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Biomedical subjects

A Yoshida

Publications and source records attributed to A Yoshida.

At least 325 records · Page 18Linked to original sources

Ultrastructural observations of synaptic connections of vibrissa afferent terminals in cat principal sensory nucleus and morphometry of related synaptic elements.

Previous work suggests that slowly adapting (SA) periodontal afferents have different synaptic arrangements in the principal (Vp) and oral trigeminal nuclei and that the synaptic structure associated with transmitter release may be related directly to bouton size. The present study examined the ultrastructures of SA and fast adapting (FA) vibrissa afferents and their associated unlabeled axonal endings in the cat Vp by using intra-axonal labeling with horseradish peroxidase and a morphometric analysis. All SA and FA afferent boutons contained clear, round, synaptic vesicles. All the FA and most SA boutons were presynaptic to dendrites, but a few SA boutons were axosomatic. Both types of bouton were frequently postsynaptic to unlabeled axonal ending(s) containing pleomorphic, synaptic vesicles (P-ending). The size of labeled boutons was larger in FA than SA afferents, but the size of dendrites postsynaptic to labeled boutons was larger for SA than FA afferents. Large-sized FA and SA boutons made synaptic contacts with small-diameter dendrites. The size of FA and SA boutons was larger than that of their associated P-endings. A morphometric analysis made on the pooled data of SA and FA boutons indicated that apposed surface area, active zone number, total active zone area, vesicle number, and mitochondrial volume were highly correlated in a positive linear manner with labeled bouton volume. These relationships were also applicable to unlabeled P-endings, but the range of each parameter was smaller than that of the labeled boutons. These observations provide evidence that the two functionally distinct types of vibrissa afferent manifest unique differences but share certain structural features in the synaptic organization and that the ultrastructural "size principle" proposed by Pierce and Mendell ([1993] J. Neurosci. 13:4748-4763) for Ia-motoneuron synapses is applicable to the somatosensory system.

Adaptation, Physiological↗

Structural and functional characterization of retinal calcium-dependent guanylate cyclase activator protein (CD-GCAP): identity with S100beta protein.

Calcium-dependent guanylate cyclase activator protein (CD-GCAP) is a low-molecular-weight retinal calcium-binding protein which activates rod outer segment guanylate cyclase (ROS-GC) in a calcium-dependent manner. This investigation was undertaken to determine the protein's structure and identity. Partial amino acid sequencing (72% of the protein), mass spectral analysis, cloning, and immunological studies revealed that CD-GCAP is identical to S100beta, another low-molecular-weight calcium-binding protein whose structure was known. We had shown earlier that the latter protein, which is usually called S100b (S100betabeta or dimer of S100beta), also activates ROS-GC but that the Vmax of activated cyclase was about 50% lower than when stimulated by CD-GCAP. S100b also required about 15 times more calcium (3.2 x 10(-)5 vs 1.5 x 10(-)6 M) for half-maximal stimulation of cyclase. To investigate the possibility that CD-GCAP is a post-translationally modified form of S100b, both proteins were treated with 1 M hydroxylamine which is known to deacylate proteins. After the treatment, CD-GCAP did not activate cyclase while S100b activation remained unaffected suggesting that CD-GCAP could not be a modified form of S100b. Hydroxylamine also broke down CD-GCAP into smaller fragments while leaving S100b intact. It therefore appeared that in spite of identical primary structures, the conformations of the two proteins were different. We then investigated the possibility that the purification procedures of the two proteins, which were quite different, could have contributed to such conformational differences: CD-GCAP purification included a step of heating at 75 degrees C in 5 mM Ca, while S100b purification included zinc affinity chromatography. To test the influence of these treatments on the properties of the proteins, CD-GCAP was subjected to zinc affinity chromatography and purified as S100b (CD-GCAP-->S100b) and S100b was heated in Ca and purified as CD-GCAP (S100b-->CD-GCAP). Cyclase activation, calcium-sensitivity, and hydroxylamine-lability measurements revealed that CD-GCAP-->S100b is identical to S100b and that S100b-->CD-GCAP is identical to CD-GCAP. Taken together the results demonstrate that CD-GCAP and S100b are one and the same protein and that their functional differences are due to different interconvertible conformational states.

Amino Acid Sequence↗

Rat peritoneal macrophages express endothelin ET(B) but not endothelin ET(A) receptors.

The properties of endothelin receptors on rat peritoneal macrophages were examined in in vitro receptor autoradiographic binding experiments and in a reverse transcription-polymerase chain reaction (RT-PCR) study. Dense and specific [(125)I]endothelin-1 binding sites were detected on the macrophages. [(125)I]Tyr13-Suc-[Glu9,Ala(11,15)]-endothelin-1(8-21) , IRL1620, a selective endothelin ET(B) receptor ligand, but not [(125)I](N-[(hexahydro-1-azepinyl)carbonyl])L-Leu(1-Me)D-Trp-D-Tyr , PD151242, a selective endothelin ET(A) receptor ligand, specifically bound to rat macrophages (Kd = 0.75 +/- 0.19 nM, Bmax = 7.77 +/- 2.50 fmol/mg). RT-PCR experiments also showed the expression of endothelin ET(B) receptor mRNA, but not endothelin ET(A) receptor mRNA, in these macrophages. These results indicate that rat peritoneal macrophages apparently express the endothelin ET(B) receptor but not the endothelin ET(A) receptor.

Animals↗

Serotonergic axonal contacts on identified cat trigeminal motoneurons and their correlation with medullary raphe nucleus stimulation.

The innervation of the trigeminal motor nucleus by serotonergic fibers with cell bodies in the raphe nuclei pallidus and obscurus suggests that activation of this pathway may alter the excitability of trigeminal motoneurons. Thus, we recorded intracellular responses from cat jaw-closing (JC) andjaw-opening (JO) alpha-motoneurons evoked by raphe stimulation and used a combination of intracellular staining of horseradish peroxidase (HRP) and immunohistochemistry at the light and electron microscopic levels to examine the distribution of contacts made by serotonin (5-HT)-immunoreactive boutons on the two motoneurons types. Electrical stimulation applied to the nucleus raphe pallidus-obscurus complex induced a monosynaptic excitatory postsynaptic potential (EPSP) in JC (masseter) alpha-motoneurons and an EPSP with an action potential in JO (mylohyoid) alpha-motoneurons. The EPSP rise-times (time to peak) and half widths were significantly longer in the JC than in the JO motoneurons. The EPSPs were suppressed by systemic administration of methysergide (2 mg/kg). Six JC and seven JO alpha-motoneurons were well stained with HRP. Contacts were seen between 5-HT-immunoreactive boutons and the motoneurons. The JC motoneurons received a significantly larger number of the contacts than did the JO motoneurons. The contacts were distributed widely in the proximal three-fourths of the dendritic tree of JC motoneurons but were distributed on more proximal dendrites in the JO motoneurons. At the electron microscopic level, synaptic contacts made by 5-HT-immunoreactive boutons on motoneurons were identified. The present study demonstrated that JC motoneurons receive stronger 5-HT innervation, and this correlates with the fact that raphe stimulation caused larger EPSPs among these neurons than among JO motoneurons.

Animals↗

Discovery of the shortest sequence motif for high level mucin-type O-glycosylation.

The consensus primary amino acid sequence for mucin-type O-glycosylation sites has not been identified. To determine the shortest motif sequence required for high level mucin-type O-glycosylation, we prepared more than 100 synthetic peptides and assayed in vitro O-GalNAc transfer to serine or threonine in these peptides using a bovine colostrum UDP-N-acetylgalactosamine:polypeptide N-acetylgalactosaminyl transferase (O-GalNAcT). We chose the sequence PDAASAAP from human erythropoietin (hEPO) for further systematic substitutions because it accepted GalNAc and was a fairly simple sequence consisting only of four kinds of amino acids. Several substitutions showed that threonine is approximately 40-fold better than serine as the glycosylated amino acid and a proline at position +3 on the C-terminal side is very important. To define the effect of proline residues around the glycosylation site, we analyzed a series of peptides containing one to three proline residues in a parent peptide AAATAAA. The results clearly indicated that prolines at positions +1 and +3 had a positive effect. The O-GalNAc transfer level of AAATPAP was increased approximately 90-fold from AAATAAA. The deletion of amino acids from the N-terminal side of the glycosylation site suggested that five amino acids from position -1 to +3 were especially important for glycosylation. Moreover, the influence of all 20 amino acids at positions -1, +2, and +4 was analyzed. Uncharged amino acids were preferred at position -1, and small or positively charged amino acids were preferred at position +2. No preference was observed at position +4. We propose a mucin-type O-glycosylation motif, XTPXP, which may be suitable as a signal for protein O-glycosylation. The features observed in this study also appear to be very useful for prediction of mucin-type O-glycosylation sites in glycoproteins.

Acetylgalactosamine↗

Exon/intron structure of aldehyde dehydrogenase genes supports the "introns-late" theory.

Whether or not nuclear introns predate the divergence of bacteria and eukaryotes is the central argument between the proponents of the "introns-early" and "introns-late" theories. In this study we compared the goodness-of-fit of each theory with a probabilistic model of exon/intron evolution and multiple nonallelic genes encoding human aldehyde dehydrogenases (ALDHs). Using a reconstructed phylogenetic tree of ALDH genes, we computed the likelihood of obtaining the present-day ALDH sequences under the assumptions of each competing theory. Although on the grounds of its own assumptions each theory accounted for the ALDH data significantly better than its rival, the introns-early model required frequent intron slippage, and the estimated slippage rates were too high to be consistent with reported correlations between the boundaries of ancient protein modules and the ends of ancient exons. Because the molecular mechanisms proposed to explain intron slippage are incapable of providing such high rates and are incompatible with the observed distribution of introns in higher eukaryotes, the ALDH data support the introns-late theory.

Aldehyde Dehydrogenase↗

Organization of the descending projections from the parabrachial nucleus to the trigeminal sensory nuclear complex and spinal dorsal horn in the rat.

To clarify direct descending projections from the parabrachial nucleus (PB) to the trigeminal sensory nuclear complex (TSNC) and spinal dorsal horn (SpDH), the origin and termination of descending tract cells were examined by the anterograde and retrograde transport methods. Phaseolus vulgaris leucoagglutinin (PHA-L) and Fluorogold (FG) or dextran-tetramethylrhodamine (Rho) were used as neuronal tracers for the anterograde and retrograde transport, respectively. The ventrolateral PB, including Kölliker-Fuse nucleus (KF), sent axons terminating mainly in the ventrolateral parts of rostral trigeminal nuclei of the principalis (Vp), oralis (Vo), and interpolaris (Vi) as well as in the inner lamina II of the medullary (nucleus caudalis, Vc) and SpDH. Although the descending projections were bilateral with an ipsilateral dominance, TSNC received a more dominant ipsilateral projection than SpDH. The cells of origin of the descending tracts were located mainly in KF, but TSNC received fewer projections from the KF than SpDH. Namely, TSNC received a considerable projection from the medial subnucleus of PB and the ventral parts of lateral subnuclei of PB, such as the central lateral subnucleus and lateral crescent area. The other difference noted between TSNC and SpDH was that the former received projections mainly from the caudal two thirds of KF and the latter from the rostral two thirds of KF. These results demonstrate the existence of direct parabrachial projections to TSNC and SpDH that are organized in a distinct manner and suggest that both pathways are involved in the control of nociception.

Animals↗

Characteristics of 161 patients with cardiac tumors diagnosed during 1993 and 1994 in Japan.

We investigated clinical and pathologic characteristics of 161 patients with primary or secondary cardiac tumors diagnosed between 1993 and 1994 in Japan. The increased use of cardiovascular imaging, especially echocardiography, contributed to the early identification of small cardiac tumors, resulting in a reduction of the serious complications such as embolization.

Adolescent↗

Human aldehyde dehydrogenase genes, ALDH7 and ALDH8: genomic organization and gene structure comparison.

The structure of two human aldehyde dehydrogenase genes, ALDH7 and ALDH8, have been determined. The ALDH7 gene spans about 20 kb of the human genomic DNA and is composed of 9 coding exons. The ALDH8 gene is over 10 kb in length and consists of at least 10 exons. The ALDH8 gene contains an in-frame stop codon at the 17th codon position from the first initiator Met. The coding region of the ALDH7 gene shows about 86% nucleotide identity with the corresponding region of the ALDH8 gene. The numbers and positions of the introns of the two genes are conserved, suggesting that gene duplication is involved in the expansion of the ALDH gene family. The human ALDH7 and -8 genes have a closer evolutionary relationship with the human ALDH3.

Aldehyde Dehydrogenase↗

Different electrophysiological character of I-, ClO4-, and SCN- in the transport by Na+/I- symporter.

The electrophysiological characteristics of the Na+/I- symporter were examined using the Chinese hamster ovary (CHO) cell line, which was transfected with the rat Na+/I- symporter gene and stably expressed the Na+/I- symporter. In this cell line, iodide uptake was dependent on Na+, and kinetic studies revealed that the K(m) for iodide was 35 microM, similar to that of FRTL-5 cells. The maximal velocity at the cell protein level was 6- to 10-fold higher than in FRTL-5 cells. ClO-4 and SCN- dose-dependently inhibited iodide uptake in a competitive manner. Electrophysiological characteristics were examined using the whole-cell patch-clamp technique. The holding current at-40 mV rapidly shifted inwardly when the cells were perfused with 1 mEq I- or SCN-. The inward current induced by 1 mEq I- did not increase when bathing solution was replaced with a Tyrode solution with 10 mEq I-, indicating that 1 mEq I- was a saturating amount. The inward current induced by 1 mEq I- increased 1.5-fold by changing the bathing solution to a Tyrode solution containing 1 mEq I- and 1 mEq SCN-. The inward current induced by 0.5 mEq SCN- decreased when the bathing solution was changed to a Tyrode solution containing 0.5 mEq SCN- and 10 mEq I-. These findings indicated that the I- ion and the SCN- ion were carried by the NA+/ I- symporter with at least two Na+ ions. The current induced by the transport of SCN- was larger than that induced by the transport of I-, possibly because the number of Na+ ions that was carried with one SCN- ion was larger than the number of Na+ ions carried with one I- ion. Surprisingly, the perfusion of ClO-4 did not induce an inward current, indicating that ClO-4 bound to the Na+/I- symporter, but was not carried by it, or that one ClO-4 ion was carried with one Na+ ion.

Animals↗

Human fatty aldehyde dehydrogenase gene (ALDH10): organization and tissue-dependent expression.

Mutations in the fatty aldehyde dehydrogenase gene (ALDH10) are responsible for Sjögren-Larsson syndrome (De Laurenzi et al., 1996). In this study, the expression and the genomic organization of the ALDH10 gene are reported. The gene spans approximately 31 kb and consists of 10 exons and 9 introns. All exon-intron junction sequences match the classical GT/AG rule. Both S1 nuclease protection assay and primer extension study suggest that the transcription initiation site is located 195 nucleotides upstream from the ATG codon. No canonical TATA box can be found in the 5'-flanking sequence of the gene, but a CCAAT-like box was found 58 bp upstream of the putative transcription start site. Sequence analysis of the 5'-flanking region revealed numerous potential binding sites for transcription factors Sp1 and AP-2 and one putative HIP-1 binding site. Northern blot analysis of poly(A)+ RNA from various tissues revealed two mRNA species, with sizes around 4.0 and 2.0 kb, that are derived from the differential use of two polyadenylation sites. Although this gene is expressed in a variety of human tissues, the expression level of ALDH10 in the liver and skeletal muscle appears to be higher than that in other tissues examined.

Aldehyde Oxidoreductases↗

Anti-cancer drugs and glutathione stimulate vanadate-induced trapping of nucleotide in multidrug resistance-associated protein (MRP).

Multidrug resistance-associated protein (MRP), a member of the ABC superfamily transporters, functions as an ATP-dependent efflux pump that extrudes cytotoxic drugs from the cells. Although glutathione has been considered to play an important role in the function of MRP, there is no convincing evidence that glutathione directly interacts with MRP. Here we demonstrate that vanadate-induced trapping of 8-azido-ATP in MRP was stimulated in the presence of glutathione, oxidized glutathione and the anti-cancer drugs VP-16 and vincristine. MRP in membrane from a human MRP cDNA transformant was specifically photolabeled with 8-azido-[alpha-32P]ATP by the vanadate-trapping technique. Vanadate and Mg2+ were required for trapping of nucleotides, and vanadate trapping of nucleotides was inhibited by excess ADP as well as ATP. These results suggest that a stable inhibitory complex MRP x MgADP x Vi, an analog of the MRP x MgADP x Pi transition state complex, is formed in the presence of vanadate. Glutathione as well as anti-cancer drugs would directly interact with MRP, and stimulate the formation of the transition state of the ATPase reaction of MRP.

ATP-Binding Cassette Transporters↗

Primary structure and bioactivity of bullfrog calcitonin.

Calcitonin was isolated from the bullfrog, Rana catesbeiana, and the first amino acid sequence of an amphibian calcitonin was determined to be Cys-Ser-Gly-Leu-Ser-Thr-Cys-Ala-Leu-Met-Lys-Leu-Ser-Gln-Asp-Leu-His- Arg-Phe-Asn-Ser-Tyr-Pro-Arg-Thr-Asn-Val-Gly-Ala-Gly-Thr-Pro-NH2. Some portions of this sequence are specific to bullfrog calcitonin, and other portions are similar both to teleost calcitonins and to mammalian calcitonins. Administration of 5 pmol of bullfrog calcitonin to rats revealed a hypocalcemic potency similar to that of salmon calcitonin, at least for the first 3 hr.

Amino Acid Sequence↗

Plasma levels of the monocyte chemotactic and activating factor/monocyte chemoattractant protein-1 are elevated in patients with acute myocardial infarction.

Cardiac inflammatory responses appear to play a pivotal role in scar formation after acute myocardial infarction. Monocyte chemotactic and activating factor (MCAF) monocyte chemoattractant protein-1 (MCP-1) is a cytokine with chemotactic activity for mononuclear phagocytes, but also for NK cells, T cells, mast cells, and basophils. To investigate the possible involvement of MCAF/MCP-1 in the pathogenesis, its course was studied in patients with acute myocardial infarction. Twenty-three consecutive patients with acute myocardial infarction and 18 patients with angina pectoris were studied. Cytokines were measured by enzyme-linked immunosorbent assay. Plasma levels of interleukin IL-1alpha, IL-1beta, and IL-2 were below the detection limit of our method. IL-6 and interferon-gamma were detected in 17.4%, and tumor necrosis factor-alpha in 13.0% of patients with acute myocardial infarction, but the frequency was not statistically significantly different from that in angina pectoris. The plasma level of MCAF/MCP-1 in myocardial infarction tended to increase at 3 h after the onset of chest pain (133 +/- 19 pg/ml, P= 0.06) and was significantly elevated at 9 h (143 +/- 20 pg/ml) when compared with that in angina pectoris (87 +/- 6 pg/ml, P<0.05). The MCAF/MCP-1 level remained increased during the 24-hours observation period (P<0.01), and maximum level (168 +/- 13 pg/ml) was seen at 24 hour. The level of MCAF/ MCP-1 correlated significantly with the plasma level of another chemokine, IL-8, at 12 h after the onset of chest pain (r=0.51, P<0.05), suggesting that common stimuli mediate the release of both cytokines in myocardial infarction. The identification of MCAF/MCP-1 as an inflammatory mediator in acute myocardial infarction suggests that mononuclear phagocytes may play an important role in the early stage of the disease.

Adult↗

Transient corneal edema induced by nitric oxide synthase inhibition.

The aim of the study is to identify nitric oxide synthase (NOS) in the rabbit cornea and further investigate the physiological role of nitric oxide in the rabbit cornea. For histological identification, an immunohistochemical technique using anti-NOS monoclonal antibodies was employed. For the physiological study, we measured the corneal thickness in vivo as an indicator of corneal edema by ultrasonic pachymetry. The measurements were repeated before and after ipsilateral injections of N(G)-nitro-L-arginine methyl ester (L-NAME) or N(G)-nitro-D-arginine methyl ester (D-NAME) or 6-anilino-5,8-quinolinedione (LY-83583) with contralateral injection of vehicle (balanced salt solution) into the anterior chamber of the rabbit. We also monitored intraocular pressure (IOP) by pneumatonometry. Endothelial NOS (eNOS) immunoreactivity was demonstrated both in the corneal epithelium and the endothelium. The corneal thickness significantly increased after L-NAME or LY-83583 without significant rise of IOP, whereas no change was detected after vehicle or D-NAME. These results suggest that NO is spontaneously produced in the corneal endothelium and the NO/cyclic GMP pathway is involved in maintainance of corneal thickness.

Aminoquinolines↗

An azoospermic male with an unbalanced autosomal-Y translocation.

An azoospermic male with an unbalanced translocation between the Y chromosome and chromosome 15 was examined in the present study. Testicular biopsy found only Sertoli cells only within the seminiferous tubules of the 35-year-old patient. Chromosome analysis, using the techniques of G and C banding and fluorescent in situ hybridization revealed an abnormal karyotype of 46,XY,der(15)t(Y;15)(q12;p11). Deoxyribonucleic acid (DNA) analysis confirmed the presence of the genes such as DAZ and YRRM1 which are known to control spermatogenesis. The cause of spermatogenetic dysfunction in this particular patient therefore.

Adult↗

Fracture of the superior border of the scapula.

Twenty-four patients who sustained a fracture of the superior border of the scapula are reviewed. All were associated with a fracture of the coracoid process and other shoulder injuries. There were 19 long fracture lines and 5 short. The former and 3 of the latter were extensions of a coracoid fracture; in 2, there appeared to be an avulsion fracture by traction through the superior transverse scapular ligament resulting from the upward displacement of the coracoid.

Adolescent↗

Evaluation of seminiferous tubule scores obtained through testicular biopsy examinations of nonobstructive azoospermic men.

OBJECTIVE: To evaluate the seminiferous tubules of nonobstructive azoospermic men, a modified version of the Johnsen score known as the seminiferous tubule score was used. DESIGN: Retrospective clinical study. SETTING: University-based urology center. PATIENTS: One hundred twenty-eight infertile men with nonobstructive azoospermia who underwent open testicular biopsy. INTERVENTION(S): Categorization as follows of various seminiferous tubule characteristics according to the modified seminiferous tubule score parameters: [1] a total absence of cells within the seminiferous tubule, [2] Sertoli cell only, [3] a few spermatogonia, [4] many spermatogonia, [5] a few primary spermatocytes, [6] many primary spermatocytes, [7] a few secondary spermatocytes, [8] many secondary spermatocytes, [9] a few round spermatids, [10] many round spermatids, [11] a few late spermatids and/or spermatozoa, and [12] many late spermatids and/or spermatozoa. MAIN OUTCOME MEASURE(S): Seminiferous tubule score. RESULT(S): In terms of maximum seminiferous tubule score, scores of 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, and 12 corresponded with total patient numbers of 9, 90, 0, 0, 3, 10, 0, 0, 3, 1, 11, and 1, respectively. CONCLUSION(S): It was discovered that intracytoplasmic sperm injection (ICSI) of round spermatids could be performed in 3.1% of the patients in this study and that ICSI using late spermatids or spermatozoa could be performed in 9.4% of the patients in order to achieve fertilization.

Adult↗