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S Yajima

Publications and source records attributed to S Yajima.

At least 55 records · Page 3Linked to original sources

Sequence-specific 1H and 15N resonance assignments and secondary structure of GDP-bound human c-Ha-Ras protein in solution.

All the backbone 1H and 15N magnetic resonances (except for Pro residues) of the GDP-bound form of a truncated human c-Ha-ras proto-oncogene product (171 amino acid residues, the Ras protein) were assigned by 15N-edited two-dimensional NMR experiments on selectively 15N-labeled Ras proteins in combination with three-dimensional NMR experiments on the uniformly 15N-labeled protein. The sequence-specific assignments were made on the basis of the nuclear Overhauser effect (NOE) connectivities of amide protons with preceding amide and/or C alpha protons. In addition to sequential NOEs, vicinal spin coupling constants for amide protons and C alpha protons and deuterium exchange rates of amide protons were used to characterize the secondary structure of the GDP-bound Ras protein; six beta stands and five helices were identified and the topology of these elements was determined. The secondary structure of the Ras protein in solution was mainly consistent with that in crystal as determined by X-ray analyses. The deuterium exchange rates of amide protons were examined to elucidate the dynamic properties of the secondary structure elements of the Ras protein in solution. In solution, the beta-sheet structure in the Ras protein is rigid, while the second helix (A66-R73) is much more flexible, and the first and fifth helices (S17-124 and V152-L171) are more rigid than other helices. Secondary structure elements at or near the ends of the effector-region loop were found to be much more flexible in solution than in the crystalline state.

Amino Acid Sequence↗

The secondary structure of the colicin E3 immunity protein as studied by 1H-1H and 1H-15N two-dimensional NMR spectroscopy.

By performing 1H-1H and 1H-15N two-dimensional (2D) nuclear magnetic resonance (NMR) experiments, the complete sequence-specific resonance assignment was determined for the colicin E3 immunity protein (84 residues; ImmE3), which binds to colicin E3 and inhibits its RNase activity. First, the fingerprint region of the spectrum was analyzed by homonuclear 1H-1H HOHAHA and NOESY methods. For the identification of overlapping resonances, heteronuclear 1H-15N (HMQC-HOHAHA, HMQC-NOESY) experiments were performed, so that the complete 1H and 15N resonance assignments were provided. Then the secondary structure of ImmE3 was determined by examination of characteristic patterns of sequential backbone proton NOEs in combination with measurement of exchange rates of amide protons and 3JHN alpha coupling constants. From these results, it was concluded that ImmE3 contains a four-stranded antiparallel beta-sheet (residues 2-10, 19-22, 47-49, and 71-79) and a short alpha-helix (residues 31-36).

Amino Acid Sequence↗

Complementation study of peroxisome-deficient disorders by immunofluorescence staining and characterization of fused cells.

Genetic heterogeneity in peroxisome-deficient disorders, including Zellweger's cerebrohepatorenal syndrome, neonatal adrenoleukodystrophy and infantile Refsum disease, was investigated. Fibroblasts from 17 patients were fused using polyethylene glycol, cultivated on cover slips, and the formation of peroxisomes in the fused cells was visualized by immunofluorescence staining, using anti-human catalase IgG. Two distinct staining patterns were observed: (1) peroxisomes appeared in the majority of multinucleated cells, and (2) practically no peroxisomes were identified. Single step 12-(1'-pyrene) dodecanoic acid/ultraviolet (P12/UV)-selection confirmed that the former groups were resistant to this selection, most of the surviving cells contained abundant peroxisomes, and the latter cells died. In the complementary matching, [1-14C]lignoceric acid oxidation and the biosynthesis of peroxisomal proteins were also normalized. Five complementation groups were identified. Group A: Zellweger syndrome and infantile Refsum disease; Groups B, C and D: Zellweger syndrome; Group E: Zellweger syndrome, neonatal adrenoleukodystrophy and infantile Refsum disease. We compared these groupings with those of Roscher and identified eight complementation groups. There was no obvious relation between complementation groups and clinical phenotypes. These results indicate that the transport, intracellular processing and function of peroxisomal proteins were normalized in the complementary matching and that at least eight different genes are involved in the formation of normal peroxisomes and in the transport of peroxisomal enzymes.

Adrenoleukodystrophy↗

Transformation and characterization of mutant human fibroblasts defective in peroxisome assembly.

Human skin fibroblasts deficient in peroxisome biogenesis were transformed by transfecting SV40 ori- DNA with the use of an electroporator, and the biochemical, immunocytochemical, and cytogenetic properties of the transformants were analyzed. Cells (1 x 10(6)) from a patient with Zellweger syndrome and one with neonatal adrenoleukodystrophy were suspended with 2 micrograms of SV40 ori- DNA in PBS; then a high-voltage pulse (2000 V, 30 microseconds) was generated two times. Several colonies expressing large T-antigen were picked up 4 weeks after transfection. Doubling time of the transformants was about half of that and the saturation density was 5 to 10 times greater than that of the parental cells. Biochemical abnormalities including defective lignoceric acid oxidation, dihydroxyacetone phosphate acyltransferase deficiency, and disturbed biosynthesis of peroxisomal beta-oxidation enzymes were preserved in the transformants. Peroxisomes were defective in all colonies, as determined by immunofluorescence staining using anti-catalase IgG. Cell fusion studies confirmed that the transformants belong to the same complementation groups as those of the parental cells. These transformed mutant cell lines are expected to be useful tools for investigating the pathogenesis of inherited diseases related to defects in peroxisome biogenesis.

Acyltransferases↗

Improvement of clinical and MRI findings in a boy with adrenoleukodystrophy by dietary erucic acid therapy.

A 5-year-old boy with adrenoleukodystrophy, with clinical symptoms of visual, mental and motor disturbances which progressed rapidly, was treated with Lorenzo's oil consisting 1 volume of glyceryl trierucate and 4 volumes of glyceryl trioleate. Five months after initiation of this therapy, ability to swallow was enhanced and T2-weighted magnetic resonance imaging of the brain revealed regression of high intensity area of the parieto-occipital white matter.

Adrenoleukodystrophy↗

Different intracellular localization of peroxisomal proteins in fibroblasts from patients with aberrant peroxisome assembly.

We investigated intracellular localization of peroxisomal proteins in fibroblasts from patients with Zellweger syndrome and neonatal adrenoleukodystrophy in whom peroxisomes were morphologically deficient or severely decreased. Indirect immunofluorescence staining revealed that catalase was mainly detected in the cytosol of fibroblasts from these patients, but a small amount of catalase was detected in granular pattern in a small percentage of cells. Double immunofluorescence staining revealed that catalase-containing particles in these patients also contained acyl-CoA oxidase and nonspecific lipid transfer protein. However, a 70 kD integral membrane protein and 3-ketoacyl-CoA thiolase were detected in all cells in granular pattern. Subcellular fractionation using digitonin after cell labeling revealed that a small amount of acyl-CoA oxidase and about half of thiolase in the precursor form were detected in the particulate fraction. These data suggest that the mechanisms of the transport and processing of catalase, acyl-CoA oxidase and nonspecific lipid transfer protein are different from those of the 70 kD integral membrane protein and 3-ketoacyl-CoA thiolase.

Acyl-CoA Oxidase↗

Effects of sodium 2-[5-(4-chlorophenyl)pentyl]-oxirane-2-carboxylate (POCA) on fatty acid oxidation in fibroblasts from patients with peroxisomal diseases.

The effects of sodium 2-[5-(4-chlorophenyl)pentyl]oxirane-2-carboxylate (POCA), a potent inhibitor of carnitine palmitoyltransferase I, on fatty acid oxidation were investigated using fibroblasts from control subjects and from patients with peroxisomal disorders. [1-14C]Palmitate oxidation was inhibited by 8% of the control value when 15 microM POCA was added to the medium. The inhibition by POCA was significantly (P less than 0.05) stronger in fibroblasts from patients with Zellweger syndrome or with neonatal adrenoleukodystrophy, in which peroxisomes and peroxisomal beta-oxidation enzymes were absent. However, the inhibition in fibroblasts from patients with X-linked adrenoleukodystrophy, in which a specific defect of peroxisomal lignoceroyl-CoA synthetase was speculated, was similar to that in the controls. [1-14C]Lignocerate oxidation was not influenced by the addition of POCA, in samples from the controls and from the patients. These results indicate that peroxisomes account for a small but demonstrable proportion of palmitate oxidation, and add new evidence to the concept that lignocerate is oxidized exclusively in the peroxisomes. Our findings also support the hypotheses that the activity of palmitoyl-CoA synthetase and the enzymes of beta-oxidation cycle in peroxisomes are normal in patients with X-linked adrenoleukodystrophy and that a specific defect of lignoceroyl-CoA synthetase is responsible for the accumulation of very long chain fatty acids in these patients.

Adrenoleukodystrophy↗

Angiotensin-induced hypertension chemotherapy in children with advanced solid tumors.

Angiotensin-induced hypertension chemotherapy (IHC) was investigated in six children with the following advanced malignancies: hepatocellular carcinoma, extraskeletal Ewing's sarcoma, sacrococcygeal malignant teratoma, small round cell tumor of the chest wall, hepatoblastoma and osteogenic sarcoma. Partial response was achieved in three of these patients, two showed no change, and in one IHC was used as adjuvant chemotherapy. The side effects of IHC were minimal and tolerable. Angiotensin-IHC may provide a new approach to pediatric cancer chemotherapy.

Adolescent↗

Signal peptide of the colicin E2 lysis protein causes host cell death.

Colicin E2 is encoded by the SOS-inducible colicin operon of plasmid ColE2-P9. Highly induced colicin E2 is excreted from the E. coli host cell, accompanied by quasi-lysis and cell death. These three events are all directed by the colicin lysis protein that comprises the signal peptide and a small mature lipoprotein. We constructed a mutant lysis gene encoding its complete signal peptide with addition of two external amino acids at the C-terminus. By using this mutant peptide as a reference, the wild type lysis signal peptide was identified and shown to remain quite stable after the cleavage. This mutant peptide also mimics the cleaved-off signal peptide avoiding the influence of the mature lysis lipoprotein, and suggested that cell death by the lysis protein, but neither colicin excretion nor quasi-lysis, is decided by the nature of its signal region.

Base Sequence↗

Non-Hodgkin's lymphoma in patients under twenty years of age. A clinicopathological study.

A retrospective clinicopathological study was performed on 149 patients who developed malignant lymphoma at under 20 years of age and were diagnosed and treated at the National Cancer Center Hospital between 1962-1986. Using the Japanese Lymphoma Study Group classification (and Working Formulation), we reclassified the 84 evaluable tissue specimens as follows: follicular large and mixed lymphoma (two cases), diffuse lymphoblastic lymphoma (40 cases), Burkitt's lymphoma (small noncleaved, SNC) (12 cases), diffuse large and mixed cell lymphoma (25 cases), and unclassified (five cases). The age of the patients ranged from 6 months to 20 years, with a median of 11 years. The clinical characteristics were found to depend upon the histological diagnosis, as reported previously. To evaluate the influence of various clinical and morphological parameters on survival, univariate analysis was performed for each histological subtype. In lymphoblastic lymphoma, patients with a mediastinal mass had significantly earlier development of leukemic conversion and a shorter survival than patients without a mass. Because of the small number of patients and their short survival, no significant prognostic factors were found in Burkitt's lymphoma (SNC). In large and mixed cell lymphoma, response to therapy was the most significant prognostic factor. As therapy became more intense and systematic throughout the study period, the complete remission rate and survival improved steadily. Autopsy findings confirmed that lymphoblastic lymphoma and Burkitt's lymphoma (SNC) spread systemically earlier than large and mixed cell lymphoma.

Adolescent↗

[Echocardiographic manifestations of excessive pulmonary artery banding in patients with transposition of the great arteries without ductal or ventricular shunt].

Recently, pulmonary arterial banding (PAB) and the Blalock-Taussig shunting operation (B-T) have been performed as a preparatory procedure for Jatene's operation for patients with complete transposition of the great arteries (TGA) without patent ductus arteriosus (PDA) or ventricular septal defect (VSD). We reviewed the echocardiographic findings of 29 patients after PAB and B-T. Four cases had abnormal catheterization data after PAB and B-T (Group 1). Twenty-five control cases with successful two-stage Jatene's operation exhibited normal data (Group 2). We studied 1) the grade of distortion of the interventricular septum as the a/b ratio on two-dimensional echocardiogram (2-DE), 2) the left ventricular (LV) shortening fraction (LVSF), 3) the thickening fraction (ThF), 4) the LV posterior wall thickness in diastole (LVPWTd) on M-mode echocardiogram, and 5) the LV inflow tract (LVIT) flow pattern on pulsed Doppler echocardiogram. In Group 1, all cases revealed LVSF less than 0.19 (control group: 0.40-0.56), ThF less than 0.18 (control group: 0.43-0.81), the a/b ratio higher than 0.88 (control group: 0.53-0.79), and LVPWTd thicker than 0.67 cm (control group: 0.45-0.59 cm). These data are markedly deviated from the range of the control data (p < 0.01). All cases in Group 1 had LVIT flow lacking the rapid filling phase, which was recognized in the control group. These abnormal echocardiographic findings suggest LV failure in adaptation against excessive after-load due to very tight PAB, and these figures are very different from the control group. These unusual postoperative cardiac abnormalities can be detected noninvasively using 2-DE and Doppler echocardiography.(ABSTRACT TRUNCATED AT 250 WORDS)

Echocardiography↗

[Azygos and hemiazygos connections imaged by two-dimensional, and pulsed and color Doppler echocardiography].

Identification of the azygos or hemiazygos connection is important in the diagnosis of congenital heart disease, especially in cases of the polysplenia syndrome. Although two-dimensional echocardiographic observation of this anomaly has been reported, the direct visualization of drainage sites is still rather difficult. A method for visualizing the azygos or hemiazygos connection by a combined use of two-dimensional and pulsed and color Doppler echocardiography was reported here. Subjects consisted of 10 patients with the polysplenia syndrome, each of whom had been confirmed as having the azygos or hemiazygos connection; five each of the azygos and hemiazygos types. The transducer was placed over the second intercostal space on the right side for the azygos, and on the left side for hemiazygos connection. The two-dimensional echocardiographic plane was adjusted to visualize the long-axis view of the superior vena cava; the right superior vena cava for the azygos and the left superior vena cava for the hemiazygos connection. The mode of the equipment was changed to color Doppler, and an orange-colored blood flow toward the transducer, draining into the superior vena cava was carefully sought. Finally the pulsed Doppler mode was selected and the sampling volume was set in the orange-colored area. The wave form of the pulsed Doppler echocardiogram of the azygos or hemiazygos vein potentially had two peaks per cardiac cycle, and was modified by respiration. We found azygos or hemiazygos veins coursing from the posterior aspect of the right pulmonary artery in seven of 10 cases by two-dimensional echocardiography alone, while we observed all veins by the additional use of color and pulsed Doppler echocardiography.

Adolescent↗

Localization of S-antigen under various conditions of light or dark adaptation in the rabbit.

The localization of the S-antigen was studied by electron microscopy in the rabbit eye, under three conditions of adaptation: A) 24-hour dark adaptation, B) 24-hour dark adaptation and 1.5-hour light adaptation and C) light adaptation for 30 hours. The Fab' fraction of the IgG of rabbit against the swine S-antigen was labeled with horseradish peroxidase (HRP) and was used as the marking antibody. In Group A, the HRP reaction products indicating the S-antigen were found mainly in the disk and plasma membranes of the outer segments of the photoreceptor cells. The reaction products were also found diffusely in the cytoplasm of the inner segment with the exception of the mitochondria and nucleus. In Group B, the phagosomes were found surrounded by the multilayered microvilli of the retinal pigment epithelial (RPE) cells; the reaction products were scarcely found in the phagosomes but were seen in the microvilli. Some weak reaction products were also encountered in the cytoplasm of the RPE cells. In Group C, after 30-hour light adaptation, many phagosomes were found but they contained almost no reaction products. However, the microvilli of the RPE cells surrounding the phagosomes showed a fair amount of the reaction products. The cytoplasm of the RPE cells contained abundant reaction products, particularly in the area of the basal infoldings. The reaction products were also seen in the Bruch's membrane and the endothelial cells of the choriocapillaris. It was thought that the S-antigen is taken up by the RPE during phagocytosis of the shed outer segments and is transported to the choriocapillaris.

Adaptation, Physiological↗