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Biomedical subjects

T Takamatsu

Publications and source records attributed to T Takamatsu.

At least 19 recordsLinked to original sources

Structural characterization and location of disulphide linkages of a potent vasodilatory peptide, recombinant maxadilan, by a multiple mass spectrometric approach.

A multiple mass spectrometric strategy using fast-atom bombardment (FAB) and matrix-assisted laser desorption/ionization (MALDI) has been used to confirm the sequence and to locate the disulfide linkages of recombinant maxadilan (r-maxadilan) (average molecular mass 7422.5 Da), a potent vasodilatory peptide from Lutzomyia longipalpis. MALDI measurements of intact r-maxadilan, its reduced form and its pyridylethylated form (p-maxadilan) indicated the presence of four Cys residues without major post-translational modifications. FAB and FAB-tandem mass spectrometry measurements of chymotryptic digests of p-maxadilan were sufficient to map the primary structure of p-maxadilan, though the complementary use of MALDI was necessary for complete mapping using Asp-N digestion due to a strong suppression observed in FAB. Assignment of the Cys-5-Cys-9 linkage was achieved by comparison of FAB mass spectra before and after reduction of tryptic digests of r-maxadilan. Since the molecular weight of the peptide fragment containing the Cys-18-Cys 55 linkage is more than 4000, MALDI measurement was indispensable for assignment of this linkage. The results fully support the value of the multiple mass spectrometric strategy in the structural characterization of peptides and proteins.

Amino Acid Sequence

[Endovascular stenting for a recurrent angina patient].

We report successful Palmaz-Schatz stenting for recurrent angina. Coronary arteriography in a 65-year-old man with recurrent angina six months after coronary artery bypass grafting (CABG) showed stenosis in the right coronary artery and in the saphenous vein graft to the left anterior descending artery. For both stenotic lesions, balloon dilatation was performed. However, both lesions recoiled after dilatation. Therefore, Palmaz-Schatz stents were inserted in both stenotic lesions. After stenting, the patient did not experience any further chest pain. Three months later coronary arteriography showed the stents remained patient. Balloon angioplasty for post-CABG angina is technically easier than additional surgery. However, angioplasty by balloon dilatation alone can induce dangerous complications during the acute phase and restenosis frequently develops. This method is not sufficiently effective or safe for recurrent angina. To prevent these problems, the stent was developed as a useful adjunct to balloon dilatation for the native artery. Using this new device, angioplasty for recurrent angina will be safer and more effective than additional surgery.

Aged

Column-switching high-performance liquid chromatographic system with a laser-induced fluorimetric detector for direct, automated assay of salivary cortisol.

In order to measure human stress, an easy and rapid, fully automated method for the determination of cortisol in saliva has been developed, using column-switching high-performance liquid chromatography with laser-induced fluorescence detection, which involves post-column labeling with sulfuric acid. The developed system requires only 0.1 ml of saliva, and a simple pretreatment consisting of dilution and filtration is sufficient. The column-switching system consisted of a Polymer-Coated Mixed-Functional silica (PCMF) column for deproteinization, and a CN column for frontal concentration and separation. An ODS column in place of the CN provided a better separation, but required a post-column make-up of water for safe reaction. Detection limit of cortisol was 8 fmol (signal-to-noise ratio = 3), which is adequate for routine determination of normal levels of cortisol (1-20 pmol/ml). The analysis time was about 40 min and reproducibility was excellent with an R.S.D. of less than 5%.

Chromatography, High Pressure Liquid

Asparaginyl endopeptidase mapping of proteins with subsequent matrix-assisted laser desorption/ionization mass spectrometry.

A matrix-assisted laser desorption/ionization (MALDI) mass spectrometric mapping strategy for the identification and characterization of isolated and purified proteins is described. The method, which employs the combined usage of a new site-specific enzyme Asparaginyl endopeptidase (Asn-EP) for proteolysis, and MALDI for subsequent mass analysis, is capable of rapidly and sensitively examining the components of complex mixtures without any chromatographic or electrophoretic separation steps. Subpicomole sample quantities typically suffice to permit the confirmation of deduced primary structures and/or the identification of possible post-translational modifications. The data obtained should also prove useful for mass matching and sequence homology searching of computerised protein sequence data bases of known proteins.

Amino Acid Sequence

The cytotoxicity of human immunodeficiency virus type 1 Rev: implications for its interaction with the nucleolar protein B23.

Human immunodeficiency virus type 1 (HIV-1) encodes several regulatory proteins, including two essential trans-activators for viral replication, Rev and Tat. Both Rev and Tat have a nucleolar targeting signal and are actually located predominantly in the nucleoli. Within the nucleoli, Rev is localized to the combined regions of the dense fibrillar (DFC) and the granular (GC) components. Tat does not colocalize precisely with any nucleolar component tested, but partly overlaps regions of the DFC and the GC. Regions of both Rev and Tat are overlapped by the distribution of the major nucleolar protein B23. Overexpression of Rev causes nucleolar ballooning and general structural deformity with aberrant accumulation of rRNAs, whereas Tat does not have that effect. B23 is markedly accumulated in those nucleoli deformed by Rev. Components of the nucleolar DFC, GC, and fibrillar center domains are not accumulated but dispersed in few small spots or larger patches within the enlarged nucleoli. Cytophotometric DNA determinations revealed that transient expression of Rev results in accumulation of G2, prophase, and mitotic cells which have failed cytokinesis, suggesting that Rev is capable of preventing or slowing the progression through mitosis. Tat, in contrast, does not affect the cell cycle. We speculate, based on these results, that Rev represses cell growth by inhibiting the transport of ribosomal proteins and preribosomal particles across the nuclear envelope and affecting the cell cycle, both of which may be related to proposed functions of B23.

Animals

The post-transcriptional regulator Rex of the human T-cell leukemia virus type I is present as nucleolar speckles in infected cells.

The rex-encoded protein (Rex) of human T-cell leukemia virus type I (HTLV-I) is responsible for the cytoplasmic accumulation of incompletely spliced mRNAs that encode the virion structural proteins. Rex is known to be located predominantly in the cell nucleoli in transient transfections or in the isolated nuclei of HTLV-I-infected cells. However, precise location of Rex under physiological conditions has not been determined unequivocally. Here we report that Rex is primarily located as intranucleolar speckles in HTLV-I-infected cells, except for a few nucleoplasmic speckles. This is in contrast to the more diffuse nucleolar distribution of the rev-encoded protein (Rev) of human immunodeficiency virus type 1 (HIV-1), the functional homologue to Rex, in HIV-1-infected cells. Accumulation of Rev is associated with disruption of nucleolar structure and cell death, whereas Rex does not have these effects. The difference in distribution of Rex and Rev within the nucleoli may reflect the difference of toxicity toward the host cells. Involvement of the nucleolus in processing of certain mRNAs is also discussed.

Animals

Three-dimensional observation with a confocal scanning laser microscope of fibronectin immunolabeling during cardiac looping in the chick embryo.

From the beginning of cardiac myofibrillogenesis in the chick embryo, developing myofibrils at the bottom of the inner myocardial cell layer facing the cardiac jelly are already aligned circumferentially in the direction of the heart tube. To elucidate the mechanism of this alignment, we investigated the temporal and spatial expression of fibronectin and its relationship to actin filaments before and during looping (4- to 13-somite stages) by using a confocal scanning laser microscope. Serial optical tomograms were obtained from whole-mounted heart tubes stained with fluorescein-conjugated antibody against cellular fibronectin and rhodamine-conjugated phalloidin. Before looping (4- to 7-somite stages), particulate and speckled fibronectin formed loose networks. At the onset of looping (8- to 9-somite stages), fine fibrils of fibronectin appeared. They became dense and were arranged circumferentially in the direction of the heart tube. They were aligned parallel with the thick actin bundles that appeared as an initial stage of developing myofibrils. During looping, (10- to 13-somite stages), fibronectin fibrils were fragmented and showed a speckled pattern, while the number of circumferentially aligned mature striated myofibrils increased. These observations suggest that the temporal arrangement of fibronectin fibrils at the beginning of looping plays a role in the circumferential alignment of developing myofibrils.

Animals

"Varicoid change" of bile canaliculi in rat liver at an early phase of ischaemia-reperfusion injury.

To elucidate early changes and the mechanism of ischaemia-reperfusion liver injury, we investigated three-dimensional microstructural changes of cellular actin filaments in rat livers using confocal laser scanning microscopy. The liver tissues of a reperfusion group were examined 12 h after removal of a vascular clamp. Fixed tissues were stained with fluorescein-labelled phalloidin to obtain stereoscopic images of the actin filaments and these were compared with histological findings. The images of bile canaliculi showed that multiple abnormal minute diverticula arose from the canalicular membranes and fused with one another, resulting in irregular dilation of the bile canaliculi. These changes were observed after 15 min of ischaemia and reperfusion in which no significant necrosis was seen. The frequency and degree of these changes were strictly dependent on the periods of ischaemia (15-60 min). We called these bile canacilular lesions "varicoid changes". The liver of an ischaemia group taken after persistent clamping without reperfusion did not show these changes. Our findings suggest that the varicoid change in the bile canaliculi is probably due to alterations in the actin polymerization-depolymerization cycle and is a pathognomonic change of ischaemia-reperfusion liver injury.

Animals

[Stability studies on L-ascorbic acid dl-alpha-tocopherol phosphoric acid diester potassium salt (EPC-K)].

A compound having structures of both vitamins E and C, L-ascorbic acid dl-alpha-tocopherol phosphoric acid diester potassium salt (EPC-K), which was proven to have both anti-oxidative3%!d moisturizing effects, has been formulated in the quasi drug hair growing products to mainly prevent dandruff and itching which may be one of the causes for the hair loss. Stabilities of EPC-K in 75% ethanolic solutions with various pHs (2-10) were examined extensively by storing them at 50 degrees C for 30 d and by sunlight exposure for 30 d. Decomposition of EPC-K was only observed under pH 2 at a level of 50% and under sunlight exposure at 25% level. A main decomposition product was identified as tocopheryl phosphate (EP), suggesting that a decomposition route was through hydrolysis. EPC-K was found to decompose by as much as 20% under 30 d storage at 50 degrees C when the concentration of the aqueous ethanolic solution was 0-30%. 1H, 13C and 31P-NMR studies in addition to a micelle formation test using pyrene fluorescent probe revealed that EPC-K formed a micelle at such low concentration of ethanol, which was assumed to be a cause for unstableness of EPC-K in that range. Hydrolytic decomposition of EPC-K was found by the reaction rate study to be a pseudo first order reaction with activation energy of 16.98 kcal/mol.

Ascorbic Acid

Secretagogue-induced calcium wave shows higher and prolonged transients of nuclear calcium concentration in mast cells.

To clarify the mechanism of secretagogue (compound 48/80)-induced calcium signaling in rat peritoneal mast cells, we analyzed serial confocal calcium images with high spatial and temporal resolution using different Ca(2+)-probes. The Ca(2+)-wave began at the periphery of the cytoplasm, and then spread to the center of the nucleus. Nuclear [Ca2+]i was clearly higher than cytoplasmic [Ca2+]i. The heterogeneity of [Ca2+]i continued until about 2 min after degranulation. These results suggest the existence of an intranuclear Ca(2+)-store which possesses a Ca(2+)-releasing mechanism similar to that in the cytoplasm.

Animals

Cytotoxic activity of rev protein of human immunodeficiency virus type 1 by nucleolar dysfunction.

The rev protein (Rev) of the human immunodeficiency virus type 1 (HIV-1) is known as a post-transcriptional regulator of viral gene expression. It is located in the cell nucleolus. Transiently expressed Rev caused nucleolar ballooning and deformity with aberrant accumulation of rRNAs, and de novo synthesis of rRNAs decreased dramatically in these cells. However, similarly expressed rex protein (Rex) of the human T-cell leukemia virus type I, which is a functional homologue to Rev, did not affect nucleolar structure and function. Rev expression resulted in cell death with nucleolar destruction in an inducible cell line. Analysis of Rev mutants revealed that both the nucleolar targeting signal of Rev and the multimerization domain are prerequisites to the nucleolar disintegration by Rev. Human T-cells acutely infected with HIV-1 contained nucleoli which were deformed and filled with Rev, but chronically infected cells had intact nucleoli. Involvement of Rev in cytopathic effects in HIV-1 infection is discussed.

Base Sequence

3-D observation of N-cadherin expression during cardiac myofibrillogenesis of the chick embryo using a confocal laser scanning microscope.

It is not yet understood whether cell adhesion molecules play an active role in early cardiac morphogenesis or not. We present here the spatial and temporal expressions of N-cadherin and its relationships to actin filaments during looping (7- to 13-somite stages) of the chick embryonic heart tube observed by means of a confocal laser scanning microscope. Serial optical tomograms were obtained from the whole-mounted heart tubes stained with antibody to N-cadherin (fluorescein-conjugated) and phalloidin (rhodamine-conjugated). Three patterns of N-cadherin expression were observed during looping; a belt-like pattern, speckled pattern, and clumped pattern, corresponding to adhesion belt, nonjunctional cell contact and early intercalated disks, respectively. At the 7-somite stage, myocytes expressed N-cadherin as adhesion belt and nonjunctional cell contact. At the 8- to 10-somite stages, the clumped pattern of N-cadherin was detected before striated myofibrils appeared. Myofibrils began to develop across the clumps to form transcellular networks in the outer layer, and to form circumferential alignments in the inner layer. These results suggest that N-cadherin is responsible for the connection of myofibrils between the neighboring myocytes, and the alignment of the two layers in the developing heart tube.

Animals

[Stability of allantoin and identification of its degradation compounds].

The stability of allantoin was studied in pH 3.0, 6.0, and 8.0 buffer solutions at 50 degrees C for 55 d. Allantoin was determined by high performance liquid chromatography (HPLC) with a cation exchange mode and colorimetry. The known degradation compounds, allantoic acid and glyoxylic acid, were simultaneously determined by ion chromatography. Urea was determined by HPLC with an ion pair mode. In the stability studies on pH 6.0 and 8.0 solutions, new degradation compounds of allantoin were identified as two growing unknown peaks in the HPLC chromatogram. Isolation of these compounds by preparative HPLC and 1H, 15N and 13C-NMR spectra revealed that they were condensates of allantoin and glyoxylic acid, which also reacted positively in phenylhydrazine colorimetry. The amounts of these compounds were calculated from the determination results of other allantoin related compounds in the buffer solutions and were estimated as the biggest amount among all other compound. As they were found to be stable in an alkaline solution, conditions for hydrolysis in the colorimetric determination of allantoin were further examined. It was found that the longer hydrolysis gave more than 90% recovery in the colorimetry.

Allantoin

Determination of eperisone in human plasma by gas chromatography-mass spectrometry.

A gas chromatographic-mass spectrometric method was developed to determine eperisone hydrochloride, 4'-ethyl-2-methyl-3-piperidinopropiophenone hydrochloride, in human plasma over the concentration range 0.2-40 ng/ml. Excellent sensitivity was achieved by selection of a favorable fragment ion, m/z 98, of eperisone and reduction of heat decomposition of eperisone by using a splitless injector and a shortened capillary column. The method described here allows the determination of plasma concentrations as low as 0.2 ng/ml, the concentration attained 6 h after a single oral administration of 50 mg. At eperisone hydrochloride concentrations higher than 0.5 ng/ml, the mean inter-day variation of accuracy of the assay was less than 12%.

Calibration

Intranuclear topological distribution of HIV-1 trans-activators.

Subcellular localization of human immunodeficiency virus type I (HIV-1) Tat and Rev was examined using a confocal laser scanning microscope (CLSM). In transfected COS-7 cells, Tat resided exclusively in the perinocleolar region, while Rev infiltrated fully into the nucleoli. The chimeric Tat in which the nucleolar targeting signal was replaced by that of Rev, which retains trans-acting activity of Tat, remained still in the perinucleolar region as wild-type Tat. Perinucleolar distribution of Tat protein suggests the existence of a novel nucleolar architecture that affects transcription.

Amino Acid Sequence

3-D observation of actin filaments during cardiac myofibrinogenesis in chick embryo using a confocal laser scanning microscope.

Using a confocal laser scanning microscope (CLSM), we observed subcellular three-dimensional (3-D) arrangements of actin filaments stained with fluorescein-labeled phalloidin during myofibrinogenesis of chick embryonic heart (7- to 13-somite stages). Serial optical tomograms were obtained from whole-mounted heart tubes and reconstructed into stereoscopic images. Development of myofibrils in myocardial differentiation considerably differed in inner and outer myocardial cell layers. In the outer layer, initial myofibrils appeared along cell membranes at the 8-somite stage. They increased rapidly and constituted network structures with spatial extension over cell-cell junctions. In the inner layer, myofibrils appeared at the bottom, facing the cardiac jelly, at the 10-somite stage, and, when the straight heart tube began to bend, they were already aligned circumferentially in the direction of the heart tube. Double staining of fluorescein-phalloidin and DiI [1,1'-dioctadecyl-3,3,3',3'-tetramethylindo-carbocyanine perchlorate; DiI-C18-(3)] of the looped heart revealed that while myocytes in the outer layer were round, those of the inner layer were spindle-shaped, and their long axes coincided with the circumferential direction. These results suggest that the circumferentially arranged myofibrils at the bottom of the inner layer may play an important role in the looping of the heart tube.

Actins

Quantitative histological analysis of the human sinoatrial node during growth and aging.

BACKGROUND: Fibrosis or fatty infiltration of the human sinoatrial (SA) node is generally believed to represent replacement of the SA nodal cells by connective tissue. Quantitative analysis, however, has not been performed precisely to validate the interpretation of such histological changes. METHODS AND RESULTS: The actual volume of the SA node and its components were calculated according to the sum of the pixel number representing the colors of SA nodal cells and connective tissue in serial sections using a digital color image analyzer. Average volume occupied by the total SA nodal cells in adolescents and adults (n = 7) was 3.55 +/- 0.45 mm3, which was 2.4 times greater than that in infants (n = 3). The rate of increase was smaller than that of the total SA node (4.2 times, 16.68 +/- 2.56 mm3 in adolescents and adults). The considerable discrepancy in the growth ratio between the SA nodal cells and the total SA node resulted from an increase in the volume of connective tissue (7.4 times). In the elderly (n = 9), the volume of total SA node and SA nodal cells actually decreased (13.10 +/- 1.85 mm3 and 2.18 +/- 0.44 mm3), whereas that of fibrous connective tissue remained unchanged. Constant DNA ploidy patterns of SA nodal cells determined by cytofluorometry indicated that SA nodal cells never synthesize DNA during growth. CONCLUSIONS: Until adulthood, the actual volume of SA nodal cells does not decrease, although the increase in volume ratio of the interstitial tissue to the total SA node has merely given a false impression of involution of SA nodal cells. Atrophy of SA nodal cells, however, occurs during aging together with reduction of the SA node and/or infiltration of fatty tissue.

Adolescent