha- and beta 1-integrin and, at low concentrations, disrupt cell-matrix interactions.

Animals

Serum bilirubin levels, intracranial hemorrhage, and the risk of developmental problems in very low birth weight neonates.

To study whether elevated levels of bilirubin in the neonatal period increase the risk of developmental problems for very low birth weight neonates, the investigators used data from a geographically based sample of 495 very low birth weight neonates, born January 1, 1985, to December 31, 1989, who survived to 1 year of adjusted age. Maximum neonatal bilirubin levels were found in medical records. A developmental problem was defined as either cerebral palsy or a Bayley Mental Developmental Index of less than 68 at 1 year adjusted age. Potentially confounding factors were controlled using logistic regression. To control for the effects of intracranial abnormalities (eg, intraventricular hemorrhage), separate logistic regression analyses were carried out for three strata, defined according to the results of cranial ultrasonography. In these analyses, the following odds ratios (with 95% confidence limits) were found for the association of maximum neonatal bilirubin concentration and developmental problems: for subjects without intracranial abnormalities, 0.9 (0.7, 1.9); for subjects with uncomplicated intracranial hemorrhage, 1.5 (0.8, 2.5); for subjects with complicated intracranial hemorrhage or intraparenchymal echo-densities, 1.2 (0.4, 3.6). In summary, in analyses controlled for confounding factors, maximum neonatal bilirubin level was not consistently associated with the risk of developmental problems identifiable at 1 year.

Bilirubin

Beneficial health effects of modest weight loss.

The medical effects of modest weight reduction (approximately 10% or less) in patients with obesity-associated medical complications were reviewed. The National Library of Medicine MEDLINE database and the Derwent RINGDOC database were searched to identify English language studies that examined the effects of weight loss in obese patients with serious medical complications commonly associated with obesity (non-insulin dependent diabetes mellitus (NIDDM or type II), hypertension, hyperlipidemia, hypercholesterolemia, and cardiovascular disease). Studies in which patients experienced approximately 10% or less weight reduction were selected for review. Studies indicated that, for obese patients with NIDDM, hypertension or hyperlipidemia, modest weight reduction appeared to improve glycemic control, reduce blood pressure, and reduce cholesterol levels, respectively. Modest weight reduction also appeared to increase longevity in obese individuals. In conclusion, a large proportion of obese individuals with NIDDM, hypertension, and hyperlipidemia experienced positive health benefits with modest weight loss. For patients who are unable to attain and maintain substantial weight reduction, modest weight loss should be recommended; even a small amount of weight loss appears to benefit a substantial subset of obese patients.

Cardiovascular Diseases

Bovine papillomavirus E5 oncoprotein binds to the 16K component of vacuolar H(+)-ATPases.

The major transforming protein of bovine papillomavirus type 1, E5, is mainly associated with endomembranes, specifically binding to a cellular protein of relative molecular mass 16,000 (16K). At the same time as transformation, E5 causes the phosphorylation of tyrosine residues in epidermal and platelet-derived growth factor receptors. We show here that the 16K protein associated with E5 is the 16K component of vacuolar ATPases. This protein is known to be an integral membrane protein in endosomes, bovine chromaffin granules, synaptic vesicles, fungal and plant vacuoles and clathrin-coated vesicles, as well as a component of gap-junction-like membrane complexes. Because proton pumps are critical for the function of cellular compartments that process growth-factor receptors, the interaction of E5 with the 16K protein could explain the pleiomorphic features of cells transformed by E5.

Adenosine Triphosphatases

A genomic sequence of the Schizosaccharomyces pombe 16 kDa vacuolar H(+)-ATPase.

We have isolated the gene encoding the 16 kDa vacuolar H(+)-ATPase from Schizosaccharomyces pombe. On the basis of RNA splicing signals and amino acid sequence homology with other 16 kDa H(+)-ATPases, the genomic DNA sequence indicated the 16 kDa protein is encoded by five exons. The C-terminal 50 amino acids has more than 90% homology with vacuolar H(+)-ATPases of mammalian cells.

Amino Acid Sequence

Changes in cellular dry mass during macrophage development.

Measurements of dry mass were made on developing human macrophages in suspension culture using a scanning and integrating microinterferometer. The mean dry mass (+/- SEM) of day 0 monocytes of 19 healthy individuals was 53.6 +/- 2.4 pg. There was a significant increase in cellular dry mass over the period of culture, mean values at 2, 4 and 6 days being 61.1, 79.8 and 110.4 pg, respectively. A comparison of the results with those obtained previously by ultrastructural morphometry inferred that there is a disproportionate increase in the water content of macrophages during development. The technique may have potential for investigating changes in mononuclear phagocytes in clinical states.

Adult

Opiate receptors: opioid agonist-antagonist effects.

Two concepts are especially important in understanding the action of agonist-antagonist opioid analgesics. First, knowing to which receptor classes an agonist-antagonist binds permits prediction of its pharmacodynamics. For instance, psychotomimetic effects occur with binding to specific opiate (kappa) and nonopiate (sigma) receptors. Second, to have limited agonist activity despite increasing dose ceiling effect, the antagonist effect usually is of the same receptor class as the agonist effect.

Humans

The E5 oncoprotein of bovine papillomavirus binds to a 16 kd cellular protein.

The E5 oncoprotein of bovine papillomavirus type 1 is the smallest known viral transforming protein. It is a 44 amino acid polypeptide asymmetrically oriented in Golgi and plasma membranes which appears to modify (either directly or indirectly) the internalization and phosphorylation of at least two growth factor receptors: EGF and CSF-1. To identify cellular proteins associated with E5, we have constructed two E5 fusion proteins, each of which contains a well-characterized epitope at the E5 amino terminus. These E5-epitope fusion proteins are biologically active, localize normally to cellular membranes and form dimers. Both monoclonal and polyclonal antibodies against the inserted epitopes specifically co-precipitate E5 and an associated 16 kd cellular protein. A transformation-defective E5 mutant containing a substitution within the hydrophobic portion of E5 is defective in its ability to bind the 16 kd protein. These findings suggest a role for E5/16 kd binding in the process of cellular transformation.

Animals

Interaction of angiotensin II with the cholinergic and noradrenergic systems in the rat pineal gland: regulation of indole metabolism.

The pineal gland, angiotensin, and noradrenergic and cholinergic systems are involved in the regulation of tissue indole metabolism. Angiotensin II increased noradrenaline release and the production of hydroxy- and methoxyindoles by pineal slices. Electrical field stimulation (EFS) of pineal slices released angiotensin II and reproduced many of the actions of exogenous angiotensin II on serotonin and melatonin biosynthesis and release. Both sarcosine-isoleucine-angiotensin II ([Sar, Ile]-ANG II) and atropine blocked, and nadolol increased, the effect of EFS and exogenous angiotensin II on serotonin production. Nadolol blocked both the EFS-induced and the angiotensin II-induced production of melatonin. Atropine and [Sar, Ile]-ANG II did not modify melatonin biosynthesis in electrically stimulated slices, but the muscarinic receptor antagonist increased the stimulatory effect of angiotensin II. These data showed that EFS released angiotensin II and noradrenaline from pineal slices and that a close functional connection exists between the peptide and acetylcholine. The stimulation of serotonin biosynthesis and release by these two neurotransmitters was negatively regulated by noradrenaline acting through beta-adrenergic receptors.

1-Sarcosine-8-Isoleucine Angiotensin II

A herpes simplex virus ribonucleotide reductase deletion mutant is defective for productive acute and reactivatable latent infections of mice and for replication in mouse cells.

Herpes simplex virus encodes a ribonucleotide reductase that is not essential for virus growth in dividing cells at 37 degrees. This enzyme has been proposed as a target for antiviral drugs; its utility in this regard could depend upon its importance in vivo. To test the requirement of viral ribonucleotide reductase in a mammalian host, we tested a mutant virus, lacking most of the gene encoding the ribonucleotide reductase large subunit, in a mouse eye model of pathogenesis and latency where the wild-type virus establishes reactivatable latent infections in trigeminal ganglia following corneal inoculation. The deletion mutant was severely impaired in its ability to replicate acutely in the eye and in the trigeminal ganglion and failed to establish reactivatable latent infections. In contrast, a recombinant virus in which the deleted sequences were restored was competent for both acute and latent infections. The defects of the deletion mutant in the mouse may be related to its severely impaired growth at 38 degrees in mouse cells relative to its growth in Vero cells. These results indicate that ribonucleotide reductase is critical for productive acute and reactivatable latent infections in mice and replication in mouse cells at 38 degrees and suggest that caution be exercised in extrapolating from studies conducted in mice to human infections when judging the utility of this enzyme as a target for antiviral chemotherapy.

Acute Disease

Herpes simplex virus ribonucleotide reductase mutants are hypersensitive to acyclovir.

Two mutants defective in herpes simplex virus-encoded ribonucleotide reductase activity exhibited the novel phenotype of hypersensitivity to acyclovir, aphidicolin, and to a lesser extent, phosphonoacetic acid. These results have implications for acyclovir resistance and the development of drugs that potentiate acyclovir action by inhibition of viral ribonucleotide reductase.

Acyclovir

Concurrent validity of the Gardner Test of Visual-Motor Skills.

Scores on the Test of Visual-motor Skills, Developmental Test of Visual-motor Integration, and Bender-Gestalt test were compared for a sample of 44 elementary school children referred for evaluation of learning disorders. While the tests shared common variance, the mean standard score on the Test of Visual-motor Skills was significantly lower than the means of the other two tests, suggesting caution in the clinical use of the new scale.

Bender-Gestalt Test