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Biomedical subjects

K Mihashi

Publications and source records attributed to K Mihashi.

At least 19 recordsLinked to original sources

Antitumor agents. 169 Dysoxylum cumingianum. V. Cumingianosides P and Q, new cytotoxic triterpene glucosides with an apotirucallane-type skeleton from Dysoxylum cumingianum.

Detailed chemical studies on the cytotoxic fraction from the leaves of Dysoxylum cumingianum have resulted in the isolation of two new triterpene glucosides, cumingianosides P (18) and Q (19), with an apotirucallane-type skeleton. The structures of 18 and 19 were determined by spectral examinations, and by conversion of cumingianosides C (3) and A (1) into 18 and 19, respectively. The cytotoxicities of cumingianosides P and Q against over 50 human cancer cell lines were evaluated. Cumingianoside P exhibited significant (EC50 < 4 microM) cytotoxicity against 37 human cancer cell lines. Among them, the UO-31 (renal cancer) cell line was the most sensitive to this compound (EC50 0.267 microM). In contrast, cumingianoside Q showed selective cytotoxicity against NCI-H522 (non-small cell lung cancer) cells with an EC50 value of 1.67 microM, and exhibited no cytotoxicity (EC50 > 10 microM) against most of the remaining cancer cell lines.

Antineoplastic Agents, Phytogenic

Antitumor agents. 168. Dysoxylum cumingianum. IV. The structures of cumingianosides G-O, new triterpene glucosides with a 14,18-cycloapotirucallane-type skeleton from Dysoxylum cumingianum, and their cytotoxicity against human cancer cell lines.

Nine new triterpene glucosides, named cumingianosides G-O (4-7, 9, 12-15), containing a 14,18-cycloapotirucallane-type skeleton were isolated from a cytotoxic fraction of the leaves of Dysoxylum cumingianum. The structures of the new compounds were established on the basis of chemical and spectral examinations. Evaluation of the cytotoxic activity of cumingianosides G-O showed that cumingianoside M exhibited significant (< 4 microM) cytotoxicity, especially against leukemia and melanoma cell lines.

Antineoplastic Agents, Phytogenic

Mutual sensitization of ATP and GTP in driving F-actin on the surface-fixed H-meromyosin.

Using an in vitro motility assay on acto-H-meromyosin, we studied the sliding velocity of an actin filament driven by two kinds of H-meromyosin heads: H-meromyosin head with ATP bound (fast motor) and with GTP bound (slow motor). We found a significant increase in the sliding velocity owing to the coexistence of the fast motor and the slow motor. This phenomenon may give an important suggestion with regard to the integration over multiple interactions of H-meromyosin heads along the actin filament.

Actins

Compressibility and specific volume of actin decrease upon G to F transformation.

We measured the densities as well as the sound velocities in solutions of G-actin, F-actin and the reconstituted thin filament. Using the data obtained, we determined their partial specific volumes and partial specific adiabatic compressibilities. The objectives were to investigate the volume change of actin upon polymerization and to detect the conformational change associated with the ca2+-binding to the reconstituted thin filament. The partial specific volume and the partial specific adiabatic compressibility of G-actin were 0.749 cm3/g and 9.3 x 10(-12) cm2/dyne, respectively. The results suggest that G-actin is a rather soft protein compared with other globular proteins. The partial specific volumes of F-actin were in a range of 0.63 -0.66 cm3/g depending on the solvent conditions. The partial specific adiabatic compressibilities of F-actin were negative (-(7-13) x 10(-12) cm3/dyne). These data indicate that the amount of hydration may increase by several times upon polymerization assuming that the size of the cavity remains constant. We detected little difference between the partial specific adiabatic compressibility of the reconstituted thin filament in a Ca2+-bound state and that in a Ca2+-unbound state. This suggests that the Ca2+ binding affected not the subunit itself but the inter-subunit junction.

Actin Cytoskeleton

Effects of subtilisin cleavage of monomeric actin on its nucleotide binding.

The kinetics of ATP exchange on subtilisin-cleaved G-actin was investigated by measuring the fluorescence of 1,N6-ethenoadenosine 5'-triphosphate. The apparent dissociation rate of ATP (k-ATP) was 2.8-fold larger than that of intact G-actin in the presence of 300 microM free Ca2+. Analysis of the dependence of k-ATP on free Ca2+ showed that the dissociation rate constant of tightly bound Ca2+ was not significantly changed by subtilisin cleavage. On the other hand, an equilibrium binding study using 8-amino-2-[(2-amino-5-methylphenoxy)-methyl]-6-methoxyquinoline N,N,N',N'-tetraacetic acid (Quin 2) showed that the affinity of tightly bound Ca2+ for G-actin was reduced by about 13-fold after subtilisin treatment. Consequently, the stabilization by Ca2+ of ATP was weak in cleaved G-actin. Furthermore, the kinetic analysis of ATP exchange revealed that the binding equilibrium between ATP and divalent cation-free cleaved G-actin was much slower than that in the case of intact G-actin.

Actins

Antitumor agents, 157. Absolute structures of cumingianosides A-F, antileukemic triterpene glucosides, and structures of the hydrolysates of cumingianoside A.

The stereostructures of cumingianosides A-F, a series of triterpene glucosides with a 14,18-cycloapoeuphane skeleton, have been established by X-ray crystallographic analysis on an aglycone [1c] the acid hydrolysate of cumingianoside A [1], which is a potent cytotoxic triterpene against MOLT-4 human leukemia cells with an EC50 value of < 0.00625 microM. The 14,18-cyclopropane ring in cumingianoside A [1] was opened under acidic conditions in two different directions to give compounds with an apoeuphane skeleton and a dammarane skeleton. Furthermore, it was found that subsequent hydrolysis yielded not only an aglycone with an apoeuphane skeleton [1c] but also an apo-rearrangement product [1d].

Antineoplastic Agents, Phytogenic

Anti-AIDS agents. 15. Synthesis and anti-HIV activity of dihydroseselins and related analogs.

Forty-two dihydroseselins based on the structure of suksdorfin (1) were synthesized in order to evaluate their anti-HIV activity. These synthetic derivatives include 3',4'-di-O-acyl- and 3'- or 4'-O-acyl-cis-dihydroseselins (8-21) and 3',4'-trans-dihydroseselins with O-acyl and/or O-alkyl groups at the 3' and 4' positions (6, 22-43). Two 4'-azido (44, 45) and three 4'-alkylamido (46, 48, 49) derivatives were also prepared. By using optically pure reagents, three pairs of diastereoisomers were synthesized and separated as optically pure compounds (14, 15; 16, 17; 38, 39). Together with the above synthetic derivatives, seselin (3) and (+/-)-cis-(4), (+)-cis- (5), and (+/-)-trans-dihydroseselin-3',4'-diol (7) were also tested for their in vitro anti-HIV activity. An optically pure compound, 3',4'-di-O-(-)-camphanoyl-(+)-cis-khellactone (16), showed potent inhibitory activity and remarkable selectivity against HIV replication. The EC50 value and in vitro therapeutic index (TI) of 16 are 4 x 10(-4) microM and 136,719, respectively, which are better than those shown by AZT in the same assay. In addition, compound 16 is also active against HIV replication in a monocytic cell line and in peripheral blood mononuclear cells (PBMCs). Our in vitro assay indicated that, like compound 1, compound 16 is not an inhibitor of HIV-1 reverse transcriptase. Moreover, the anti-HIV activity of 16 is stereoselective as its three diastereoisomers (17, 38, 39) are at least 10,000 times less active. Since other synthetic dihydroseselin derivatives with different substituents or without any substituents are inactive or are active only at much higher concentration, the antiviral potency of 16 could be associated with the camphanoyl moieties of its structure. Therefore, compound 16 represents a unique coumarin structure with promising anti-HIV activity.

Acquired Immunodeficiency Syndrome

Adiabatic compressibility of myosin subfragment-1 and heavy meromyosin with or without nucleotide.

The partial specific adiabatic compressibilities of myosin subfragment-1 (S1) and heavy meromyosin (HMM) of skeletal muscle in solution were determined by measuring the density and the sound velocity of the solution. The partial specific volumes of S1 and HMM were 0.713 and 0.711 cm3/g, respectively. The partial specific adiabatic compressibilities of S1 and HMM were 4.2 x 10(-12) and 2.9 x 10(-12) cm2/dyn, respectively. These values are in the same range as the most of globular proteins so far studied. The result indicates that the flexibility of S1 region almost equals to that of HMM. After binding to ADP.orthovanadate, S1 and HMM became softer than their complexes with ADP. The bulk moduli of S1 and HMM were of the order of (4-6) x 10(10) dyn/cm2, which are very comparable with the bulk modulus of muscle fiber.

Adenine Nucleotides

Binding mode of cytochalasin B to F-actin is altered by lateral binding of regulatory proteins.

The binding of cytochalasin B (CB) to F-actin was studied using a trace amount of [3H]-cytochalasin B. F-Actin-bound CB was separated from free CB by ultracentrifugation and the amount of F-actin-bound CB was determined by comparing the radioactivity both in the supernatant and in the precipitate. A filament of pure F-actin possessed one high-affinity binding site for CB (Kd = 5.0 nM) at the B-end. When the filament was bound to native tropomyosin (complex of tropomyosin and troponin), two low-affinity binding sites for CB (Kd = 230 nM) were created, while the high-affinity binding site was reserved (Kd = 3.4 nM). It was concluded that the creation of low-affinity binding sites was primarily due to binding of tropomyosin to F-actin, as judged from the following two observations: (1) a filament of F-actin/tropomyosin complex possessed one high-affinity binding site (Kd = 3.9 nM) plus two low-affinity binding sites (Kd = 550 nM); (2) the Ca2(+)-receptive state of troponin C in F-actin/native tropomyosin complex did not affect CB binding.

Actins

High-affinity binding of cytochalasin B to the B-end of F-actin loses its inhibitory effect on subunit exchange when the bound nucleotide is ADP.

We investigated the mode of binding of cytochalasin B (CB) to F-actin in an ADP-solution with and without inorganic phosphate (Pi). In the presence of Pi (20 mM), a filament of F-actin had a single high-affinity CB binding site (Kd = 1.4 nM), just like in the case of an ATP-solution [Kd = 5.0 nM: Suzuki, N. & Mihashi, K. (1991) J. Biochem. 109, 19-23]. But in the absence of Pi, there were two low-affinity (Kd = 200 nM) CB binding sites as well as one high-affinity site (Kd = 1.6 nM). We determined the concentration of CB necessary for half-maximal inhibition of growth or shortening of F-actin (Ki) using of pyrene-labeled actin. We obtained Ki = 80 nM for growth and Ki = 800 nM for shortening in the presence of ATP. The addition of Pi to the ATP-solution reduced Ki for growth to 9 nM. We propose a model explaining these results. In the model, high-affinity CB binding to the terminal subunit dimer can inhibit subunit exchange at the B-end only when the terminal subunits bind ATP or ADP.Pi. When the terminal subunits bind ADP, additional low-affinity CB bindings to the terminal subunits are needed to inhibit the subunit exchange.

Actins

Evidence for the existence of two equilibrium conformations of the ternary complex of myosin subfragment-1, ADP, and orthovanadate.

In order to investigate the flexibility of the ternary complex consisting of myosin subfragment-1 (S1), ADP, and orthovanadate (Vi), i.e., S1.ADP.Vi, the exchangeability of the bound ADP was examined. After isolation of the ternary complex of S1.ADP.Vi by gel filtration, 3'-O-(N-methylanthraniloyl)-ADP (Mant-ADP), a fluorescent analogue of ADP, was added at 0.5 degrees C. The added Mant-ADP was incorporated into the ternary complex very slowly by replacing the bound ADP. The nucleotide exchange occurred without regeneration of the ATPase activity of S1. Similarly, the ternary complex of S1.Mant-ADP.Vi prepared and isolated by gel filtration according to Hiratsuka (3, 4), was incubated with ADP (2.4 mM) at 4.5 degrees C. The nucleotide exchange of S1.Mant-ADP.Vi with ADP occurred in two phases with the apparent rates of 4.5 x 10(-4) s-1 (the fast phase) and 6.7 x 10(-6) s-1 (the slow phase). Biphasic exchange of the bound nucleotide was also observed with S1(A1) isozyme, indicating that the biphasic exchange did not correspond to two S1 isozymes. The apparent rates of the fast and the slow phases increased with the concentration of the added ADP, but they became saturated at an ADP concentration of the order of 2 mM, indicating that the nucleotide exchange reaction involves a step (or steps) which is insensitive to the concentration of free ADP in the solution. This step might be a reversible isomerization.

Adenosine Diphosphate

Subunit flow in F-actin under steady-state conditions. Application of a novel method to determination of the rate of subunit exchange of F-actin at the terminals.

We developed a novel method to determine the subunit exchange rates of F-actin at its terminals under quasi-steady-state conditions by using a powerful fluorescent probe, N-(1-pyrenyl)iodoacetamide. The applicability of the method was checked with regard to both theoretical and experimental aspects. We determined the rates of subunit exchange of F-actin and F-actin-tropomyosin complex under various ionic conditions. We found that: (i) KCl accelerated both on and off rates at each end, and lowered the critical concentration of the P-end while the critical concentration of the B-end was not affected; (ii) binding of tropomyosin drastically reduced the subunit flow in F-actin by suppressing the off rate principally of the P-end. It is therefore believed that tropomyosin exerts an anisotropic constraint on F-actin and regulates its dynamic polarity.

Actins

Ca2+-dependent regulation of the dynamic polarity of F-actin under the influence of tropomyosin and troponin.

A novel method that we have developed in the preceding paper to study the subunit exchange rates of F-actin (N. Suzuki and K. Mihashi, Biophys. Chem. 33 (1989) 177) was applied to regulated F-actin (a complex of F-actin, tropomyosin and troponin). We found that the dynamic polarity of regulated F-actin is modulated in a Ca2+-dependent manner, giving rise to strong suppression of the on/off rates of subunit exchange at the P-end. We interpreted this characteristic suppression as follows. Removal of Ca2+ from troponin C in regulated F-actin produces strong constraints on fluctuations in potential energy of an intermediate conformation of the terminal structure (P-end) which would be formed in the course of association and dissociation of the actin subunit.

Actins

The excimer fluorescence of N-(1-pyrenyl)iodoacetamide labeled to myosin and its subfragment 1.

Myosin and its subfragment 1 were labeled with the fluorescent probe N-(1-pyrenyl)iodoacetamide. Both of the labeled complexes exhibited the excimer band at 480 nm (pH 8.0, 25 degrees C). SH1 and SH2 are labeled with this probe as judged by Ca2+-ATPase of the labeled complex. Excimers arise both from the interaction of PIAAs in the two different heads within a single myosin molecule and also from the interaction of PIAAs in the same head. ATP affects these excimers depending on the concentration of Ca2+.

Adenosine Triphosphate

Torsional motion of eosin-labeled F-actin as detected in the time-resolved anisotropy decay of the probe in the sub-millisecond time range.

The internal motion of F-actin in the time range from 10(-6) to 10(-3) second has been explored by measuring the transient absorption anisotropy of eosin-labeled F-actin using laser flash photolysis. The transient absorption anisotropy of eosin-F-actin at 20 degrees C has a component that decays in the submicrosecond time scale to an anisotropy of about 0.3. This anisotropy then decays with a relaxation time of about 450 microseconds to a residual anisotropy of about 0.1 after 2 ms. When the concentration of eosin-F-actin was varied in the range from 7 to 28 microM, the transient absorption anisotropy curves obtained were almost indistinguishable from each other. These results show that the anisotropy decay arises from internal motion of eosin-F-actin. Analysis of the transient absorption anisotropy curves indicates that the internal motion detected by the decay in anisotropy is primarily a twisting of actin protomers in the F-actin helix; bending of the actin filament makes a minor contribution only to the measured decay. The torsional rigidity calculated from the transient absorption anisotropy is 0.2 X 10(-17) dyn cm2 at 20 degrees C, which is about an order of magnitude smaller than the flexural rigidity determined from previous studies. Thus, we conclude that F-actin is more flexible in twisting than in bending. The calculated root-mean-square fluctuation of the torsional angle between adjacent actin protomers in the actin helix is about 4 degrees at 20 degrees C. We also found that the torsional rigidity is approximately constant in the temperature range from 5 to approximately 35 degrees C, and that the binding of phalloidin does not appreciably affect the torsional motion of F-actin.

Actins

Structure determination of polysaccharides in Aloe saponaria (Hill.) Haw. (Liliaceae).

Neutral polysaccharides that inhibit carrageenin-induced edema in rats were isolated from the nondialysate of the pulp of Aloe saponaria by gel filtration. These were shown to be a linear polymer of a 1,4-linked beta-D-mannopyranose (mol. wt. 15,000) containing 18% acetyl groups (As mannan 1), and a 1,4-linked alpha-D-mannopyranose polymer containing a single branch on the principal chain consisting of D-glucose residues linked at C-2 and C-4 (mol. wt. 66,000), with 10% acetyl groups (As mannan 2). As mannan 1 inhibited carrageenin-induced hind paw edema at 50 mg/kg ip in rats; As mannan 2 was not tested for pharmacological activity. A crude preparation of both As mannans was effective when given intraperitoneally, but was ineffective when given orally.

Aloe

Ca-dependent regulation of the subunit exchange of F-actin under the influence of tropomyosin and troponin.

A quasi-steady state rate of actin subunit incorporation into a complex of F-actin, tropomyosin, and troponin was studied in a solution containing MgCl2 0.5 mM, ATP 0.2 mM, Tris-HCl 5 mM (pH 8.0), and either CaCl2 64 muM or EGTA 644 muM at 33 degrees C by adding a small amount (less than 1 muM) of fluorescence-labeled actin monomer. Incorporation of the labeled actin monomer was remarkably much slower in the presence of EGTA, but the rate recovered instantaneously upon addition of an excess amount of CaCl2. The rate was very much reduced by the presence of cytochalasin D (1 muM) and again showed Ca-dependence.

Actins

Conservation, restoration and rehabilitation of voice in treating patients with carcinoma of the larynx. A 10-year review of 244 patients.

We reviewed clinical records of 244 patients with carcinoma of the larynx treated during the 10 years from 1971 to 1980 in the Department of Otolaryngology, Kurume University Hospital. Of the 244 patients, 111 patients (45.5%) were treated with their voice conserved and 133 underwent total laryngectomy. In the latter, information on the modality of speech communication was obtained from 73 patients. Forty-nine (67%) of these 73 patients was able to speak by some means but the remaining 24 (33%) had no means to speak.

Adult