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Biomedical subjects

W Yoshikawa

Publications and source records attributed to W Yoshikawa.

12 recordsLinked to original sources

MR imaging of clear cell carcinoma of the ovary.

Magnetic resonance imaging findings are reported for 12 pathologically proven lesions of clear cell carcinoma (CCC) of the ovary in 11 women (mean age 50 years). T1- and T2-weighted MR images were obtained in all patients, and gadolinium-enhanced MR images were obtained in 9. The mean diameter of the tumors was 13 cm. Seven patients presented with stage-I tumors. All 12 lesions consisted of cystic masses with solid protrusions occurring in 10 and solid masses in 2. The cysts were unilocular in 9 lesions and multilocular in 1. In four lesions, the cysts displayed with high intensity on T1-weighted images. Round solid protrusions were identified in 8 lesions. In 5 lesions, the number of protrusions was only a few. The solid portions of 5 masses had slightly high-intensity regions on T1-weighted images. The number of patients with ascites was three. Magnetic resonance imaging of CCC usually shows a unilocular large cyst with solid protrusions, which are often round and few in number. Such MR imaging findings suggest malignant tumor but are not specific.

Adenocarcinoma, Clear Cell↗

Characterization of free alpha- and beta-chains of recombinant macrophage-stimulating protein.

Human serum macrophage-stimulating protein (MSP) induces motile activity of murine resident peritoneal macrophages and is a growth and motility factor for epithelial cells. It belongs to the plasminogen-related family of kringle proteins, and is secreted as a single-chain, 78-kDa, biologically inactive pro-MSP. Proteolytic cleavage of pro-MSP at a single site yields active MSP, a disulfide-linked alphabeta-chain heterodimer. However cleavage of recombinant pro-MSP yielded not only the disulfide-linked heterodimer, but also free alpha- and beta-chains, indicating that some of the recombinant molecules lacked an alphabeta-chain disulfide. We purified the free chains for characterization. The beta-chain of MSP has three extra cysteines, Cys527, Cys562, and Cys672, which are not found in the plasminogen beta-chain. Disulfide bond analysis showed a Cys527-Cys562, but also a Cys588-Cys672. Coopting Cys588 by Cys672 prevented the expected formation of a disulfide between alpha-chain Cys468 and beta-chain Cys588. Concomitant studies determined structures of oligosaccharides at the three Asn-linked glycosylation sites of MSP. The oligosaccharides at the three Asn loci are heterogeneous; 11 different sugars were identified, all being sialylated fucosyl biantennary structures. We also located the pro-MSP signal peptide cleavage site at Gly18-Gln19 and the scissile bond for formation of mature MSP at Arg483-Val484.

Amino Acids↗

MR findings in degenerated ovarian leiomyoma.

Leiomyoma is one of the rarest solid tumours of the ovary. We report a case of a degenerated ovarian leiomyoma associated with pregnancy. MR findings are identical to those of degenerated uterine leiomyoma and it is difficult to differentiate between them. Ovarian leiomyoma should therefore be included in the differential diagnosis of subserosal uterine leiomyoma.

Adult↗

Macrophage stimulating protein (MSP) binds to its receptor via the MSP beta chain.

Macrophage stimulating protein (MSP) is a 78-kDa disulfide-linked heterodimer belonging to the plasminogen-related kringle protein family. MSP activates the RON receptor protein-tyrosine kinase, which results in cell migration, shape change, or proliferation. A structure-activity study of MSP was performed using pro-MSP, MSP, MSP alpha and beta chains, and a complex including the first two kringles and IgG Fc (MSP-NK2). Radioiodinated MSP and MSP beta chain both bound specifically to RON. The Kd of 1.4 nM for MSP beta chain is higher than the reported Kd range of 0.6-0.8 nM for MSP. Pro-MSP, MSP alpha chain, and MSP-NK2 did not bind. Only MSP stimulated RON autophosphorylation. Although the beta chain bound to RON and partially inhibited MSP-induced RON phosphorylation in kidney 293 cells, it did not induce RON phosphorylation. Pro-MSP, MSP alpha chain, or MSP-NK2 failed to activate RON, consistent with their inability to bind to the RON receptor. Functional studies showed that only MSP induced cell migration, and shape change in resident macrophages, and growth of murine keratinocytes. Our data indicate that the primary receptor binding domain is located in a region of the MSP beta chain, in contrast to structurally similar hepatocyte growth factor, in which the receptor binding site is in the alpha chain. However, full activation of RON requires binding of the complete MSP disulfide-linked alphabeta chain heterodimer.

3T3 Cells↗

[Contrast enhanced CT].

Although CT is one of major diagnostic imaging methods, the role of CT in the detection and diagnosis of early carcinomas depends on the organ and character of the tumors. Because difference in attenuation between lung parenchyma and carcinomas is large, contrast enhanced CT is not effective to diagnose early lung carcinoma. However, difference in attenuation between parenchyma and tumor is small and change of the contour of the organ is not seen in many cases of small carcinomas in the liver, pancreas and kidneys, therefore helical (spiral) CT with contrast enhancement has markedly improved the diagnostic capability of small carcinomas in these organs. In the biliary tract, bladder, uterus and prostate small carcinomas can not be detected even on enhanced helical CT.

Bile Duct Neoplasms↗

The three-dimensional structure of guanine-specific ribonuclease F1 in solution determined by NMR spectroscopy and distance geometry.

Two-dimensional 1H-NMR studies have been performed on ribonuclease F1 (RNase F1), which contains 106 amino acid residues. Sequence-specific resonance assignments were accomplished for the backbone protons of 99 amino acid residues and for most of their side-chain protons. The three-dimensional structures were constructed on the basis of 820 interproton-distance restraints derived from NOE, 64 distance restraints for 32 hydrogen bonds and 33 phi torsion-angle restraints. A total of 40 structures were obtained by distance geometry and simulated-annealing calculations. The average root-mean-square deviation (residues 1-106) between the 40 converged structures and the mean structure obtained by averaging their coordinates was 0.116 +/- 0.018 nm for the backbone atoms and 0.182 +/- 0.015 nm for all atoms including the hydrogen atoms. RNase F1 was determined to be an alpha/beta-type protein. A well-defined structure constitutes the core region, which consists of a small N-terminal beta-sheet (beta 1, beta 2) and a central five-stranded beta-sheet (beta 3-beta 7) packed on a long helix. The structure of RNase F1 has been compared with that of RNase T1, which was determined by X-ray crystallography. Both belong to the same family of microbial ribonucleases. The polypeptide backbone fold of RNase F1 is basically identical to that of RNase T1. The conformation-dependent chemical shifts of the C alpha protons are well conserved between RNase F1 and RNase T1. The residues implicated in catalysis are all located on the central beta-sheet in a geometry similar to that of RNase T1.

Amino Acid Sequence↗

Three-dimensional structure of an alpha-amylase inhibitor HAIM as determined by nuclear magnetic resonance methods.

The three-dimensional structure of an alpha-amylase inhibitor, HAIM, composed of 78 amino acids, was analyzed by two-dimensional NMR techniques. Sequence-specific assignments were made for the amino acid residues from Ile-6 to Cys-72. Distance geometry analysis of the interresidue NOEs revealed that the HAIM molecule consists of two beta-sheets, as is the case in a homologous alpha-amylase inhibitor, Tendamistat, though one of its beta-strands is much shorter than that of Tendamistat. The combination of molecular modeling from Tendamistat and distance geometry analysis was confirmed to be useful for our purpose.

Amino Acid Sequence↗

A 2H-NMR study on the glycerol backbone of phospholipids extracted from Escherichia coli grown under high osmotic pressure: evidence for multiconformations of phosphatidylethanolamine.

A glycerol-requiring auxotroph was isolated from mutagenized Escherichia coli K-12 UFAts cells. This auxotroph was used for the specific deuteration of E. coli phospholipids. The cells were grown under high osmotic pressure (in the presence of 2.0% KCl). The membrane had a highly saturated fatty acid composition (76% phosphatidylethanolamine, 20% cardiolipin and 4% phosphatidylglycerol). The deuterium magnetic resonance spectra of coarse liposomes of the extracted phospholipids with perdeuterated glycerol incorporated into them were measured. To obtain well characterized information, phospholipid mixtures reconstituted from the deuterated and nondeuterated components at the same ratios as in the case of the total extract were used. On the analysis of the spectra, the following conclusions were drawn. (1) The whole polar region of cardiolipin is dynamically symmetric and quite rigid in the presence of phosphatidylethanolamine. (2) Although the quadrupole splittings of the deuterons at the C-2 and C-3 positions of the glycerol backbone were similar to each other, those at the C-1 position for phosphatidylethanolamine and cardiolipin are different, even in the same bilayer. (3) Furthermore, each C-1 deuteron of phosphatidylethanolamine gave rise to a doublet, suggesting the presence of two backbone conformations, between which there is slow exchange. (4) The polar head group of phosphatidylethanolamine interacts with cardiolipin and phosphatidylglycerol in different ways, which could be responsible for the different osmotic properties of the vesicles composed of them.

Cardiolipins↗

Secretion in yeast of human lysozymes with different specific activities created by replacing valine-110 with proline by site-directed mutagenesis.

Computer graphics indicate that a steric hindrance exists between valine-110 side chain of human lysozyme (EC 3.2.1.17) and an acetyl group of a modified substrate that contains N6,O-diacetylmuramic acid. To alter the substrate specificity of human lysozyme to be effective on the modified substrate, we replaced the valine-110 residue with various amino acids by site-directed mutagenesis. One of the mutant proteins (valine residue replaced with proline:P110) was secreted in Saccharomyces cerevisiae as at least four components (P110-A, P110-B, P110-C, and P110-D) with different specific activities. Two components, P110-B and P110-D, were isolated in a pure form and structurally characterized. The results suggest that this mutation lowered the lytic activity against Micrococcus lysodeikticus by changing a local conformation of the catalytic site while keeping almost the same substrate binding sites. Our results also indicate that cis/trans isomerization of prolyl peptide bonds probably occurs in vivo and that the conformational change of protein as well as point mutations in genes might influence the molecular evolution of the protein.

Amino Acid Sequence↗

Influence of metal ions and a local anesthetic on the conformation of the choline group of phosphatidylcholine bilayers studied by Raman spectroscopy.

A Raman band assigned to the 'totally' symmetric stretching vibration of the choline C-N bonds is relatively strong and sensitive to the conformation of the choline backbone (Akutsu, H. (1981) Biochemistry 20, 7359-7366). By monitoring this Raman band, the influence of Eu3+, La3+, Ca2+ and a local anesthetic, dibucaine, on the conformation of the choline group was examined for the bilayers of dipalmitoylphosphatidylcholine and those of deuterated one at the choline methyl group (-N(C2H3)3). NMR lanthanide-shift studies proposed that the interaction with metal ions induces a conformational change from the gauche to the trans form in the O-C-C-N+ backbone of the choline group. However, present Raman work clearly showed that neither metal ions nor anesthetics induce such a conformational change. Therefore, a structural change in the polar group detected by 2H-NMR on addition of metal ions should not include a significant conformational change in the choline group as well. Deuterated phosphatidylcholine used here was proved to be more suitable for the direct detection of the amount of the trans conformation by Raman spectroscopy than the nondeuterated one. The spectra of the deuterated compound in the gel and liquid-crystalline states confirmed that the trans conformation of the choline group does not appear at all in both states.

Anesthetics, Local↗

Effects of purified ginseng saponins on multilamellar liposomes.

To elucidate the mode of interaction between purified ginseng saponins and liposomes, the effects of ginseng saponins at concentrations below and above their critical micelle concentration on the osmotic behavior of liposomes were observed. Liposomes composed of egg phosphatidylcholine (PC), phosphatidic acid (PA) and/or cholesterol (Ch) behave as an ideal osmometer and this activity was described by the linear relationship between (1/A450)3/2 and Cin/Cout. Total saponin prepared from the lateral roots of ginseng cultivated in Korea interacted with multilamellar liposomes and prevented them from behaving as an ideal osmometer. 20-S-Protopanaxadiol saponin showed similar activity but 20-s-protopanaxatriol saponin had weak activity. Ginsenoside Rb1 whose genin is 20-S-protopanaxadiol, disturbed osmotic behavior of Ch-free liposomes but not Ch-containing liposomes as monomers and lyzed both liposomes as micelles. Rg1 whose genin is 20-S-protopanaxatriol, showed no activity on liposomes with or without Ch. It can be suggested that ginseng saponins may interact with and destroy liposomal membranes and that structure of sugar moiety is an important factor to their activities. Ch is not a target in this interaction but suppresses the activity of ginseng saponins.

Brassica↗

An essential role of phosphatidylglycerol in the formation of the osmotically stable liposomes of Escherichia coli phospholipids.

A temperature sensitive auxotroph of Escherichia coli K-12 requiring unsaturated fatty acids can grow normally at 28 degrees C, but requires an osmotic stabilizer such as a high amount of salt or sugar in the medium for the growth at 42 degrees C. Namely, the apparent osmotic stability of the cells at 28 degrees C and 42 degrees C is quite different. The osmotic properties of liposomes of the phospholipids extracted from these cells were investigated. The osmotically induced volume change of the multilamellar liposomes was examined by the turbidimetric method. The liposomes prepared from cells grown at 28 degrees C can swell and shrink under a wide range of hypo-and hypertonic conditions. However, those from cells grown at 42 degrees C could not swell under hypotonic conditions. These results exhibit a good correlation between the apparent osmotic stability of E. coli cells and the osmotic properties of the liposomes prepared from the extracted total phospholipids. To clarify the role of each phospholipid component, the osmotic properties of the liposomes reconstituted from the purified phospholipid species were further investigated. The results clearly showed that phosphatidylglycerol is the key factor that stabilizes the membranes of E. coli phospholipids against osmotic pressure.

Escherichia coli↗