Acromegaly and pituitary carcinoma.
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Biomedical subjects
Publications and source records attributed to S Yamashita.
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The mode of action of tachyplesin I, an antimicrobial cationic heptadecapeptide amide isolated from the hemocyte debris of a horseshoe crab, Tachypleus tridentatus, toward lipid matrices was studied with synthetic tachyplesin I, its analogs with Phe in place of Trp or Tyr, a linear analog with no disulfide bonds, and two linear short fragments. Circular dichroism spectra showed that tachyplesin I took an antiparallel beta-structure in buffer solution and a certain less ordered structure in acidic liposomes composed of egg phosphatidylcholine and egg phosphatidylglycerol (3:1). Spectrophotometric titration of the peptides with laurylphosphorylcholine revealed that both Trp and Tyr residues orient toward the inside of lipid matrices, suggesting that they are on the same side of the peptide backbone. The carboxyfluorescein leakage experiment and fluorescence data indicated that tachyplesin I interacted strongly with neutral and acidic lipid bilayers and an aromaticity-rich hydrophobic part of the peptide was embedded in lipid membranes. All the peptides except for the short fragments were almost equally active in lipopolysaccharide binding. The energy-transfer experiment showed that a conformational change occurred such that the Tyr and Trp residues are positioned more closely to each other in acidic liposomes than in buffer solution. The present study strongly suggested that amphipathic lipid bilayers induced a conformational change of tachyplesin I from an energetically stable beta-structure to a less ordered, probably more amphipathic structure.
In the present study, we report the molecular cloning and sequencing of an alternatively spliced form of the human thyrotropin receptor (hTSHR) mRNA transcript, which has previously been detected on Northern blot analysis of human thyroid cells. The smaller hTSHR cDNA, designated hTSHR cDNA-I, is approximately 1 kb in size and encodes a protein of 253 amino acids. Comparison of the nucleotide sequence of hTSHR cDNA-I with available hTSHR genomic sequence data reveals that the cDNA-I contains exons 1-8 and unidentified DNA tract, presumably an intron. Thus, the hTSHR cDNA-I encodes for the N-terminal half of the extracellular domain of the hTSHR (approximately 60%). The truncated TSHR-I may be secreted and function as a TSH binding protein.
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The CTP: phosphocholine cytidylyltransferase (CT) gene from yeast and cDNA from rat liver were over-expressed 20-30-fold in COS cells. Most of the CT activities were found in the cytosolic fraction. The regulation of the yeast CT activity (Y-CT) by lipids was characterized for the first time in comparison with the regulation of the well-studied rat CT (R-CT). Sonicated vesicles composed of egg phosphatidylcholine (PC) or 1-stearoyl-2-oleoyl PC had no effect on Y-CT and only slightly stimulated R-CT activity. Both CTs were activated 10-50-fold by the anionic lipids cardiolipin, phosphatidyl-glycerol, phosphatidylinositol and oleic acid. The effects of varying the vesicle concentration and the mol% of anionic lipid in PC vesicles were tested. The concentration optima for the activation of Y-CT by oleic acid or anionic phospholipids were 5-10-fold lower than those for R-CT. For example, the stimulation of Y-CT activity by phosphatidylglycerol vesicles was optimal between 5 and 15 microM and declined at higher concentrations, but R-CT activation by these vesicles saturated at approximately 25 microM. The positively charged aminolipid sphingosine antagonized the stimulation by oleic acid of both Y-CT and R-CT. Y-CT activity was insensitive to PC vesicles containing the neutral lipids diacylglycerol, monoacylglycerol or oleyl alcohol. However, R-CT was stimulated 10-20-fold by vesicles containing these neutral lipids. Translocation of the CTs to microsomal membranes enriched with anionic or neutral lipids was compared. Oleic acid enrichment promoted translocation of Y-CT and R-CT, whereas diacylglycerol promoted only R-CT translocation. These data show that the activity of Y-CT is lipid-sensitive. Y-CT is affected only by charged lipids, whereas R-CT responds to charged and neutral lipid activators. The data are consistent with different modes of interaction of the two CTs with lipids.
Immunoreactive endothelin 1 (irET-1) concentrations were measured in extracts prepared from 4 phyllodes tumors and 14 fibroadenomas. irET-1 was detectable in all tissue extracts by specific radioimmunoassay, and the mean concentration of irET-1 was 18-fold and 27-fold higher in tissue extracts from phyllodes tumors than in those from intracanalicular fibroadenomas and pericanalicular fibroadenomas, respectively. Reverse-phase high-performance liquid chromatography coupled with radioimmunoassay in the extracts from phyllodes tumors revealed one major irET-1 component corresponding to human standard ET-1. Furthermore, immunocytochemical staining for ET-1 revealed that numerous ET-1-immunoreactive cells were seen in the epithelial cells but not in the stromal cells, suggesting that ET-1 is synthesized by the epithelial component of phyllodes tumors. A possible paracrine role of ET-1 in the growth of this rare tumor which is characterized by its prominent stromal cellularity is discussed.
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Activities of trout metallothionein-A promoter and mouse metallothionein-I promoter in fish cells and fry were examined using the chloramphenicol acetyltransferase (CAT) gene as a reporter. Transfection and transient CAT assays on a trout liver cell line indicated that both promoters were inducible by metals, including zinc. In vivo activities of both promoters were examined using microinjection system into medaka eggs. Some of the hatched fry were exposed to zinc and their CAT activities were assayed. Both promoters revealed considerable activities after exposure to zinc while only weak activities were detected in unexposed fry.
A human choline kinase cDNA was cloned by complementation of the yeast choline kinase mutation, cki, from a human glioblastoma cDNA expression library. The deduced sequence of the human enzyme comprised 456 amino acids with a calculated relative molecular mass of 52,065. The human enzyme resembled the rat liver enzyme over the entire sequence. It also resembled the yeast enzyme in the carboxy-terminal region, but not much in the amino-terminal region.
A rat liver lambda gt11 cDNA library was screened with antibody against rat liver choline kinase. One of the putative phage clones obtained was found to express choline kinase activity in infected Escherichia coli cells and used for the isolation of fully extended cDNA clones by hybridization. The obtained clones had identical overlapping nucleotide sequences and gave a composite cDNA sequence of 2540 bases. Poly(A)+ tails were found at three different sites of the cDNA sequence. Within the sequence there was a large open reading frame encoding 435 amino acids with a molecular mass of 49,743 Da. When this open reading frame was placed after the trc promoter and introduced into E. coli cells, fully active choline kinase was produced. This enzyme was partially purified using a published choline kinase purification method and was found to mediate the phosphorylation of choline, N,N-dimethylethanolamine,N-monomethylethanolamine, and ethanolamine. Similar to the case with choline kinases from various sources, Km decreased as the number of N-methyl groups increased. The deduced amino acid sequence significantly resembled the yeast choline kinase sequence. It also showed local sequence similarity to protein kinases and some bacterial phosphotransferases. Northern blot analysis revealed that the cDNA probe hybridized to 2.8- and 1.8-kilobase RNA in various rat tissues. The sizes of the transcripts were fairly consistent with that of cDNA. The order of mRNA abundance was testis, brain, lung, kidney, and liver, but did not coincide with the order of the activity levels in these tissues. These results show that the cloned cDNA encodes one of the choline kinase isoforms present in mammalian tissues.
A Drosophila cDNA encoding a human transcription factor TFIIB homologue was isolated by PCR methods. The deduced amino acid sequence indicates 85% sequence similarity with human TFIIB, and the corresponding cDNA product expressed in Escherichia coli is interchangeable with human TFIIB for both basal and GAL4-VP16-induced transcription. Structural motifs including the direct repeats, basic repeats, and sigma sequence similarities are well conserved among Drosophila, human, and Xenopus TFIIB. However, the N-terminal region of each direct repeat is less conserved among the three species, suggesting the presence of two structural subdomains in the direct repeat. Moreover, the amino acid changes in the N-terminal subdomain produce altered positions of the conserved amino acids between the direct repeats. An overall similarity in general structural features between TFIIB and TFIID tau (the TATA-binding subunit of TFIID) was previously noted. However, in contrast to the sequence divergence reported for the N-terminal domains of TFIID tau from different species, the N-terminal sequence of TFIIB was highly conserved among the species. This suggests that TFIIB has a more rigid structure, consistent with its function as a "bridging" protein between TFIID and RNA polymerase II. Further implications of the TFIIB structure are discussed.
OBJECTIVE: Early diagnosis of Takayasu arteritis in the acute stage (prepulseless stage) is extremely difficult. Identification of a useful approach to detecting the initial changes of arteritis is therefore desirable. METHODS: Careful clinical examination of a young woman with persistent fever and dry cough revealed faintly audible bruits at the cervical, supraclavicular, and abdominal regions. Aortographic features suggested thickening of the wall of the descending thoracic aorta. Magnetic resonance imaging (MRI) of this area was diagnostic. RESULTS: MRI demonstrated involvement of the ascending aorta and right main pulmonary artery. Steroid therapy (prednisolone 60 mg/day) induced dramatic clinical and radiologic improvement in 2 months. CONCLUSION: This is the first report of MRI-documented reduction in the thickness of the walls of both the aorta and the pulmonary artery following steroid therapy.
A recombinant CHO cell line (GT19) secreting a high level of human growth hormone (hGH) was constructed with amplification of the introduced hGH gene. The cells grew well in the alpha MEM medium supplemented with 5% dialyzed fetal calf serum (dFCS), but not with less than 1% dFCS. Therefore we examined various medium components and obtained an improved medium which supported cell growth at low serum concentrations. The production of hGH by the cells was also enhanced in this medium.
Conventional chemical fixation and paraffin-embedding procedures give good preservation of morphology, although the antigenicity of many proteins in the tissue sample is destroyed. On the other hand, fresh frozen sections can preserve the antigenicity, but provide poor morphological preservation. To overcome this dilemma, cryofixation and freeze drying were used on human skin tissue, applying methodology which has only been used to study lymphoid tissue. First, fresh human skin was cryofixed in liquid isopentane (-160 degrees C) cooled by liquid nitrogen. The skin was then freeze-dried at -40 degrees C and 10(-2) atmospheric pressure for 72 h, followed by embedding in paraffin. Sections 4 microns thick taken from this cryofixed, freeze-dried, and paraffin-embedded skin were stained with hematoxylin-eosin or used for immunolabeling with antibodies against basement membrane antigen, including type IV and type VII collagen, bullous pemphigoid antigen, epidermolysis bullosa acquisita antigen, and GB3 antigen. The morphological preservation of these sections was as good as that of routine formalin-fixed and paraffin-embedded skin sections. The basement membrane was clearly immunostained with all antibodies used, and the intensity of the reaction was as strong as that seen in frozen sections. Evaluation of antigen distribution in conjunction with the detailed skin structure was therefore possible in the same sections.
OBJECTIVE: To investigate the effect of PaCO2 on cerebral blood flow (CBF) in chronic obstructive pulmonary disease (COPD). DESIGN: Before-after trial. SETTING: General ICU in a regional hospital. PATIENTS: 7 patients undergoing mechanical ventilation because of an exacerbation of COPD. INTERVENTION: CBF and cerebral metabolic rate of oxygen (CMRO2) of COPD were measured before and after hyperventilation and were compared by those of normal patients. CBF was measured by the Kety-Schmidt technique using 15% N2O. MEASUREMENTS/RESULTS: Hyperventilation produced a significant reduction in CBF in COPD with no concomitant change in CMRO2. CMRO2 in COPD was significantly lower than those in normal patients. The regression equation was shifted significantly more to the right in COPD. CONCLUSION: The sensitivity of CBF in CO2 remained but CMRO2 was reduced markedly in COPD patients.
A 54-year-old Japanese male was treated with a single shot of cisplatin-phosphatidylcholine-lipiodol (CPL) suspension due to bladder tumour (stage T2N0M0). Seven months later, a right lower ureteral stenosis developed. The possible cause of ureteral stenosis due to intra-arterial chemotherapy is discussed.
Recent reports have suggested that tissue-type plasminogen activator activity is regulated by estrogen in 7,12-dimethylbenz[a]anthracene-induced rat mammary carcinoma type I cells but is not necessarily regulated by estrogen in type II mammary carcinoma cells. We have compared the biological features of these two types of mammary carcinoma cells and have found that, although there is no difference in estrogen receptor content between these two cell types, the plasminogen activator activity markedly differs. Tissue-type plasminogen activator activity is significantly higher in type I carcinoma than in type II carcinoma, urokinase-type activity is significantly higher in type II carcinoma than in type I carcinoma. When these two types were compared in terms of rate of tumor growth, type II carcinomas clearly showed more rapid growth than type I carcinomas. Survival studies showed significantly shorter survival of type II tumor-bearing rats compared with type I tumor-bearing rats. Furthermore, type II carcinomas contained a greater proportion of aneuploid cells than type I carcinomas. These results suggest that type II carcinoma cells, in which estrogen is unable to regulate tissue-type plasminogen activator activity, are considered to be of a higher grade of malignancy than type I carcinoma cells.