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Biomedical subjects

E Friedman

Publications and source records attributed to E Friedman.

At least 235 records · Page 13Linked to original sources

Decreased expression of Ras GTPase activating protein in human trophoblastic tumors.

The normally developing placenta undergoes extensive but regulated noninvasive cellular proliferation. Various proto-oncogenes and growth factors have been associated with the regulation of trophoblastic placental growth. Activation of some oncogenes and altered expression of growth factors have been demonstrated in trophoblastic tumors (hydatidiform mole and choriocarcinoma). The ras proto-oncogene plays a key role in the signal transduction cascade of activated growth factors, and is known to be activated or overexpressed in multiple tumor types. Ras GTPase activating protein (RasGAP), a major down-regulator of ras activity, is present at high levels in placenta. To assess the role that Ras-GAP plays in the development of trophoblastic tumors, we performed immunohistochemical analyses with anti RasGAP antibodies of normal placentas, hydatidiform moles, invasive moles, and malignant choriocarcinomas. Normal placentas and noninvasive hydatidiform mole displayed intense positive staining confined to trophoblasts, whereas no staining was observed in the trophoblasts of invasive moles or choriocarcinomas. Thus, there was an inverse correlation between expression levels of RasGAP protein and the invasive potential and malignant phenotype in human trophoblastic tumors. The data indicate that RasGAP may play a regulatory role in trophoblast proliferation and that abolishing its activity may be associated with malignant transformation of these cells.

Cell Transformation, Neoplastic↗

Prenatal cocaine exposure selectively reduces mesocortical dopamine release.

The effect of prenatal exposure to cocaine on the release of [3H]dopamine and on presynaptic dopamine autoreceptor regulation of [3H]dopamine release in prelabeled frontal cortical, cingulate cortical and striatal slices was investigated. The release of [3H]dopamine that is evoked by high K+ was reduced by 20 to 28% in the cortical regions but not in striatum. This effect was observed at 10 days of age and persisted up to postnatal day 120 in rabbits that were exposed to cocaine during gestational days 8 to 29. Spontaneous [3H]dopamine release was increased by 18 to 22% in frontal and cingulate cortices but not in striatum of the 10- but not the 50- or 120-day-old rabbit that was exposed to cocaine during gestational days 8 to 29. Total [3H]dopamine accumulated in brain slices examined on postnatal days 10, 50 or 120 was not affected by prenatal cocaine exposure. Incubation of slices with dopamine dose-dependently inhibited K(+)-evoked [3H]dopamine release in both cortical and striatal slices. Prenatal cocaine exposure enhanced the responsiveness to in vitro dopamine in the two cortical regions but not in striatum. Fetal cocaine exposure did not affect the levels of dopamine or its metabolites, 3,4-dihydroxyphenylacetic acid and homovanillic acid, in frontal cortex or striatum. Similarly, no apparent differences in dopamine metabolism, as indicated by the ratio of 3,4-dihydroxyphenylacetic acid + homovanillic acid/dopamine, were observed in these brain areas. These findings demonstrate that prenatal cocaine exposure selectively affects depolarization-evoked [3H]dopamine release and its regulation by presynaptic dopamine autoreceptor in cortical areas.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The expression of alpha 1 adrenoceptor subtypes changes with age in the rat aorta.

Previous studies showed that alpha 1 adrenoceptor-mediated contractile responses change with age in the rat aorta, becoming more sensitive to Ca++ channel blockers and less sensitive to chlorethylclonidine (CEC), suggesting a change in the alpha 1 adrenoceptor subtypes that are present. In this study, alpha 1 adrenoceptor density and alpha 1 adrenoceptor subtypes were measured in the Fischer 344 rat aorta during aging. Aortic alpha 1 adrenoceptor densities, determined by saturation binding of 2-[beta-(4-hydroxy-3-[125I]iodophenyl)ethylaminomethyl] tetralone ([125I]-HEAT), were 47, 41 and 45 fmol/mg protein in 1-,6- and 24-month-old rats, respectively. The noncompetitive antagonist CEC completely blocked [125I]-HEAT binding in aortas from 1-month-old rats but inhibited binding only partially in aortas from older rats. Two binding sites were detected for norepinephrine and for WB4101 in all ages. The low-affinity constants for WB4101 (31-51 nM) were consistent with those for the alpha 1b adrenoceptor subtype, and this binding site decreased with age. The high-affinity constant for WB4101 (1.4 nM) in 1-month-old aorta was consistent with that for alpha 1d adrenoceptor subtype, whereas the high-affinity constants (0.03 nM) in 6- and 24-month-old aortas were consistent with those for the alpha 1a adrenoceptor subtype. At least three alpha 1 adrenoceptor subtypes appear to be colocalized in the rat aorta, so the binding affinities may reflect binding to more than one subtype. This makes it difficult to identify denfinitively the subtypes based on their radioligand binding characteristics.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Evidence for the coupling of Gq protein to D1-like dopamine sites in rat striatum: possible role in dopamine-mediated inositol phosphate formation.

The role of G proteins in mediating the coupling of D1 dopamine receptors to inositol phosphate formation was investigated in rat brain striatum. Pertussis toxin-activated ADP-ribosylation ( > or = 95%) did not affect the ability of the D1 agonist SKF38393 to stimulate the generation of inositol phosphates in striatal slices. Stimulation of striatal membranes with dopamine in the presence of [35S]GTP gamma S or [alpha-32P]GTP increased guanine nucleotide binding to G alpha s, G alpha i, and G alpha q in a concentration-dependent fashion. The activation of G alpha s and G alpha q was mimicked by the D1 agonist SKF38393 and blocked by the D1 antagonist SCH23390. In contrast, the D2/3 dopamine receptor agonist quinpirole stimulated guanine nucleotide binding to G alpha i, and dopamine-stimulated activation of G alpha i was attenuated by the D2 antagonist I-sulpiride. Furthermore, antisera directed against G alpha s or G alpha q but not G alpha i, G alpha o, or G alpha z precipitated specific D1-like binding sites labeled with [3H]SCH23390. The D1-like receptors that coprecipitated with G alpha s-but not with G alpha q can be recognized by a specific D1 dopamine receptor antibody. The data provide evidence to suggest that in addition to coupling to Gs/adenylyl cyclase, D1-like dopamine sites that couple to Gq may mediate dopamine-stimulated formation of inositol phosphates in the rat striatum.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Transforming growth factor beta 1 (TGF beta 1) is an autocrine positive regulator of colon carcinoma U9 cells in vivo as shown by transfection of a TGF beta 1 antisense expression plasmid.

A transforming growth factor beta1 (TGF beta1) antisense expression plasmid under constitutive control of the Rous sarcoma virus promoter was introduced into the highly tumorigenic and invasive colon carcinoma U9A cell line, which uses its autocrine TGF beta1 as a growth-stimulating factor. Stable transfectants were infrequent, and only the K6 transfectant exhibited 39 and 33%, respectively, of the levels of TGF beta1 mRNA and active, secreted TGF beta1 protein of the parental line. K6 exhibited no change in TGF beta2 expression, and TGF beta3 expression was not detected in either parental or transfectant cells. Compared to the parental line, the K6 antisense transfectant exhibited a 3-fold increase in lag time in anchorage-dependent colony formation. The parental line was 44 times as invasive through a collagen l-coated polycarbonate membrane in vitro as K6 cells and, after s.c. injection at low-cell inocula, U9A cells induced tumors 75 times as large in vivo as did the K6 antisense transfectant. The decreases in in vitro invasion and anchorage-dependent colony formation seen in K6 cells were largely reversed by the addition of TGF beta1. Tumors that did arise from the K6 antisense transfectant cells had lost antisense TGF beta1 expression and expressed the same TGF beta1 mRNA levels as controls. U9A cells were more metastatic to the liver after intrasplenic injection than K6 cells. These findings demonstrate a role for autocrine TGE beta1 in colon cancer tumorigenicity and invasion. They also show that a relatively small decrease in TGF beta1 levels was enough to markedly decrease colon carcinoma cell aggressiveness. This is not unprecedented, as we had found in an earlier study that a small, 2-4-fold increase in TGF beta1 protein levels in human colon cancers correlated with disease progression to metastases (E. Friedman et al., Cancer Epidemiol, Biomarkers & Prev., 4:549-554, 1995).

Animals↗

What's the future of health care associations?

The ongoing reconfiguration of the health care universe is leading to a rethinking of health care associations as well. As contributing editor Emily Friedman explains, the blurring of distinctions among hospitals, physician groups, managed care organizations and insurers is causing health care leaders to reassess their strategic priorities. Could a new type of professional association be the ultimate result?

American Hospital Association↗

Nephrogenic diabetes insipidus: an X chromosome-linked dominant inheritance pattern with a vasopressin type 2 receptor gene that is structurally normal.

Nephrogenic diabetes insipidus is a rare hereditary disorder, most commonly transmitted in an X chromosome-linked recessive manner and characterized by the lack of renal response to the action of antidiuretic hormone [Arg8]vasopressin. The vasopressin type 2 receptor (V2R) has been suggested to be the gene that causes the disease, and its role in disease pathogenesis is supported by mutations within this gene in affected individuals. Using the PCR, denaturing gradient gel electrophoresis, and direct DNA sequencing, we examined the V2R gene in four unrelated kindreds. In addition, linkage analysis with chromosome Xq28 markers was done in one large Brazilian kindred with an apparent unusual X chromosome-linked dominant inheritance pattern. In one family, a mutation in codon 280, causing a Tyr-->Cys substitution in the sixth transmembrane domain of the receptor, was found. In the other three additional families with nephrogenic diabetes insipidus, the V2R-coding region was normal in sequence. In one large Brazilian kindred displaying an unusual X chromosome-linked dominant mode of inheritance, the disease-related gene was localized to the same region of the X chromosome as the V2R, but no mutations were found, thus raising the possibility that this disease is caused by a gene other than V2R.

Base Sequence↗

Receptor-mediated activation of G proteins is reduced in postmortem brains from Alzheimer's disease patients.

The effects of Alzheimer's disease (AD) on [35S]GTP gamma S binding to G proteins was examined in postmortem cerebrocortex. Stimulation of the beta-adrenergic or muscarinic cholinergic receptors in control tissue with selective agonists resulted in increases in [35S]GTP gamma S binding to G alpha proteins in a receptor-specific fashion. The responses were markedly reduced in brain tissues from AD patients. In contrast, basal [35S]GTP gamma S binding to the G alpha proteins was relatively intact in AD brains. Immunoblot analyses reveal that levels of cerebrocortical G alpha proteins in AD are not altered. The results suggest that in AD the decrease in agonist-stimulated [35S]GTP gamma S binding to G proteins may be a result of decoupling between receptors and their associated G proteins.

Aged↗

Two different signal transduction pathways can be activated by transforming growth factor beta 1 in epithelial cells.

Signal transduction initiated by transforming growth factor beta 1 (TGF beta 1) was studied in two sublines of the same colon carcinoma cell line, which respond in opposite ways to TGF beta 1, by proliferation or by growth inhibition. TGF beta 1 activates ras proteins within 5 min of addition when it acts to inhibit growth but not when it acts as a mitogen. In both cases TGF beta 1 also rapidly modulates the activities of three protein kinases, detected by their in gel kinase activity on the mitogen-activated protein kinase (MAP kinase) substrate, myelin basic protein (MBP). When TGF beta 1 acts as a mitogen for U9 cells, it increases the activity of MBP kinases of 57, 105, and 130 kDa within 10 min of the addition without detectably activating ras proteins. When TGF beta 1 inhibits the growth of HD3 cells, it activates ras proteins and the 57-kDa MBP kinase within 5 min but inhibits the activity of the 105- and 130-kDa MBP kinases. In HD3 cells ras activation occurred in two signal transduction pathways, one from TGF beta 1 leading to growth inhibition and one from epidermal growth factor (EGF) leading to proliferation. In addition to ras proteins, EGF activates a different set of MBP kinases in HD3 cells than does TGF beta 1, MBP kinases of 85, 57, and 44 kDa. The latter is likely to be the 44-kDa MAP kinase extracellular signal-regulated kinase (erk) 1, because EGF treatment of HD3 cells activates erk1 by increasing its phosphotyrosine level. Therefore, in two closely related epithelial cell lines TGF beta 1 activates two different signal transduction pathways, one ras-dependent and one ras-independent, and modulates the activities of a set of MBP kinases.

Calcium-Calmodulin-Dependent Protein Kinases↗

No structural mutation in the dopamine D2 receptor gene in alcoholism or schizophrenia. Analysis using denaturing gradient gel electrophoresis.

OBJECTIVE: To examine the dopamine D2 receptor (DRD2) gene coding sequences for abnormalities associated with schizophrenia or alcoholism and thereby help to resolve the controversy surrounding the reported association of alcoholism with a restriction fragment length polymorphism located close to the DRD2 gene. DESIGN: Mutational analysis of complete DRD2 gene coding sequences by denaturing gradient gel electrophoresis followed by direct nucleotide sequencing of detected variants. SETTING: Patients and controls from clinical and epidemiologic collections in the United States and Europe. PATIENTS: A total of 253 unrelated individuals, including 106 patients with schizophrenia, 113 with alcoholism, and 34 controls. For alcoholism we included patients from previously published series in which an association of illness with allele A1 was reported (Taql site 3' to the DRD2 gene) and from other published series in which nonconfirmations of this association were reported. Nearly all persons examined were white. MAIN OUTCOME MEASURES: Frequency of nonsilent variations in DRD2 gene DNA sequences in the different diagnostic groups. RESULTS: We found three infrequent DNA variants that predict altered amino acid sequence of the receptor. None of these is associated with either alcoholism or schizophrenia. CONCLUSION: No structural coding abnormalities in the DRD2 gene are present in alcoholism or schizophrenia.

Alcoholism↗

Involvement of protein kinase C in the axonal growth-promoting effect on spinal cord neurons by target-derived astrocytes.

Astroglial cells participate in a variety of developmental events during neuronal morphogenesis. We have shown that axonal, but not dendritic, outgrowth of spinal cord neurons can be promoted by a diffusible factor or factors secreted from target region-derived cerebellar astroglia in vitro in comparison with spinal astroglia. In the present study, we examined the involvement of protein kinase C (PKC) in the axon-promoting effect by astroglia. The inhibition of PKC by sphingosine or by the phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA) at high concentration greatly reduced the mean axonal length of spinal neurons cultured in medium conditioned by cerebellar astroglia (SCn-CBg), while activation of PKC by TPA at low concentration, or by retinoic acid, was not additive to the glial effect. The activation of PKC by TPA or retinoic acid promoted axon growth of spinal neurons cultured in medium conditioned by spinal astroglia (SCn-SCg), which otherwise would not be as supportive for axon growth as cerebellar astroglia. Western blotting and PKC activity assays showed that there was a trend for increased PKC activity and protein levels (in particular, PKC beta) in SCn-CBg cultures, which correlated with enhanced axon growth. Inhibition of PKC by sphingosine appeared to decrease protein levels, especially PKC beta, which correlated with suppressed axon outgrowth. In SCn-SCg cultures, phorbol ester activation of PKC increased both activity and protein levels of both PKC alpha and PKC beta. This activation correlated with stimulated axonal outgrowth. These results suggest that the glial signaling that regulates specific axonal outgrowth by target astroglia is mediated in part by the PKC second messenger system.

Animals↗

WT1 mutations in patients with Denys-Drash syndrome: a novel mutation in exon 8 and paternal allele origin.

Denys-Drash syndrome (DDS) is characterized by early onset nephropathy, pseudohermaphroditism in males and a high risk for developing Wilm's tumour (WT). The exact cause of DDS is unknown but germline mutations in the Wilm's tumour suppressor gene (WT1) have recently been described in the majority of DDS patients studied. These mutations occur de novo and are clustered around the zinc finger (ZF) coding exons of the WT1 gene. Analysis of exons 2-10 of the WT1 gene in constitutional DNA from five patients with DDS was carried out using the polymerase chain reaction (PCR) and direct DNA sequencing. In four out of the five patients, heterozygous germline mutations were found: a novel point mutation in exon 8 (ZF2) at codon 377 altering the wild-type histidine to arginine, and three previously described point mutations in exon 9 (ZF3) in the codons corresponding to amino acids 394Arg and 396Asp. In one patient, no mutations could be demonstrated. In three patients where parental DNA was available, the mutations were shown to have occurred de novo. Furthermore, since tumour DNA in two of these cases had lost the wild-type allele, polymorphic markers from the short arm of chromosome 11 were used to determine the parental origin of the mutant chromosome. In both cases, the mutant chromosome was shown to be of paternal origin. Since the majority of published WT1 mutations in DDS patients alter a RsrII restriction site in exon 9, we were able to perform PCR-based diagnosis in a female patient with early renal insufficiency and normal external genitalia.

Alleles↗

Genetic analysis of the catalytic domain of the GAP gene in human lung cancer cell lines.

Cell lines of non-small cell lung cancer (non-SCLC) have been shown to contain activating mutation of the K-ras oncogene in about 30% of cases, whereas no small cell lung cancer (SCLC) cell lines displayed these mutations. Biochemically, these mutations result in the ras gene product (p21) being constitutively activated in its GTP-bound form and insensitive to the hydrolytic action of the ras-specific GTPase-activating protein (ras GAP). We hypothesized that, if tumor development is related to the p21 ras being in the active GTP-bound state, then a similar malignant phenotype may result from an inactivating mutation in the ras GAP gene in the region that interacts with ras p21 (so-called catalytic domain). To test this hypothesis, we screened a panel of SCLC and non-SCLC cell lines for major genetic alterations in the catalytic domain of the GAP gene with the Southern blot technique, and for minor genetic abnormalities (e.g., point mutations) with denaturing gradient gel electrophoresis and single-strand conformation polymorphism. Mutations in the catalytic domain of the GAP gene could not be demonstrated by any technique in any cell line examined. We conclude that mutational inactivation of the catalytic domain of the GAP gene probably does not contribute to the development of lung cancer.

Blotting, Southern↗