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Biomedical subjects

A Wada

Publications and source records attributed to A Wada.

At least 19 recordsLinked to original sources

Identification by site-directed mutagenesis of two lysine residues in cholesterol side chain cleavage cytochrome P450 that are essential for adrenodoxin binding.

Utilizing site-directed mutagenesis and an Escherichia coli expression system for bovine cholesterol side chain cleavage cytochrome P450, lysine residues at 377 and 381 are found to play crucial roles in binding bovine adrenodoxin, required for transfer of electrons to mitochondrial P450s. These lysine residues are conserved among mitochondrial P450s and have been implicated previously by chemical modification studies as being important for adrenodoxin binding. In the present study, site-directed mutagenesis producing either neutral or positive amino acids at 377 or 381 has no effect on the structure of side chain cleavage cytochrome P450 as determined spectrally or on the enzymatic conversion of cholesterol to pregnenolone. However, the estimated Ks of adrenodoxin binding is increased approximately 150-600-fold depending on the particular mutation. Therefore these conserved positively charged residues in mitochondrial P450s are the key sites for adrenodoxin binding which is electrostatic in nature.

Adrenodoxin

Inhibition of nicotinic acetylcholine receptor-mediated secretion and synthesis of catecholamines by sea urchin toxin in cultured bovine adrenal medullary cells.

We previously reported the partial purification and characterization of a toxic substance (sea urchin toxin) isolated from the pedicellariae of the sea urchin Toxopneustes pileolus (Nakagawa and Kimura, Jpn J Pharmacol 32: 966-968, 1982). In the present study, we examined the effect of sea urchin toxin on catecholamine secretion and synthesis in cultured bovine adrenal medullary cells. Sea urchin toxin inhibited the secretion of catecholamines stimulated by carbachol and nicotine but not by veratridine or a high concentration of K+. The toxin inhibited the carbachol-evoked influx of 22Na+ and 45Ca2+ at concentrations similar to those for catecholamine secretion. The inhibition of catecholamine secretion by sea urchin toxin was not overcome by increasing the concentration of carbachol. Preincubation of cells with the toxin caused a time-dependent inhibition in the secretion stimulated by carbachol even when the toxin was removed from the incubation medium. The toxin suppressed catecholamine synthesis and tyrosine hydroxylase activity in carbachol-stimulated cells. In addition, sea urchin toxin inhibited [3H]phencyclidine binding to adrenal medullary cells whereas it did not alter cyclic GMP accumulation caused by muscarine. Further purified fractions from sea urchin toxin by concanavalin A affinity column chromatography also inhibited carbachol-evoked secretion of catecholamines. These results suggest that sea urchin toxin inhibits carbachol-enhanced secretion and synthesis of catecholamines by suppression of nicotinic acetylcholine receptor-mediated Na+ influx and subsequent Ca2+ influx in cultured adrenal medullary cells.

Adrenal Medulla

Establishment and characterization of human uterine leiomyosarcoma heterotransplanted into nude mice.

Human uterine leiomyosarcoma is a rare gynecological malignancy with a generally poor prognosis. We have established a human uterine leiomyosarcoma tumor line in nude mice, designated UTS-1, and describe the characteristics of this tumor. The UTS-1 tumor doubled in 12.1 days and retained the histological characteristics of leiomyosarcoma, even after 14 serial generations. Ultrastructurally, the tumor is characterized by nuclear pleomorphism typical of smooth muscle, intracytoplasmic filaments with dense bodies, a relative paucity of micropinocytotic vesicles, and an incomplete external lamina. Immunohistochemically, the UTS-1 cells reacted with antibodies against vimentin, desmin, smooth-muscle actin and myosin, but not with antibodies against keratin, CEA and S-100 protein. Serum levels of AFP, CA125, CEA and SCC ranged within normal limits in tumor-bearing mice. The serum level of immunosuppressive acidic protein correlated well with an activity of the tumor. Estrogen and progesterone receptors were not detected in the tumor. Chromosomal analysis showed a human karyotype with some marker chromosomes and a modal number of 85 chromosomes. The UTS-1 tumor should prove a useful model to explore the biological characteristics and treatment of human uterine leiomyosarcoma.

Animals

[The role of insulin on renal sodium handling and sympathetic nerve activity in overweight normotensive subjects].

Recently, it was suggested that the role of hyperinsulinemia on the hypertensive mechanism of essential hypertension might be related to renal sodium handling and sympathetic nerve activity, especially in obese hypertensive patients. However, the interrelationship between insulin, obesity, renal sodium metabolism and sympathetic nerve activity in normotensive subjects (NT) still remains unclear. The present study, therefore, was undertaken to clarify the role of insulin on renal sodium handling and sympatho-adrenal function in overweight NT. The study consisted of 24NT, who were divided into two groups of twelve non-obese (NNT) and twelve obese (ONT) subjects. NNT was categorized as a body mass index (BMI) less than, and ONT as a BMI equal to or more than 25kg/m2. In the early morning, after overnight fasting, all subjects remained in a supine state and were examined for renal clearance test. During the two-hour clearance period, mean arterial pressure (MAP), heart rate (HR), endogenous creatinine clearance(CCr), urinary excretion of sodium (UNaV), fractional excretion of sodium (FENa), plasma immunoreactive insulin (IRI), plasma norepinephrine concentration (pNE), and plasma epinephrine concentration (pE) were determined. Although no significant difference was found in age, MAP, HR, pE, CCr or UNaV between the two groups, a significantly higher IRI (p less than 0.05) and lower FENa (p less than 0.05) were observed in ONT than in NNT. There was no significant correlation between IRI and UNaV, FENa or pE in ONT or in NNT. In addition, no significant correlation was shown between FENa and pNE or pE in both groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Medulla

What frontiers for Frontier?

The Human Frontier Science Program is a bold attempt to support the next century's biology research. Its horizons should not be limited.

Biology

Thermodynamic characterization of cytochrome c at low pH. Observation of the molten globule state and of the cold denaturation process.

Several reports have pointed out the existence of intermediate states (both kinetic and equilibrium intermediate) between the native and the denatured states. The molten globule state, a compact intermediate state in which the secondary structure is formed but the tertiary structure fluctuates considerably, is currently being studied intensively because of its possible implication in the folding process of several proteins. We have examined the thermal stability of horse cytochrome c at low pH between 2.0 and 3.2 and different potassium chloride concentrations by absorbance of the Soret band, far and near-ultraviolet circular dichroism (u.v. c.d.) and tryptophan fluorescence using a multidimensional spectrophotometer. The concentration of potassium chloride ranged from 0 M to 0.5 M. The experimental thermal denaturation curves show that: (1) the helical content of cytochrome c remains stable at higher temperature when the concentration of salt is increased; whereas (2) the extent of ordering of the tertiary structure is weakly dependent on salt concentration; and (3) for cytochrome c, the stabilization of the molten globule state is induced by the binding of anions. Other salts such as NaCl, LiCl, potassium ferricyanide (K3Fe(CN)6) and Na2SO4 may also be used to stabilize the molten globule state. The thermodynamic analysis of the denaturation curves of c.d. at 222 nm and c.d. at 282 nm shows that, whereas a two-state (native and denatured) transition is observed at low-salt concentration, the far and near-u.v. c.d. melting curves of cytochrome c do not coincide with each other at high-salt concentration, and a minimum of three different thermodynamic states (IIb, intermediate or IIc, and denatured) is necessary to achieve a sufficient analysis. The intermediate state (called IIc) is attributed to the molten globule state because of its high secondary structure content and the absence of tertiary structure. Therefore, at low pH, cytochrome c is present in at least four states (native, IIb, IIc and denatured) depending on the salt concentration and temperature. The thermodynamic parameters, i.e. the Gibbs free energy differences (delta G), the enthalpy differences (delta H), the midpoint temperatures (Tm) of the transition (IIb in equilibrium intermediate (IIc in equilibrium denatured) are determined. We also give estimates of the heat capacity differences (delta Cp) from the temperature dependence of the enthalpy differences. The enthalpy change and the heat capacity difference of the IIc in equilibrium denatured transition are non-zero. The number of charges (protons or chloride anions) released upon transitions are determined by analysing the pH and chloride anion concentration dependence of the Gibbs free energy.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Promoter selectivity of the stationary-phase forms of Escherichia coli RNA polymerase and conversion in vitro of the S1 form enzyme into a log-phase enzyme-like form.

Upon growth transition of Escherichia coli cells from exponential to stationary phase, RNA polymerase is converted into at least three different forms (S1, S2 and S3), which could be separately isolated by phosphocellulose column chromatography (Ozaki et al., 1991 (2)). Here, the promoter selectivity of these three stationary-phase enzymes was examined using an in vitro mixed transcription system and an E. coli promoter collection. These altered forms of RNA polymerase showed different recognition properties of promoters from that by the log-phase holoenzyme (L1). One of the stationary-phase RNA polymerases, S1, was found to be converted in vitro into an enzyme like the log-phase form following incubation with nucleotides or pyrophosphate. The conversion was indicated by not only the shift of elution position from a phosphocellulose column but also the change in the promoter selectivity. These results may suggest that RNA polymerase is interconvertible between different forms with different promoter selectivity by interaction with a phosphorylated compound(s).

Adenosine Triphosphate

Electrostatic forces in two lysozymes: calculations and measurements of histidine pKa values.

In order to examine the electrostatic forces in globular proteins, pKa values and their ionic strength dependence of His residues of hen egg white lysozyme (HEWL) and human lysozyme (HUML) were measured, and they were compared with those calculated numerically. pKa values of His residues in HEWL, HUML, and short oligopeptides were determined from chemical shift changes of His side chains by 1H-nmr measurements. The associated changes in pKa values in HEWL and HUML were calculated by solving the Poisson-Boltzmann equations numerically for macroscopic dielectric models. The calculated pKa changes and their ionic strength dependence agreed fairly well with the observed ones. The contribution from each residue of each alpha-helix dipole to the pKa values and their ionic strength dependence was analyzed using Green's reciprocity theorem. The results indicate that (1) the pKa of His residues are largely affected by surrounding ionized and polar groups; (2) the ionic strength dependence of the pKa values is determined by the overall charge distributions and their accessibilities to solvent; and (3) alpha-helix dipoles make a significant contribution to the pKa, when the His residue is close to the helix terminus and not fully exposed to the solvent.

Amino Acid Sequence

Veratridine causes the Ca(2+)-dependent increase in diacylglycerol formation and translocation of protein kinase C to membranes in cultured bovine adrenal medullary cells.

Our previous studies suggested that protein kinase C is involved in the veratridine (an activator of voltage-dependent Na+ channels)-induced phosphorylation and activation of tyrosine hydroxylase as well as the synthesis of catecholamines in adrenal medulla (Uezono et al. 1989). In the present study, we investigated whether treatment of cultured bovine adrenal medullary cells with veratridine causes the accumulation of diacylglycerol, a physiological activator of protein kinase C and the translocation of protein kinase C from cytosol to membrane, a process required for protein kinase C activation. Veratridine (100 mumol/l) increased diacylglycerol level about 2.2 fold in a monophasic manner, with peaking at 5 min and declining toward the basal level within 20 min. Veratridine also increased membrane protein kinase C from 15.6% to 26.9% of total protein kinase C in a time-course similar to that of diacylglycerol accumulation. Both stimulatory effects of veratridine were inhibited by tetrodotoxin and not observed in Ca(2+)-free, EGTA-containing medium. Amiloride, an inhibitor of Na+/Ca2+ and Na+/H+ exchange, did not alter veratridine-induced events. These results suggest that veratridine-induced Ca2+ influx contributes to the accumulation of diacylglycerol and the activation of protein kinase C in adrenal medullary cells.

Adrenal Medulla

Compliance of genetic code with base-composition deflecting pressure.

Gene DNAs of different organisms show a wide variation in their G+C content as much as 20% to 80%. This variation has been regarded as the result of the compliance of the genetic code with the base-composition-deflecting mutational pressure. To make possible a quantitative discussion of this genetic code's elasticity, we made a statistical study of the G+C frequency at the 1st, 2nd, and 3rd positions of codons: 4.5 x 10(6) codons in 11,981 protein coding regions in the DNA data base were analyzed. The data were examined quantitatively by using a species-independent universal equation which describes the base frequencies at the three codon sites in terms of the constraint parameters characteristic of the sites and an intersite interaction. By a best fitting procedure between theoretical curves and data points, the constraint parameters and the characteristic G+C contents to which the 1st and the 2nd site base compositions are bound were determined. The base substituting mutation of the coding sequence under the base-composition-deflecting pressure is divided into following three stages of the different compliance from the elastic one to the rigid: 1) the 3rd position of codons change by synonymous substitution; 2) the 1st and then 2nd positions change accompanying amino acid replacement; and 3) in the organisms exposed under an extremely high base composition deflecting pressure, the codon table is forced to be altered. The compliance parameters were derived quantitatively for the first two stages. In conclusion, a simultaneous analysis of data from organisms as divers as virus and man discovered that there is a set of constraints common to species, which governs the frequency of codon bases, and it can be described by a universal equation.

Animals

Potentiation of the humoral response of intravenous antigen by splenotropic liposomes.

We have recently described that large liposomes composed of egg phosphatidylcholine (PC), cholesterol (chol) and monosialoganglioside GM1 show elevated accumulation in the red pulp of the spleen when they are i.v. administered into mice. Up to 50% of the injected dose was found in spleen at 4 h post injection. In this report, we have investigated the potential application of such liposomes in the stimulation of anti-lysozyme response in mice. Lysozyme entrapped in the splenotropic liposomes composed of PC/chol/GM1 showed higher efficiency in potentiating the humoral response than that of either free lysozyme or lysozyme entrapped in hepatotropic liposomes composed of PC/chol. The results demonstrate that high levels of i.v. antigen delivery by liposomes to the splenic macrophage instead of the liver Kupffer cells is important in the liposomal adjuvanticity. The antibody elicited by the liposome entrapped antigen was mainly IgG1 subtype.

Animals

Cell-cell contact modulates expression of cell adhesion molecule L1 in PC12 cells.

The effect of cell contact on the expression of cell adhesion molecule L1 was investigated. The rat pheochromocytoma cell line PC12 cells were cultured at various densities in the presence or absence of the nerve growth factor. The addition of the nerve growth factor promoted the expression of L1. The expression of L1 was higher when the cells were cultured at high density than when done at low density both in the presence or absence of the nerve growth factor. Immunohistochemical staining of L1 showed that the expression of L1 was higher in the cells contacting each other. These results show that cell interaction affects the expression of cell adhesion molecule L1 in the PC12 cells.

Animals

Uncoupling of atrial natriuretic peptide extraction and cyclic guanosine monophosphate production in the pulmonary circulation in patients with severe heart failure.

OBJECTIVES: This study was designed to evaluate the role of endogenous atrial natriuretic peptide in the pulmonary circulation in patients with chronic heart failure. BACKGROUND: Plasma atrial natriuretic peptide concentrations in patients with heart failure have been reported to be higher than those in normal subjects and to increase as the severity of heart failure progresses. Although endogenous atrial natriuretic peptide is thought to improve the condition of patients with heart failure by reducing preload and afterload, recent findings have indicated that a high plasma atrial natriuretic peptide level is a prognostic predictor in patients with heart failure. METHODS: To evaluate the pathophysiologic role of endogenous atrial natriuretic peptide in the pulmonary circulation, plasma atrial natriuretic peptide and cyclic guanosine monophosphate (cGMP) levels were determined in the main pulmonary artery and pulmonary capillary wedge region in 80 patients with chronic congestive heart failure (New York Heart Association functional classes II to IV). RESULTS: The plasma atrial natriuretic peptide level decreased significantly from the main pulmonary artery to the pulmonary capillary wedge region, whereas the plasma cGMP level increased significantly from the main pulmonary artery to the pulmonary capillary wedge region. In patients with mild chronic heart failure (n = 50), the plasma atrial natriuretic peptide level correlated with the cGMP level in the main pulmonary artery (gamma = 0.71, p less than 0.001). The atrial natriuretic peptide extraction level, calculated as (Atrial natriuretic peptide in the main pulmonary artery--Atrial natriuretic peptide in the pulmonary capillary wedge region) x Cardiac output x (1-hematocrit/100) (ng/min), also correlated with the cyclic guanosine monophosphate production level, calculated as (cGMP in the pulmonary capillary wedge region--cGMP in the main pulmonary artery) x Cardiac output x (1-hematocrit/100) (nmol/min) (gamma = 0.78, p less than 0.001). In contrast, such correlations were not found in patients with severe chronic heart failure (n = 30). In these patients, the atrial natriuretic peptide extraction level was significantly higher but there was no significant difference in the cGMP production level between the two groups (mild and severe chronic heart failure). Therefore, the molar ratio of cGMP production to atrial natriuretic peptide extraction in the pulmonary circulation was significantly lower in patients with severe chronic heart failure (88 +/- 16 vs. 480 +/- 41, p less than 0.001). CONCLUSIONS: These results indicate that down-regulation of atrial natriuretic peptide receptors coupled to guanylate cyclase may occur in the pulmonary vascular beds of patients with severe chronic heart failure.

Adolescent

Glycoprotein receptors for a heat-stable enterotoxin (STh) produced by enterotoxigenic Escherichia coli.

Glycoprotein receptors for heat-stable enterotoxin STh of enterotoxigenic Escherichia coli in the rat intestinal cell membrane were identified and characterized. Incubation of rat intestinal cell membranes with radioiodinated N-5-azidonitrobenzoyl-STh[5-19] (125I-ANB-STh[5-19]) followed by photolysis resulted in specific radiolabeling of two distinct proteins with M(r)s of 200,000 (designated STR-200A and STR-200B). STR-200A was found to be composed of two molecules of a protein with an M(r) of 70,000 (70-kDa protein), whereas STR-200B was composed of two different protein molecules with M(r)s of 53,000 (53-kDa protein) and 77,000 (77-kDa protein). These proteins showed no guanylate cyclase activity. The 70-kDa protein was labeled most with 125I-ANB-STh[5-19], suggesting that STR-200A is the main receptor protein in the rat intestinal cell membrane. The carbohydrate moieties of STR-200A and STR-200B were examined by enzymatic deglycosylation. The 70-kDa protein of STR-200A was found to contain N-linked high-mannose-type and/or hybrid-type oligosaccharides, and results suggested that it possesses at least three N glycosylation sites. The 53-kDa protein of STR-200B was found to have an N-linked complex-type oligosaccharide side chain. The deglycosylated 70-kDa protein retained activity for binding to STh, suggesting that the carbohydrate moieties of these receptor proteins are not important for binding with STh.

Animals

Induction of E1A-responsive negative factors for transcription of the fibronectin gene in adenovirus E1-transformed rat cells.

The level of fibronectin (FN) gene expression is very high in resting rat 3Y1 cells but greatly decreased in adenovirus E1-transformed cells. To study the mechanism of this down-regulation, nuclear factors binding to the 5'-flanking region of the FN gene were analyzed by gel retardation assay and DNase I footprinting. Nuclear factors that were present in the transformed cells but nearly absent in resting 3Y1 cells interacted with multiple sites of the promoter region. Oligonucleotide competition with the FN promoter-chloramphenicol acetyltransferase (CAT) reporter constructs (pFCAT) for these factors in the transformed cells indicated that all of them had a negative effect on FN gene expression. Of them, a factor(s) (G10BP) binding to the G10 stretch from positions -239 to -230 and to two GC boxes consisting of the G10 stretch with one internal C residue insertion from positions -105 to -95 and -54 to -44 had the strongest repressive activity. Introduction of substitutive mutations into these G-rich sequences resulted in the increase in CAT activity of pFCAT in the transformed cells. The recognition sequences of G10BP and Sp1 overlap in two GC boxes. G10BP has stronger affinity for heparin and GC boxes than does Sp1, suggesting that G10BP may repress FN gene transcription by displacing Sp1.

Adenoviridae

Limitations of compensation by endogenous atrial natriuretic peptide in heart failure.

To evaluate the role of endogenous atrial natriuretic peptide (ANP) in patients with congestive heart failure (CHF), the relationship between plasma ANP and cyclic guanosine monophosphate (cGMP) levels and the prognosis of patients with CHF was examined. In patients with chronic mild to moderate CHF, there was a positive correlation between plasma ANP and cGMP levels (r = 0.81, p less than 0.001). However, there was no significant correlation between these plasma levels in patients with chronic severe CHF, in whom the cGMP concentration reached a plateau in spite of high levels of ANP. The ANP extraction level and the cGMP production level in the pulmonary and systemic circulation correlated significantly in patients with mild CHF. In contrast, there was no significant correlation between the 2 parameters in patients with severe CHF, and the molar ratios of cGMP production to ANP extraction in the pulmonary and systemic circulation were significantly lower than those in patients with mild CHF. In 44 patients with chronic severe CHF who were followed up over 2 years, plasma ANP levels provided more sensitive and specific prognostic information than any other parameters. These results indicate that ANP receptors coupled to guanylate cyclase may be down-regulated in patients with chronic severe CHF, suggesting that high plasma ANP levels as a prognostic predictor may be associated with limitations of compensation by endogenous ANP.

Atrial Natriuretic Factor

Evaluation of hemodialysis efficiency by an edema fluid model.

The concentrations of urea, creatinine, and uric acid were measured in edema fluid and plasma during hemodialysis and 18 h after hemodialysis. The concentrations of these solutes in plasma were 15-17% lower than in the edema fluid after hemodialysis. Eighteen hours after hemodialysis, however, the concentrations in plasma were almost the same as those in edema fluid. These data suggest that the removal of these solutes from the extracellular space is delayed during hemodialysis. The plasma concentrations obtained at 18 h after hemodialysis are better indicators of hemodialysis efficiency.

Adult