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Biomedical subjects

K Wada

Publications and source records attributed to K Wada.

At least 55 records · Page 3Linked to original sources

The AMPA receptor allosteric potentiator PEPA ameliorates post-ischemic memory impairment.

PEPA (4-[2-(Phenylsulphonylamino)ethylthio]-2,6-difluorophenoxyacetamide) is a recently developed allosteric potentiator of AMPA receptors that preferentially affects flop splice variants. We tested the effects of PEPA on ischemia-induced memory deficit in rats. Permanent unilateral occlusion of the middle cerebral artery induced severe impairment of performance of rats in the Morris water maze test. Repeated intravenous administration of PEPA (1, 3, 10 mg/kg/day for 10 days) improved test performance. In contrast, a corresponding dose of aniracetam, a representative potentiator of AMPA receptor, did not significantly improve test performance. Thus, PEPA is more effective than aniracetam in reversing impaired memory function as assessed by the Morris water maze test; and PEPA may be an effective compound for the treatment of impaired memory.

Allosteric Regulation↗

Loss of Uch-L1 and Uch-L3 leads to neurodegeneration, posterior paralysis and dysphagia.

Altered function of the ubiquitin pathway has been implicated in the etiology of neurodegeneration. For example, gracile axonal dystrophy (gad) mutant mice, which harbor a deletion within the gene encoding ubiquitin C-terminal hydrolase L1 (Uch-L1), display sensory ataxia followed by posterior paralysis and lethality. We previously showed that mice homozygous for a targeted deletion of the related Uch-L3 gene are indistinguishable from wild-type. To assess whether the two hydrolases have redundant function, we generated mice homozygous for both Uch-L1gad and Uch-L3Delta3-7. The double homozygotes weigh 30% less than single homozygotes and display an earlier onset of lethality, possibly due to dysphagia, a progressive loss in the ability to swallow food. This is consistent with histological analysis that revealed axonal degeneration of the nucleus tractus solitarius (NTS) and area postrema (AP) of the medulla. The NTS is essential for central nervous system control of swallowing. The double homozygotes also display a more severe axonal degeneration of the gracile tract of the medulla and spinal cord than had been observed in Uch-L1gad single homozygotes. In addition, degeneration of dorsal root ganglia cell bodies was detected in both the double homozygotes and Uch-L3Delta3-7 single homozygotes. Given that both Uch-L1gad and Uch-L3Delta3-7 single homozygotes display distinct degenerative defects that are exacerbated in the double homozygotes, we conclude that Uch-L1 and Uch-L3 have both separate and overlapping functions in the maintenance of neurons of the gracile tract, NTS and AP. This study is the first to successfully document dysphagia in the mouse and is a potentially valuable resource for understanding human neurodegenerative disorders that cause swallowing defects.

Animals↗

Nav1.1 mutations cause febrile seizures associated with afebrile partial seizures.

Recent evidence has suggested that the neuronal voltage-gated sodium channel alpha(1)-subunit gene (Na(v)1.1: SCN1A) is responsible for generalized epilepsy with febrile seizures plus (GEFS+2). Here the authors report two novel disease mutations of Na(v)1.1 in patients with febrile seizures associated with afebrile partial seizures. One is a Val1428Ala substitution in the pore-forming region, and the other is Ala1685Val in the transmembrane helix. These results support the previous findings and contribute to the reliable diagnosis of epilepsy.

Amino Acid Sequence↗

Cloning of human PRP4 reveals interaction with Clk1.

Prp4 is a protein kinase of Schizosaccharomyces pombe identified through its role in pre-mRNA splicing, and belongs to a kinase family including mammalian serine/arginine-rich protein-specific kinases and Clks, whose substrates are serine/arginine-rich proteins. We cloned human PRP4 (hPRP4) full-length cDNA and the antiserum raised against a partial peptide of hPRP4 recognized 170-kDa polypeptide in HeLa S3 cell extracts. Northern blot analysis revealed that hPRP4 mRNA was ubiquitously expressed in multiple tissues. The extended NH(2)-terminal region of hPRP4 contains an arginine/serine-rich domain and putative nuclear localization signals. hPRP4 phosphorylated and interacted with SF2/ASF, one of the essential splicing factors. Indirect immunofluorescence analysis revealed that endogenous hPRP4 was distributed in a nuclear speckled pattern and colocalized with SF2/ASF in HeLa S3 cells. Furthermore, hPRP4 interacted directly with Clk1 on its COOH terminus, and the arginine/serine-rich domain of hPRP4 was phosphorylated by Clk1 in vitro. Overexpression of Clk1 caused redistribution of hPRP4, from the speckled to the diffuse pattern in nucleoplasm, whereas inactive mutant of Clk1 caused no change of hPRP4 localization. These findings suggest that the NH(2)-terminal region of hPRP4 may play regulatory roles under an unidentified signal transduction pathway through Clk1.

Amino Acid Sequence↗

Crystallization and preliminary X-ray diffraction analysis of NADP-dependent glyceraldehyde-3-phosphate dehydrogenase of Synechococcus PCC 7942.

The NADP-dependent glyceraldehyde-3-phosphate dehydrogenase (GAPDH) of Synechococcus PCC 7942 was crystallized in two different forms by the hanging-drop vapour-diffusion method using ammonium sulfate as a precipitant. Form I crystals were hexagonal, space group P6(5) or P6(1), with unit-cell parameters a = b = 91.1, c = 428.6 A, gamma = 120 degrees. Form II crystals were monoclinic, space group C2, with unit-cell parameters a = 152.3, b = 80.9, c = 213.6 A, beta = 103.1 degrees. Native data were collected from a frozen crystal of form I to a resolution of 2.8 A using synchrotron radiation at SPring-8, whereas form II crystals were easily damaged by radiation at room temperature and increased mosaicity in cryoprotectant solutions. A molecular-replacement solution of the form I crystal was obtained in space group P6(5) using the program AMoRe and the structure of the NAD-dependent GAPDH from Bacillus stearothermophilus.

Crystallization↗

A missense mutation of the Na+ channel alpha II subunit gene Na(v)1.2 in a patient with febrile and afebrile seizures causes channel dysfunction.

Generalized epilepsy with febrile seizures plus (GEFS+), a clinical subset of febrile seizures (FS), is characterized by frequent episodes beyond 6 years of age (FS+) and various types of subsequent epilepsy. Mutations in beta1 and alpha(I)-subunit genes of voltage-gated Na(+) channels have been associated with GEFS+1 and 2, respectively. Here, we report a mutation resulting in an amino acid exchange (R188W) [corrected] in the gene encoding the alpha-subunit of neuronal voltage-gated Na(+) channel type II (Na(v)1.2) in a patient with FS associated with afebrile seizures. The mutation R188W [corrected] occurring on Arg(187), a highly conserved residue among voltage-gated Na(+) channels, was not found in 224 alleles of unaffected individuals. Whole-cell patch clamp recordings on human embryonic kidney (HEK) cells expressing a rat wild-type (rNa(v)1.2) and the corresponding mutant channels showed that the mutant channel inactivated more slowly than wild-type whereas the Na(+) channel conductance was not affected. Prolonged residence in the open state of the R188W [corrected] mutant channel may augment Na(+) influx and thereby underlie the neuronal hyperexcitability that induces seizure activity. Even though a small pedigree could not show clear cosegregation with the disease phenotype, these findings strongly suggest the involvement of Na(v)1.2 in a human disease and propose the R188W [corrected] mutation as the genetic defect responsible for febrile seizures associated with afebrile seizures.

Amino Acid Substitution↗

Cloning, expression, and mapping of a mouse gene, Uchl4, highly homologous to human and mouse Uchl3.

Ubiquitin carboxyl-terminal hydrolases (UCHs) are implicated in the proteolytic processing of polymeric ubiquitin. We have isolated a novel mouse gene for ubiquitin carboxyl-terminal hydrolase isozyme L4. The gene named Uchl4 encodes a novel member of the family of ubiquitin carboxyl-terminal hydrolases (UCHs) whose predicted amino acid sequence shows 95% identity to mouse UCH-L3 and 94% identity to human UCH-L3. Genomic structure, chromosome localization, and expression pattern of Uchl3 and Uchl4 were characterized in the mouse. Both Uchl3 and Uchl4 were expressed in various tissues examined; however, expression level was quite lower in Uchl4. While Uchl3 consists of at least 9 exons spanning about 12 kb, Uchl4 was an intronless gene with a size of about 2 kb. By PCR-based analysis with T31 radiation hybrid mapping panel, Uchl3 and Uchl4 were mapped on mouse chromosome 9 and 14, respectively.

Amino Acid Sequence↗

Characterization of monoclonal antibodies against ascorbate peroxidase isoenzymes: purification and epitope-mapping using immunoaffinity column chromatography.

We have developed three monoclonal antibodies against spinach chloroplastic (chl-mAb3 and chl-mAb6) and cytosolic (cyt-mAb1) ascorbate peroxidase (APX) isoenzymes to analyze the cross-reactivity and the structure of the epitopes for each monoclonal antibody. All three antibodies reacted specifically with their respective isoenzymes, but none cross-reacted with the others. Immunoreactive fragments in proteolytic recombinant APX isoenzymes were detected by means of the absorption on the corresponding immunoaffinity column. The cyt-mAb1 reacted with a peptide fragment containing the distal His region obtained by the lysyl endopeptidase digestion. The chl-mAb6 was capable of binding to the fragment, D-I-K-E-K-R, which is consistent with an inherent region of chloroplastic isoenzymes. No fragments reacting to the chl-mAb3 could be found in this study, suggesting that the chl-mAb3 recognizes a conformationally constituted epitope of the chloroplastic APX molecule, which may be destroyed by the enzymatic cleavage. We concluded that the peptides identified as epitopes are characteristic evidence of monoclonal antibodies.

Amino Acid Sequence↗

Female gastrin-releasing peptide receptor (GRP-R)-deficient mice exhibit altered social preference for male conspecifics: implications for GRP/GRP-R modulation of GABAergic function.

We studied female GRP-R-deficient mice with respect to olfactory function and social behavior toward male conspecifics. Results of a food exploration test (hidden cookie method) revealed that the olfactory ability of these mutant mice is identical to that of wild-type mice. However, when preference toward either a socially dominant or subordinate male mouse was assessed in a social preference test, wild-type mice showed a greater preference for socially dominant males than did GRP-R-deficient mice. In contrast, in a social investigation test to an anesthetized male mouse, GRP-R-deficient mice exhibited greater investigatory behavior toward the target male than did wild-type mice. When female C57BL/6J mice were given diazepam (0, 1, 2 or 4 mg/kg, i.p.), their investigatory behavior to the anesthetized male target was increased in a dose-dependent manner. Conversely, i.p. administration of bicuculline (1 mg/kg) significantly decreased the social investigatory behavior of female GRP-R-deficient mice, but not of wild-type mice. These results indicate that female GRP-R-deficient mice exhibit altered responsiveness to male conspecifics relative to their wild-type counterparts, and suggest that this outcome may be attributable, at least in part, to altered GABAergic function in these mutant mice.

Anesthesia↗

In vitro assembly of phytochrome B apoprotein with synthetic analogs of the phytochrome chromophore.

Phytochrome B (PhyB), one of the major photosensory chromoproteins in plants, mediates a variety of light-responsive developmental processes in a photoreversible manner. To analyze the structural requirements of the chromophore for the spectral properties of PhyB, we have designed and chemically synthesized 20 analogs of the linear tetrapyrrole (bilin) chromophore and reconstituted them with PhyB apoprotein (PHYB). The A-ring acts mainly as the anchor for ligation to PHYB, because the modification of the side chains at the C2 and C3 positions did not significantly influence the formation or difference spectra of adducts. In contrast, the side chains of the B- and C-rings are crucial to position the chromophore properly in the chromophore pocket of PHYB and for photoreversible spectral changes. The side-chain structure of the D-ring is required for the photoreversible spectral change of the adducts. When methyl and ethyl groups at the C17 and C18 positions are replaced with an n-propyl, n-pentyl, or n-octyl group, respectively, the photoreversible spectral change of the adducts depends on the length of the side chains. From these studies, we conclude that each pyrrole ring of the linear tetrapyrrole chromophore plays a different role in chromophore assembly and the photochromic properties of PhyB.

Absorption↗

Generation of polyclonal antiserum against the growth hormone secretagogue receptor (GHS-R): evidence that the GHS-R exists in the hypothalamus, pituitary and stomach of rats.

Growth hormone (GH) secretagogues (GHSs), which stimulate GH secretion, are synthetic compounds that act through the GHS receptor (GHS-R) which has been recently cloned. We raised an antiserum in a rabbit against a synthetic peptide corresponding to amino acid residues 248-260 of the third intracellular loop of the rat GHS-R. A competitive immunoassay showed that the antiserum had a specific affinity for the target peptide. To confirm the specificity of the antiserum, the GHS-R cDNA was stably expressed in COS-7 cells. In Western blot analysis, the band was detected at 44 kDa in the extracts from COS-7 cells expressing GHS-R (COS-7/tf3-2) but not in those from wild-type COS-7 cells. Furthermore, while COS-7/tf3-2 cells were strongly immunostained for GHS-R, no GHS-R-like immunoreactivity was observed in wild-type COS-7 cells. Immunoreactive bands were also observed at approximately 46 kDa in the extracts from rat hypothalamus, pituitary and stomach by Western blot analysis. These studies are the first to show the existence of GHS-R protein in the stomach. The antiserum for the GHS-R is sensitive and specific, and it would be useful for clarifying the roles of GHS/ghrelin.

Animals↗

Diagnostic significance of tau protein in cerebrospinal fluid from patients with corticobasal degeneration or progressive supranuclear palsy.

Distinguishing corticobasal degeneration (CBD) from progressive supranuclear palsy (PSP) is clinically and pathologically difficult, and a useful biological marker to discriminative these two diseases has been a subject of clinical interest. In the present study, we assessed tau protein levels in cerebrospinal fluids by sandwich ELISA to distinguish CBD from PSP. The subjects consisted of 27 cases of CBD, 30 cases of PSP, and 36 healthy controls (CTL). The tau values in CBD were significantly higher than those in PSP (P<0.001) and those in CTL (P<0.001). The assay of CSF tau provided diagnostic sensitivity of 81.5% and specificity of 80.0% between CBD and PSP according to receiver-operating characteristic (ROC) curve analysis. When values were compared separately with respect to stage of the disease, differences in the values for moderate CBD vs. moderate PSP had the greatest significance (P<0.001 sensitivity 92.3%, specificity 100.0%), followed by cases of mild CBD and PSP (P<0.005, sensitivity 100.0%, specificity 87.5%). The values in severe CBD and PSP were not significantly different (P=0.07, sensitivity 100%, specificity 75.0%). Using data obtained from a larger number of disease cases, we confirmed our previous findings that tau protein levels in cerebrospinal fluids in patients with CBD are significantly higher than those in patients with PSP. Because tau protein levels in cerebrospinal fluids are significantly higher in early CBD cases than in early PSP cases, measurement of tau protein levels in cerberospinal fluids may be useful for the differential diagnosis of early CBD from early PSP.

Aged↗

Quantification of suppression of bitterness using an electronic tongue.

Phospholipids, such as phosphatidic acid, suppress bitter taste without affecting other taste qualities. In the present study, we detected and quantified this suppression effect with an electronic tongue whose transducer is composed of several kinds of lipid/polymer membranes with different characteristics. We measured a phospholipid cocktail and various kinds of taste substances with five basic taste qualities. The responses to quinine hydrochloride and L-tryptophan, which have a bitter taste, were reduced as the phospholipid concentration was increased, and the responses to the other taste substances were not affected by the phospholipids, as with the human sensation test. Furthermore, the change of bitter intensity caused by phospholipid was quantified by principal component analysis and the tau scale, which expresses the relationship between taste intensity and taste substance concentration. The results are compared with those of the human sensory test and discussed.

Computer Simulation↗

Intraoperative ultrasonographically guided direct ethanol injection for a brain metastasis from renal cell carcinoma: case report.

A 60-year-old man presented with a brain metastasis from renal cell carcinoma (RCC). Computer tomography revealed a homogeneously enhanced tumor, 3.0 cm in maximum diameter, in the right medial temporal lobe. Cerebral angiography revealed that the tumor was mainly fed by the right posterior cerebral artery. Surgery was performed via right temporal craniotomy. After craniotomy, under ultrasonography (US) guidance, a total of 3.0 ml of ethanol was injected into the tumor to diminish the intratumoral vascular flow. Ultrasonographic guidance was very useful in monitoring the intratumoral vascular flow. After a marked decrease in the vascular flow, the tumor was totally removed using piecemeal technique. During surgery, only minimal bleeding from the tumor was noted. The postoperative course was uneventful, with no evidence of injected ethanol-related complications. In conclusion, this can be a safe, easy, and effective therapeutic technique for diminishing vascular flow within brain tumors rich in vascularity, such as brain metastases from RCC.

Brain Neoplasms↗

A repeated pancreatectomy in the remnant pancreas 22 months after pylorus-preserving pancreatoduodenectomy for pancreatic adenocarcinoma.

We report a case of a repeated curative pancreatic resection in the remnant distal pancreas 22 months after pylorus-preserving pancreatoduodenectomy (PpPD). The patient was a 52-year-old woman with a past history of PpPD for adenocarcinoma of the head of the pancreas 22 months prior to the present operation. The original tumor was histopathologically diagnosed as a papillary adenocarcinoma with clear surgical margin at the surgical cut end of the pancreas (R0, International Union Against Cancer [UICC] classification). Twenty months after the PpPD, a follow-up computed tomography (CT) scan showed multiple low-density lesions in the body and tail of the pancreas without any other distant metastasis. A second operation, curative resection of the remnant pancreas, with splenectomy and distal gastrectomy, was performed. The second tumor was a papillary adenocarcinoma, the same diagnosis as that of the first tumor, and it also showed similar histopathological findings, including immunohistochemical staining of Ki-67 and p53 protein, and the same pattern of K-ras point mutation. The patient is considered to have shown a rare, unique pancreatic cancer with metachronous carcinogenesis in the remnant pancreas.

Adenocarcinoma, Papillary↗

Expression of fas/fas ligand (fasL) and its involvement in infiltrating lymphocytes in hepatocellular carcinoma (HCC).

BACKGROUND: This study was conducted to examine the expression of Fas/Fas ligand (FasL), to elucidate its relationship with tumor-infiltrating lymphocytes (TILs), and to detect possible gene mutation of Fas/FasL in patients with hepatitis C virus (HCV)-related hepatocellular carcinoma (HCC). METHODS: Indirect immunohistochemical staining was performed on formalin-fixed, paraffin-embedded sections of liver biopsy and surgery specimens from five normal livers, and from the livers of 30 patients with HCC. Fas/FasL mRNA-expressing cells and apoptotic cells were detected by in situ hybridization and DNA nick end labeling (TUNEL), respectively. We also performed polymerase chain reaction (PCR)-amplifying and direct sequencing for the Fas/FasL gene. RESULTS: Fas/FasL and its mRNA were localized on the membrane or in the cytoplasm in some HCC cells, as well as hepatocytes. Their expression was enhanced in areas with infiltrating inflammatory cells in the noncancerous regions of liver tissue and on the margins of the cancerous tissue. The positivity rate for TUNEL was elevated along these margins. The labeling index of Fas/FasL was lower in the cancerous liver tissue than in the surrounding noncancerous region (P < 0.01), and tended to decrease in proportion to the malignancy of tumor cells; Fas/FasL expression was not found on poorly differentiated type cancer cells. Fas(-)/FasL(+), FasL-mRNA(+) HCC cells were seen in one specimen of moderately differentiated type. Some CD8+T lymphocytes were TUNEL-positive around the cancerous region. In this study, cancerous and noncancerous tissues in HCC revealed no genetic mutations in any exons of Fas/FasL. CONCLUSIONS: These findings suggest that Fas/FasL expression was decreased in proportion to the malignancy of tumor cells, and that infiltrating CD8+ T lymphocytes play a role in apoptosis in HCC. The apoptosis in HCC could be regulated by the suppression of Fas/FasL expression, or, sometimes, by the enhancement of FasL expression.

Aged↗