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Biomedical subjects

H Matsui

Publications and source records attributed to H Matsui.

At least 325 records · Page 18Linked to original sources

Embryonic transplantation and ischemic memory deficit.

Transient forebrain ischemia is associated with selective neuronal vulnerability and persistent memory deficit. This study compares functional outcome and morphological changes in rats subjected to post-ischemic CA1 or hilus/dentate gyrus region hippocampal fetal transplantation. Ischemia was produced by bilateral common carotid artery occlusion with hypotension. Fetal hippocampal neurons were transplanted into both sides of the CA1 or hilus/dentate gyrus region of the dorsal hippocampus, 1 week post-ischemia. Four weeks post transplantation, the rats underwent behavioral testing for 5 consecutive days using the water maze trial. All animals were perfusion fixed for morphological studies. Transplants in the CA1 region of the dorsal hippocampus were associated with memory and morphological recovery, while grafts placed into the hilus/dentate gyrus region of the dorsal hippocampus were not. Similarly, neurons transplanted in the CA1 region of the dorsal hippocampus were morphologically similar to CA1 pyramidal cell neurons and stained positive with calbindin D(28k). In contrast the grafts transplanted into the hilus/dentate gyrus region of the dorsal hippocampus were morphologically heterogeneous and staining with calbindin D(28k) was not as robust. Post-ischemic transplantation in the CA1 region of the dorsal hippocampus is effective in improving memory and morphological function.

Animals↗

Assessment of the carcinogenicity of stevioside in F344 rats.

The carcinogenic potential of stevioside, a compound that is used as a sweetener for food and drink, was examined in F344 rats of both sexes. Stevioside was added to powdered diet at concentrations of 0 (control), 2.5 and 5%. The doses were selected on the basis of results from a 13-wk subchronic toxicity study and administered to groups of 50 male and 50 female rats ad lib. for 104 wk. All surviving rats were killed at wk 108. Body weight gains were slightly depressed in line with the dose of stevioside, in both sexes, and a significant decrease in the final survival rate was observed for the 5% treated males. Histopathologically, however, there was no significantly altered development of neoplastic or non-neoplastic lesions attributable to the stevioside treatment in any organ or tissue, except for a decreased incidence of mammary adenomas in females and a reduced severity of chronic nephropathy in males. It is concluded that stevioside is not carcinogenic in F344 rats under the experimental conditions described.

Administration, Oral↗

Effects of Ampelopsis brevipedunculata (Vitaceae) extract on hepatic M cell culture: function in collagen biosynthesis.

A spirits-extracted fraction of berries of Ampelopsis brevipedunculata (Maxim.) Trautv. (Vitaceae) is used in Japanese folk medicine to treat liver disease. Since such an extract has been shown to inhibit formation of collagen fibers by rat hepatic M cells, it was felt that the extract acts as an inhibitor of hepatic fibrosis. Amino acid analysis of fibrous substances developing on M cell layers and of a cell lysate fraction indicated that an A. brevipedunculata extract inhibited collagen formation. Biosynthesis of non-collagenous proteins and collagen was evaluated by measuring the extent of [3H]tryptophan incorporation into a protein fraction and the rate of [3H]proline incorporation into a collagenase-digestible fraction, respectively. In contrast to the results of the analysis of the fibrous substances, the A. brevipedunculata extract failed to decrease synthesis of non-collagenous proteins and collagen unless cell proliferation was inhibited. There was no detectable level of collagenolytic activity in the M cell culture with the A. brevipedunculata extract. The decrease in accumulation of collagen, therefore, appeared to be a consequence of the proliferation-inhibitory effect of the A. brevipedunculata extract. Such inhibitory activity was found in a macromolecular fraction that contained abundant sugars but lacked proteins.

Amino Acids↗

Ampelopsis brevipedunculata (Vitaceae) extract stimulates collagen synthesis through superoxide generation in the serum-free cultures of rat dermal fibroblasts and Ito cells.

We describe the effects of an ethanol-extracted fraction of berries of Ampelopsis brevipedunculata (Maxim.) Trautv. (Vitaceae), a plant used in folk medicine to treat liver disease, on the synthesis of non-collagenous proteins and collagen by rat collagen-producible cells such as dermal fibroblasts and liver non-parenchymal Ito cells. The generation of superoxide and hydroxyl radical was assessed by measuring the reduction of cytochrome c and the formation of thiobarbituric acid-reactive substances from deoxyribose, respectively. The synthesis of non-collagenous proteins and collagen as evaluated by measuring the extent of [3H]tryptophan incorporation into a total protein fraction of culture products and the [3H]proline-incorporating rate into a collagenase-digestible protein fraction, respectively. Both types of cells promptly synthesized only collagen in response to a dialyzable fraction of the extract. Major activity to generate oxygen free radicals accumulated in the dialyzable fraction whereas activity to decrease ferrous iron-mediated generation of the radicals accumulated in an undialyzable fraction of the extract. Stimulation of collagen synthesis was caused by superoxide because addition of superoxide dismutase but not pyruvate, an antioxidant of hydrogen peroxide, or dimethyl sulfoxide, an antioxidant of the hydroxyl radical, abrogated the stimulatory effect. The extract may arrest the progress of liver injury mediated by oxygen free radicals generated in the presence of ferrous iron.

Animals↗

Elevated plasma thymosin-alpha1 levels in lung cancer patients.

OBJECTIVE: Prothymosin-alpha, the precursor of thymosin-alpha1, may play a role in cell proliferation, and the plasma level of thymosin-alpha1 may reflect the degree of proliferation of the tumor cells. METHODS: Recently, a new sandwich immunoradiometric assay for thymosin-alpha1 was developed using monoclonal and polyclonal antibodies. In this investigation, we used this assay to measure plasma and tissue level of thymosin-alpha1 in 131 lung cancer patients. RESULTS: We found that the mean plasma thymosin-alpha1 levels in lung cancer patients were higher than in normal individuals (P < 0.001). However, half of the patients showed normal levels. Thymosin-alpha1 levels correlated neither with the stage nor pathological subtype of the lung cancer, and did not decrease significantly in the 4 weeks after the resection of the tumor. Thymosin-alpha1 levels of lung cancer patients with another cancer were higher than those without evidence of other cancers (P = 0.03). Survival of patients with normal levels of plasma thymosin-alpha1 was significantly better than that with higher levels (P = 0.04). CONCLUSIONS: The plasma level of thymosin-alpha1 may be used as a marker for the prognosis of lung cancer patients. Further investigations are warranted to determine its role in the lung cancer.

Adenocarcinoma↗

Nitric oxide induced by tumor cells activates tumor cell adhesion to endothelial cells and permeability of the endothelium in vitro.

Human fibrosarcoma HT1080 cell surface phenotype analysis revealed the expression of "cluster of differentiation 15" (CD15) antigen and to a lesser extent, of "very late antigen-4" (VLA-4). Expression of "endothelial-leukocyte adhesion molecule-1" (ELAM-1) was negligible on resting human umbilical vascular endothelial cells (HUVECs), but its expression could be induced by HT1080 conditioned medium. HT1080 cell adhesion to HUVECs was partially dependent on CD15/ELAM-1 adhesion molecules. HT1080 cell adhesion to HUVECs induced the enhancement of nitric oxide (NO) production from HUVECs. Exogenous NO and NO from HUVECs enhanced ELAM-1 expression on HUVECs, HT1080 cell adhesion to HUVECs, permeability of the HUVEC monolayer, and HT1080 cell invasion through the HUVEC monolayer. These enhancements were not induced by NO synthase inhibitor, N(G)-nitro-L-arginine methyl ester (L-NAME). These results suggest that NO expression induced by tumor cells via the CD15/ELAM-1 adhesion system may contribute to enhancement of tumor cell adhesion to endothelial cells and hyperpermeability of the endothelium, facilitating tumor cell invasion.

Capillary Permeability↗

Prediction of the surgical outcome for the treatment of cervical myelopathy by using hyperbaric oxygen therapy.

The effectiveness of hyperbaric oxygen therapy (HBO) in predicting the recovery after surgery in patients with cervical compression myelopathy was evaluated. HBO has been used to treat brain and spinal cord diseases, but the effect is generally temporary. This is the first paper to utilize HBO as a diagnostic tool to evaluate the functional integrity of the spinal cord. The study group consisted of 41 cervical myelopathy patients aged 32-78 years. Before surgery, the effect of HBO was evaluated and was categorized as four grades. The severity of the myelopathy and the recovery after surgery were evaluated by the score proposed by the Japanese Orthopaedic Association (JOA score). The correlation between many clinical parameters including the HBO effect and the recovery rate of JOA score was evaluated. The recovery rate of JOA score was found to be 75.2 +/- 20.8% in the excellent group, 78.1 +/- 17.0% in the good group, 66.7 +/- 21.9% in the fair group and 31.7 +/- 16.4% in the poor group. There was a statistically significant correlation between the HBO effect and the recovery rate of the JOA score after surgery (r = 0.641, P < 0.0001). The effect of HBO showed a high correlation with the recovery rate after surgery as compared to the other investigated parameters. HBO can be employed to assess the chance of recovery of spinal cord function after surgical decompression.

Adult↗

Evaluation of the prognosis of cancer patients with metastatic bone tumors based on serial bone scintigrams.

We counted the lesions at the time of detection of bone metastases and calculated the rate of increase in the number of bone metastases from changes in serial bone scintigrams, and investigated the usefulness of serial scintigrams as a prognostic indicator in patients with metastatic bone tumors. Subjects were 112 patients with bone metastases from four types of primary lesion: 21 with prostate cancer, 27 breast cancer, 39 lung cancer and 25 stomach cancer. Of these, 18 (prostate), 19 (breast), nine (lung) and eight (stomach) underwent serial bone scintigrams in which bone metastases were first detected and identified as progressing. The numbers of lesions at the time of detection of bone metastases for prostate and stomach cancers were significantly greater than those for lung cancer. The rate of increase in the number of bone metastases for stomach cancer was significantly higher than that for prostate or breast cancers. There was no correlation between the survival time after the detection of bone metastases and the number of lesions at the time of detection in the four types of cancer. However, in prostate cancer, a negative correlation existed between the survival time after the detection of bone metastases and the rate of increase in the number of bone metastases. Thus, in patients with bone metastases from prostate cancer, it appears that the rate of increase in the number of bone metastases, estimated from serial bone scintigrams, was indicative of prognosis.

Adult↗

Expression of the cyclooxygenase-2 gene in gastric epithelium.

This study examined the mRNA level of cyclooxygenase-2 (cox-2) in a rat gastric mucosal cell line after growth stimulation in vitro and in rat gastric mucosa before and after acid-induced injury in vivo. RGMI cells were stimulated with fetal calf serum in the in vitro study. Thereafter, the cox-2 mRNA level was examined by Northern analysis. Effects of NS-398, a specific inhibitor of cox-2, and indomethacin on prostaglandin production and cell proliferation were examined in RGM1 cells. In the in vivo study, rats were given 1 ml of 0.6 N hydrochloric acid into the stomach. The level of cox-2 mRNA was examined in rat gastric mucosa after acid administration. Cox-2 mRNA increased 20-60 min after growth stimulation in RGM1 cells. Both NS-398 and indomethacin suppressed prostaglandin production and cell proliferation after growth stimulation. Expression of cox-2 mRNA was observed 40 and 60 min after administration of 0.6 N HCl. Gastric lesions developed within 60 min after HCl administration and healed significantly within 48 h. The present study shows the expression of cox-2 in gastric epithelial cells in vitro and in gastric mucosa after injury in vivo. The results also suggest that cox-2 is involved in de novo synthesis of prostaglandins and cell proliferation in gastric epithelium.

Animals↗

Monochloramine-induced cell growth inhibition and apoptosis in a rat gastric mucosal cell line.

Recent studies have indicated that monochloramine (NH2Cl), a reaction product of NH3 and hypochlorous acid, is involved in the pathogenesis of Helicobacter pylori-associated gastric mucosal damage, but how NH2Cl contributes to lesions is unclear. In the present study, the effects of NH2Cl on mucosal cell growth and the cell cycle were evaluated in vitro using a normal rat gastric mucosal cell line RGM-1. Cell viability was assessed by the Trypan Blue dye exclusion test and cell cycle patterns were determined by DNA labeling with propidium iodide and flow cytometric quantification. NH2Cl inhibited the growth of RGM-1 cells in a concentration-dependent manner. Exposure of cells to NH2Cl caused a time- and dose-dependent loss of G1-phase cells with accumulation of G2/M-phase cells, and produced a fraction of subdiploid cells with oligonucleosomal DNA degradation characteristic of apoptosis. NH2Cl-induced apoptosis was confirmed by fluorescent microscopy with Hoechst 33342 and propidium iodide. These results suggest that NH2Cl inhibits gastric mucosal cell growth and induces apoptosis in RGM-1 cells, events that may be important in gastric mucosal damage or atrophy induced by H. pylori infection.

Animals↗

Pressure overload per se rather than cardiac angiotensin converting enzyme activity may be important in the development of rat cardiac hypertrophy.

OBJECTIVE: To investigate the roles of the renin-angiotensin system and blood pressure in cardiac hypertrophy caused by a pressure overload. METHODS: Cardiac hypertrophy was induced by constricting the abdominal aorta above the renal arteries. After they had been banded, the rats were treated with the lower (1 mg/kg per day) or the higher (10 mg/kg per day) dose of quinapril [an angiotensin converting enzyme (ACE) inhibitor], or the lower (1 mg/kg per day) or the higher (10 mg/kg per day) dose of TCV-116 [an angiotensin II (AngII) AT1 receptor antagonist], for 4 weeks. Then, we measured the mean blood pressure (MBP), body weight, left ventricular weight (LVW), and serum and cardiac ACE activities. RESULTS: The higher dose of quinapril and that of TCV-116 prevented left ventricular hypertrophy and MBP elevation. Both the higher and the lower doses of quinapril reduced the serum and cardiac ACE activities significantly, whereas the higher dose of TCV-116 reduced the cardiac ACE activity and increased the serum ACE activity. The lower dose of quinapril, however, exerted no significant effect on MBP and the LVW:body weight ratio, although it reduced the cardiac and serum ACE activities significantly. There was a significant positive correlation between the MBP and the LVW:body weight ratio regardless of the cardiac ACE activity in data from all groups (r = 0.676, P < 0.0001). CONCLUSIONS: Our data indicate the importance of the blood pressure as a determinant of cardiac hypertrophy because inhibition of cardiac ACE activity alone without lowering of the blood pressure is insufficient to prevent cardiac hypertrophy. Our results suggest the presence of other pathways for AngII production not mediated by ACE, or growth factors other than AngII in pressure-overload cardiac hypertrophy.

Angiotensin Receptor Antagonists↗

Systemic infection of mice by wild-type but not Spv- Salmonella typhimurium is enhanced by neutralization of gamma interferon and tumor necrosis factor alpha.

The spv genes of the virulence plasmid of Salmonella typhimurium and other nontyphoidal serovars of S. enterica are involved in systemic infection by increasing the replication rate of the bacteria in host tissues beyond the intestines. We considered the possibility that the Spv virulence function is to evade suppression by the host response to infection. To examine this possibility, gamma interferon (IFN-gamma) and/or tumor necrosis factor alpha (TNF-alpha) were neutralized in BALB/c mice by intraperitoneal administration of monoclonal antibodies. Neutralization of IFN-gamma and/or TNF-alpha resulted in increased splenic infection with wild-type salmonellae after oral inoculation; however, Spv- salmonellae were defective at increasing splenic infection in cytokine-depleted mice. The use of a temperature-sensitive marker plasmid, pHSG422, indicated that neutralization of IFN-gamma caused less killing of wild-type S. typhimurium, while neutralization of TNF-alpha resulted in an increased in vivo replication rate for wild-type salmonellae. These results demonstrate that the Spv virulence function is not to evade suppression of bacterial infection normally mediated by IFN-gamma or TNF-alpha.

Animals↗

Sarcoplasmic reticulum and Na+/Ca2+ exchanger function during early and late relaxation in ventricular myocytes.

The relative importance of the Na+/Ca2+ exchanger in the initial and terminal phases of relaxation and the decline in the [Ca2+]i transient was investigated in adult rabbit ventricular myocytes loaded with the Ca2+ indicator fluo 3. For electrically stimulated contractions, the peak intracellular Ca2+ concentration ([Ca2+]i) was 700 +/- 87 nM and end-diastolic [Ca2+]i was 239 +/- 30 nM (0.25 Hz, 37 degrees C, 1.08 mM extracellular Ca2+ concentration; n = 14). Abrupt inhibition of Na+/Ca2+ exchange was produced by removal of extracellular Na+ (KCl substitution) and Ca2+ [2 mM Ca(2+)-free ethylene glycol-bis(beta-aminoethyl either)-N,N,N',N'-tetraacetic acid] by means of a rapid switcher device (SW). Abrupt exposure to high K+ induced an action potential, although sufficient Ca2+ remained adjacent to the sarcolemma to induce a contraction (SW beat) and [Ca2+]i transient that were identical in amplitude to those induced by electrical stimulation (ES beat). The initial relaxation and decline in the [Ca2+]i transient was not significantly prolonged by abrupt elimination of the Na+/Ca2+ exchanger, but the rate and extent of the terminal phase of the decline in the [Ca2+]i transient were significantly reduced. The first derivative of [Ca2+]i with respect to time versus [Ca2+]i during the decline of the [Ca2+]i transient attributable to sarcoplasmic reticulum (SR) function was estimated from the average SW transients, and that attributable to Na+/Ca2+ exchange was estimated from the difference between SW and ES transients. By this analysis, the Na+/Ca2+ exchanger produces 13% of the first half of the decline in [Ca2+]i and 45% of the second half of the decline. We conclude that abrupt inhibition of forward Na+/Ca2+ exchange does not significantly affect the amplitude or the initial rate of decline of the [Ca2+]i transient and relaxation. However, its contribution to the reduction of [Ca2+]i becomes apparent late during the [Ca2+]i transient, when cytosolic [Ca2+]i has been reduced.

Aniline Compounds↗

Effects of 1,25-dihydroxyvitamin D3 on tumor cell invasion to the extracellular matrix in human fibrosarcoma HT1080 cells and its correlation with laminin.

We investigated the role of the active form of vitamin D, 1,25-dihydroxyvitamin D3[1,25(OH)2D3], in promoting tumor cell invasiveness through the extracellular matrix, and showed that 1,25(OH)2D3-induced reduction of laminin production by the cells was correlated with the inhibitory effect of the hormone on tumor cell invasiveness. 1,25(OH)2D3 significantly inhibited invasiveness through the matrix, type IV collagenolytic and migratory activity, but not cell attachment to the matrix in human fibrosarcoma HT1080 cells. The 1,25(OH)2D3-induced inhibition showed the same dose dependency and magnitude for invasiveness as for the effects on type IV collagenolysis and cell migration. 1,25(OH)2D3 inhibited laminin production from the cells in a dose-dependent manner. The inhibitory effects of 1,25(OH)2D3 on the invasiveness, type IV collagenolysis and cell migration appeared to parallel the hormone-induced reduction of laminin production. Antilaminin monoclonal antibody, blocking the activity of laminin in the culture medium, inhibited HT1080 cell invasiveness. In the presence of exogenous laminin, 1,25(OH)2D3-induced inhibition of invasion was not observed. These findings suggest that 1,25(OH)2D3 acts on HT1080 cells, inhibiting the expression of laminin from the cells, and that the reduced laminin expression leads to the inhibition in the type IV collagenolytic and migratory activity of the cells, and consequently, to the inhibition of invasiveness through the extracellular matrix.

Calcitriol↗

Regulation of gelatinase production and invasiveness by organ-specific fibroblasts in high- and low-metastatic clones from murine RCT sarcoma.

Regulation of gelatinase production, invasiveness and migration activity by organ-specific fibroblasts from embryo, subcutaneous and lung tissues of mice were investigated in high-metastatic RCT+ and low-metastatic RCT- clones established from a poorly differentiated murine sarcoma. In the conditioned media of RCT+ cells, mouse skin fibroblasts (MSF) obtained from the tissue of tumor origin (orthotopic) stimulated the production of the 105-kD gelatinase more than C3H/ 10T1/2 clone 8 (C3H/10 T1/2 CL8) or mouse lung fibroblasts (MLF). In the conditioned media of RCT- cells, however, cocultivation with fibroblasts showed only slight stimulatory effects on the production of the 105-kD gelatinase. In the invasion assay, using a reconstituted basement membrane (matrigel), RCT+ cells cocultivated with MSF showed significantly higher invasiveness than those cocultivated with C3H/10T1/2 CL8 or MLF. However, no significant differences were shown in the invasiveness of RCT- cells in cocultivation with three types of fibroblasts and in cultivation without fibroblasts. There was no significant difference in migration activity between RCT+ and RCT- cells cultivated alone. But in the cocultivation of both clones with MSF, the migration activity of RCT+ cells was significantly higher than that of RCT- cells. These findings suggest that MSF might delineate the difference in characteristics related to the metastatic potential of RCT+ and RCT- cells through regulation by organ-specific factors.

Animals↗

Impaired cytosolic Ca2+ response to glucose and gastric inhibitory polypeptide in pancreatic beta-cells from triphenyltin-induced diabetic hamster.

Oral administration of a single dose of triphenyltin compounds induces diabetes with decreased insulin secretion in rabbits and hamsters after 2-3 days without any morphological changes in pancreatic islets. In the present study, to test the possibility that the impaired insulin secretion induced by triphenyltin compounds could result from an impaired Ca2+ response in pancreatic beta-cells, we investigated the effect of triphenyltin-chloride (TPTCl) administration on the changes in the cytoplasmic Ca2+ concentration ([Ca2+]i) induced by secretagogues, such as glucose, high K+, gastric inhibitory polypeptide (GIP), and acetylcholine (ACh) in hamster pancreatic beta-cells. TPTCl administration caused partial suppression in 10 mM K+-induced rise in [Ca2+]i without suppressing the increase in [Ca2+]i evoked by 20-50 mM K+. Administration of TPTCl strongly inhibited the rises in [Ca2+]i induced by 27.8 mM glucose, 100 microM ACh in the presence of 5.5 mM glucose, and by 100 nM GIP in the presence of 5.5 mM glucose. In the ACh-induced response, TPTCl administration strongly suppressed the late sustained phase, while weakly suppressing the initial rise in [Ca2+]i. TPTCl administration significantly suppressed the rise of cAMP content in islet cells induced by 100 nM GIP with 1 mM 3-isobutyl-1-methylxanthine in the presence of 5.5 mM glucose (P < 0.01, N = 5-11). TPTCl administration also impaired the insulin secretion in islet cells induced by 27.8 mM glucose, 100 nM GIP in the presence of 5.5 mM glucose, and 100 microM ACh in the presence of 5.5 mM glucose (P < 0.05, N = 9-16). We conclude that the pathology of triphenyltin-induced diabetes in hamsters involves a defect in cellular Ca2+ response due to a reduced Ca2+-influx through voltage-gated Ca2+ channels.

Acetylcholine↗

Effects of sucralfate and its components on acid- and pepsin-induced damage to rat gastric epithelial cells.

We have established models of cell damage induced by acid and pepsin using rat gastric epithelial cells (RGM1). In the present study, the effects of aluminum hydroxide [Al(OH)3] and potassium sucrose octasulfate (KSOS), which are components of sucralfate, and sucralfate on cell damage and peptic activity of pepsin were examined. Pretreatment of cells with sucralfate (0.1-3 mg/ml) or Al(OH)3 (0.1-1 mg/ml) for 2 hr prevented both acid- (pH 4.0) and pepsin- (pH 4.5) induced cell damage. However, KSOS (0.1-1 mg/ml) did not show any effects on two different types of cell damage. The peptic activity of pepsin at pH 4.5 was about 10% of that at pH 2.0. Sucralfate and KSOS slightly inhibited peptic activity at pH 4.5. Al(OH)3 inhibited peptic activity by approximately 50%; however, no concentration-dependent pattern was observed. Pepstatin (0.003-0.1 mg/ml), a specific inhibitor of pepsin, inhibited the peptic activity in a concentration-dependent manner. Here, we confirmed that sucralfate and Al(OH)3 have cytoprotective effects against acid- and pepsin-induced cell damage. The mechanism behind the cytoprotective effects of sucralfate seems to relate to adhesion of the cell surface and neutralization of hydrogen ion by aluminum that prevents the penetration of hydrogen ions into the cells.

Acids↗

A catalytic amino acid and primary structure of active site in Aspergillus niger alpha-glucosidase.

The catalytic amino acid residue of Aspergillus niger alpha-glucosidase (ANGase) was identified by modification with conduritol B epoxide (CBE), a mechanism-based irreversible inactivator. The inactivation by CBE followed pseudo-first order kinetics. The interaction of CBE and ANGase conformed to a model with a reversible enzyme-inhibitor complex formed before covalent inactivation. A competitive inhibitor, Tris, decreased the inactivation rate. The incorporation of one mole of CBE per mole of ANGase was completely abolished the enzyme activity. A dissociated carboxyl group (-COO-) in the active site was suggested to attack the C-1 of CBE. ANGase was composed of two subunits (P1 and P2), of which P2 was modified by CBE. The labelled residue was included in a peptide (LY3) that was obtained from Lys-C protease digestion of CBE-bound P2. The sequence analysis of CBE-labelled LY3 showed that an Asp was the modified residue, that is, one of the catalytic amino acid residues of ANGase. The primary structure of LY3 was determined by analyzing the sequence of peptide fragments prepared by several proteases.

Amino Acid Sequence↗