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Biomedical subjects

K Sakaguchi

Publications and source records attributed to K Sakaguchi.

At least 289 records · Page 16Linked to original sources

Alteration of a nuclease in Fanconi anemia.

Fanconi anemia is a cancer-prone disease characterized by progressive loss of blood cells, skeletal defects and stunted growth. Studies of a nuclease acting on double-stranded DNA have revealed an enzyme alteration in cells derived from Fanconi patients. A particulate fraction isolated from cultured human lymphoblasts and fibroblasts was solubilized with detergent and subjected to isoelectric focusing. Nuclease activity observed in four normal cell lines bands in a pH gradient with a pI of 6.3. Four cell lines belonging to complementation group A exhibit an increase in the pI of that nuclease to 6.8. These observations provide a new diagnostic for this disorder. Analysis of this enzyme in tetraploid cultures derived from fusion of normal and Fanconi cells suggest that the normal phenotype is dominant. That observation supports the hypothesis that the Fanconi A gene is required for modification of the nuclease pI. Definition of the molecular basis of this enzyme alteration should provide insight into the primary genetic lesion in this disorder.

Cell Fractionation↗

Xylose (glucose) isomerase gene from the thermophile Thermus thermophilus: cloning, sequencing, and comparison with other thermostable xylose isomerases.

The xylose isomerase gene from the thermophile Thermus thermophilus was cloned by using a fragment of the Streptomyces griseofuscus gene as a probe. The complete nucleotide sequence of the gene was determined. T. thermophilus is the most thermophilic organism from which a xylose isomerase gene has been cloned and characterized. The gene codes for a polypeptide of 387 amino acids with a molecular weight of 44,000. The Thermus xylose isomerase is considerably more thermostable than other described xylose isomerases. Production of the enzyme in Escherichia coli, by using the tac promoter, increases the xylose isomerase yield 45-fold compared with production in T. thermophilus. Moreover, the enzyme from E. coli can be purified 20-fold by simply heating the cell extract at 85 degrees C for 10 min. The characteristics of the enzyme made in E. coli are the same as those of enzyme made in T. thermophilus. Comparison of the Thermus xylose isomerase amino acid sequence with xylose isomerase sequences from other organisms showed that amino acids involved in substrate binding and isomerization are well conserved. Analysis of amino acid substitutions that distinguish the Thermus xylose isomerase from other thermostable xylose isomerases suggests that the further increase in thermostability in T. thermophilus is due to substitution of amino acids which react during irreversible inactivation and results also from increased hydrophobicity.

Aldose-Ketose Isomerases↗

Promotion of spheroid assembly of adult rat hepatocytes by some factor(s) present in the initial 6-hour conditioned medium of the primary culture.

Adult rat hepatocytes are capable of assembling to form floating multicellular spheroids (spheroids) in a dish with a positively charged surface in primary culture. In this report we show that the conditioned medium of the early time period of the culture exhibited biologically defined activity that promoted the assembly of isolated hepatocytes to floating spheroid. This activity was present only in the initial 6-hour conditioned medium; it was highest in the initial 2 h of culture and gradually decreased over 6 h and was not detected thereafter for 7 days. The conditioned medium appeared to inhibit the disintegration of spheroids that occurred during transfer to a new positively charged dish in the presence of either new or conditioned medium collected after day 4. Furthermore, disintegrated spheroids again assembled to form floating spheroid in the presence of the conditioned medium. Since the activity present in the conditioned medium was linearly dose-responsive to the inoculated viable cell number but not to that of dead cells, some factors responsible for the activity were probably produced by the viable cells during only a short time in culture.

Animals↗

Increases in circulating level of platelet-activating factor lag behind transient neutropenia during hemodialysis with cuprophane membranes.

The significance of the level of circulating 1-O-hexadecyl-2-acetyl-sn-glycero-3-phosphorylcholine (C16-PAF, platelet-activating factor) in relation to transient neutropenia during hemodialysis with cuprophane membranes was examined. The neutrophil count was transiently and significantly decreased at 30 min after the start of hemodialysis, and it then gradually recovered during the period from 60 to 240 min after the start. Mirror image changes were observed in the circulating levels of C3a and C5a, suggesting that the decrease in the neutrophil count was triggered by activation of the complement factors. The circulating level of C16-PAF, although being similar to the basal level after 30 min of hemodialysis, was significantly increased after 60 and 120 min of hemodialysis. These data indicate that the increase in the circulating PAF level is not a direct cause of the transient decrease in the neutrophil count, but may be the result of activated neutrophils during hemodialysis with cuprophane membranes.

Adult↗

Xylose (glucose) isomerase gene from the thermophile Clostridium thermohydrosulfuricum; cloning, sequencing, and expression in Escherichia coli.

The xylose isomerase gene from the thermophile Clostridium thermohydrosulfuricum has been cloned, using a fragment of the Bacillus subtilis gene as a probe. The complete nucleotide sequence of the gene was analyzed. C. thermohydrosulfuricum is the most thermophilic organism from which a xylose isomerase gene has been cloned and characterized. Comparison with amino acid sequences from other xylose isomerases showed that amino acids involved in substrate binding and isomerization are well conserved. Purification of the enzyme produced in E. coli was done by heating a cell-free extract at 85 degrees C for 10 min, giving a 20-fold purified enzyme. The native enzyme is a homomeric tetramer with a molecular weight of 200,000.

Aldose-Ketose Isomerases↗

Effects of azamethiphos, an organophosphorus insecticide, on serum cholinesterase activity and isoenzymes in the rat.

The inhibitory effect of azamethiphos (Az), an organophosphorus insecticide, was detected in both the serum cholinesterase (ChE) activity and the ChE isoenzyme concentration in male Wistar rats. In our highest Az dosage group (270 mg/kg), following a single po administration, the serum ChE activity was significantly inhibited at 6 and 24 h post-Az administration. Five days after Az treatment, the ChE activity was still inhibited, but the observed difference was not statistically significant. The ChE activity increased to levels comparable to the control group by day 10. For the other Az-dosed groups, the ChE activities were inhibited only 6 h following administration. The serum ChE isoenzymes for all Az-dosed and control groups had 6 bands, indicating that Az did not effect the number of isoenzyme bands, indicating that Az did not effect the number of isoenzyme bands. However, Az had a significant effect on the ratios of the concentrations of these isoenzyme bands. The ratio of the main ChE isoenzyme bands (bands 5 and 6) was band 6 greater than band 5 for the young control group. As our control group aged, this ratio was reversed, with band 5 greater than band 6. For the highest Az dosage group (270 mg/kg), the ChE isoenzyme band ratio was band 5 greater than band 6 6 h after Az dosing. This proportion of band 6 decreased in parallel with an increase in band 5 during our 30-d experimental period. A correlation between the total ChE activity and ChE isoenzyme band 6 was found.

Animals↗

High-resolution three-dimensional structure of a single zinc finger from a human enhancer binding protein in solution.

The three-dimensional structure of a 30-residue synthetic peptide containing the carboxy-terminal "zinc finger" motif of a human enhancer binding protein has been determined by two-dimensional nuclear magnetic resonance (2D NMR) spectroscopy and hybrid distance geometry-dynamical simulated annealing calculations. The structure determination is based on 487 approximate interproton distance and 63 torsion angle (phi, psi, and chi 1) restraints. A total of 40 simulated annealing structures were calculated, and the atomic rms distribution about the mean coordinate positions (excluding residues 29 and 30 which are ill-defined) is 0.4 A for the backbone atoms, 0.8 A for all atoms, and 0.41 A for all atoms excluding the lysine and arginine side chains, which are disordered. The solution structure of the zinc finger consists of two irregular antiparallel beta-strands connected by an atypical turn (residues 3-12) and a classical alpha-helix (residues 14-24). The zinc is tetrahedrally coordinated to the sulfur atoms of two cysteines (Cys-5 and Cys-8) and to the N epsilon 2 atoms of two histidines (His-21 and His-27). The two cysteine residues are located in the turn connecting the two beta-strands (residues 5-8); one of the histidine ligands (His-21) is in the alpha-helix, while the second histidine (His-27) is at the end of a looplike structure (formed by the end of the alpha-helix and a turn). The general architecture is qualitatively similar to two previously determined low-resolution Cys2-His2 zinc finger structures, although distinct differences can be observed in the beta-strands and turn and in the region around the two histidines coordinated to zinc. Comparison of the overall polypeptide fold of the enhancer binding protein zinc finger with known structures in the crystallographic data base reveals a striking similarity to one region (residues 23-44) of the X-ray structure of proteinase inhibitor domain III of Japanese quail ovomucoid [Papamokos, E., Weber, E., Bode, W., Huber, R., Empie, M. W., Kato, I., & Laskowski, M. (1982) J. Mol. Biol. 158, 515-537], which could be superimposed with a backbone atomic rms difference of 0.95 A on residues 3-25 (excluding residue 6) of the zinc finger from the enhancer binding protein. The presence of structural homology between two proteins of very different function may indicate that the so-called zinc finger motif is not unique for a class of DNA binding proteins but may represent a general folding motif found in a variety of proteins irrespective of their function.

Amino Acid Sequence↗

Extracellular calcium regulates distribution and transport of heparan sulfate proteoglycans in a rat parathyroid cell line.

The regulation of the cellular distribution of proteoglycans in a clonal rat parathyroid cell line by extracellular Ca2+ concentrations ([Ca2+]e) was studied. Proteoglycans synthesized by the cells metabolically labeled with [35S]sulfate have been shown to be almost exclusively heparan sulfate (HS) proteoglycans (Yanagishita, M., Brandi, M.L., and Sakaguchi, K. (1989) J. Biol. Chem. 264, 15714-15720), which are generally associated with the plasma membrane. The proportion of HS proteoglycans on the cell surface was approximately 20% in 2.1 mM (high) [Ca2+]e, whereas it increased to 50-60% in 0.05 mM (low) [Ca2+]e. Cell-associated HS proteoglycans redistribute in response to changing [Ca2+]e with a t 1/2 less than 4 min; HS proteoglycans appear on the cell surface as [Ca2+]e decreases and disappear from the cell surface as [Ca2+]e increases. Further, HS proteoglycans on the cell surface recycle to and from an intracellular compartment approximately 10 times before their degradation in low [Ca2+]e but do not recycle in high [Ca2+]e. The distribution of newly synthesized HS proteoglycans is regulated by [Ca2+]e but is independent of [Ca2+]e during biosynthesis. In low [Ca2+]e, at least 50% of the HS proteoglycans pulse-labeled for 10 min are transported from the Golgi complex to the cell surface or to the recycling compartment with a t 1/2 of approximately 20 min. Another approximately 10% appear on the cell surface in either low or high [Ca2+]e in a compartment with a long half-life. Addition of Mg2+ or Ba2+ to the low [Ca2+]e cultures had little effect on the distribution of HS proteoglycans. These observations suggest that [Ca2+]e specifically regulates the distribution and recycling of cell-associated HS proteoglycans in the parathyroid cells.

Animals↗

Characterization of tachykinin receptors in endothelial cells of porcine artery.

The binding of iodine-labeled Bolton-Hunter substance P (125I-BHSP) to porcine endothelial cell membranes was examined. The endothelial cells had a single high-affinity binding site with a dissociation constant of 0.10 nM, and a maximum number of binding sites of 52.2 fmol/mg protein. The relative potencies of various tachykinins to displace the binding of 47 pM 125I-BHSP suggested that endothelial cells of porcine aorta contain the NK-1 subtype of tachykinin receptor. A GTP analogue, guanyl-5'-yl imidodiphosphate, induced marked reduction in the number of 125I-BHSP binding sites suggesting that these binding sites are coupled with GTP-binding protein.

Animals↗

Subclones of a rat parathyroid cell line (PT-r): regulation of growth and production of parathyroid hormone-related peptide (PTHRP).

Four subclones from a rat parathyroid cell line (PT-r cell) have been isolated, and morphological and functional characteristics have been examined. Subclones 1 and 2 display a polygonal shape, show growth and secretory responses to calcium (half-maximal suppressions at 1.2 and 1.7 mM, respectively), and respond to secretin with cAMP production (14.5-fold and 16.9-fold over basal) and hormone secretion (41 and 58% over basal). Subclone 4 is elongated in form and does not respond to calcium or secretin. Subclone 3 shows mixed morphology, elongated and polygonal shapes, with moderate response to calcium (half-maximal suppression at 1.7 mM) and secretin (cAMP, 3.2-fold increase and hormone secretion, 50% increase over basal). The clones were tested for content of messenger RNA (mRNA) representing parathyroid hormone (PTH) and parathyroid hormone-related peptide (PTHRP). Only PTHRP mRNA was found. The peptide released is virtually all PTHRP. PTH mRNA was not detected even with a sensitive RNA probe. The amount of mRNA for PTHRP closely paralleled the amount of PTH-like bioactivity released into the medium from each clone (144.7 +/- 12.1, 110.0 +/- 12.9, 68.0 +/- 5.6, and 39.9 +/- 2.4 pgEq of rat PTH-(-34) per 10(7) cells per 12 h in a medium with 0.7 mM ionized calcium, from subclones 1, 2, 3, and 4, respectively). Culture conditions, low-density passage (less than 1:50 split ratio) or high-density passage (greater than 1:10 split ratio), affected morphology and function of the clones 1 and 2. They became elongated and functionally dedifferentiated like subclone 4 and 3 months of high-density culture.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A mitochondrial nuclease is modified in Drosophila mutants (mus308) that are hypersensitive to DNA crosslinking agents.

The mus308 mutants of Drosophila have previously been demonstrated to be defective in an enzyme that is designated Nuclease 3 (Boyd et al. 1990b). In this study that enzyme is shown to be present in mitochondria of both wild-type flies and embryos. Since the mus308 mutants are hypersensitive to DNA crosslinking agents. Nuclease 3 is potentially required for resistance of the mitochondrial genome to such agents. In support of this hypothesis, electron microscopic studies of mus308 mutant flies that had been exposed to nitrogen mustard revealed an increased frequency of mitochondrial abnormalities. Further investigation of the defect at the enzymological level revealed that the mutants possess a new nuclease activity that is apparently a modified form of the wild-type protein. In the earlier study, enzyme extracts from mus308 mutants were found to lack an enzyme with a pI of approximately 6.2. More precisely defined assay conditions in this study revealed the appearance of a new nuclease activity with a higher pI in extracts from mutants. This observation, together with the finding that only the normal enzyme form is present in heterozygous individuals, supports the hypothesis that the mus308 locus is not the structural gene for the enzyme. Rather, the mus308 gene product is necessary for Nuclease 3 to assume the lower pI. Nuclease 3 has been partially purified and characterized from wild-type embryos. Its activity is stimulated by Mg++ and ATP. Optimum activity is found at a pH of 5.5 and a NaCl concentration of 50-100 mM. Nuclease 3 exhibits a temperature optimum of 42 degrees C and is insensitive to N-ethylmaleimide.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Formation of multicellular spheroids composed of adult rat hepatocytes in dishes with positively charged surfaces and under other nonadherent environments.

Adult rat hepatocytes formed floating multicellular spheroids in primary culture in an uncoated plastic dish with a positively charged surface. Cells in the spheroids formed in such a simple way were similar to those formed in dishes coated with proteoglycan fraction isolated from rat liver reticulin fibers; in both cases, cells maintained high ability to produce albumin and poor ability to proliferate in response to epidermal growth factor. Coating dishes with albumin was also helpful in spheroid formation; coating with 2-hydroxymethyl methacrylate resulted in formation of incomplete spheroids. Elimination of serum factors was essential for the formation of spheroids; when cells were washed with serum-containing medium before seeding or if the medium was replaced with a serum-containing medium, spheroid formation was completely inhibited. Collagens, fibronectin, and laminin, all of which promote the adhesion and spreading of hepatocytes on substrates, inhibited spheroid formation. Furthermore, collagens disintegrated spheroids, and cells in the monolayer initiated proliferation. Thus, two distinct, mutually exclusive features of primary culture of adult hepatocytes apparently exist; monolayer culture with proliferative activity in an adherent environment and spheroid culture with poor proliferative activity and high albumin-producing ability in a nonadherent environment.

Albumins↗

Heparan sulphate proteoglycans on rat parathyroid cells recycle in low Ca2+ medium.

A rat parathyroid cell line, with some differentiated properties of the parathyroid gland, synthesizes predominantly a heparan sulphate proteoglycan (HS-PG) typical of cell surface HS-PGs (core protein = approximately 70 kDa, three to four HS chains of approximately 30 kDa). A 10 min pulse-chase protocol was used to determine the metabolic fate of the HS-PGs for cells maintained in 2.1 mM-Ca2+ (high Ca) or in 0.05 mM-Ca2+ (low Ca). In low Ca, approximately 60% of the labelled HS-PGs reach the cell surface (t1/2 = approximately 15 min) as determined by trypsin accessibility. This population of HS-PGs recycles (t1/2 = approximately 9 min) between the cell surface and an intracellular (presumably endosome) compartment. After approximately 2 h, this population of HS-PGs is internalized and rapidly degraded in lysosomes. In high Ca, only approximately 10% of the HS-PGs reach the cell surface, where they do not recycle. Changing from high to low Ca any time between 30-120 min of chase, rapidly (t1/2 less than 4 min) redistributes the HS-PGs to the cell surface where they begin recycling; conversely, changing from low to high Ca leads to a rapid sequestration of the cell surface HS-PGs within the cells. Other divalent cations fail to mimic the response to Ca2+. The results suggest that most of the HS-PGs in this cell line are anchored in a membrane compartment involved in a transport process between endosomes and the cell surface which is regulated by the concentration of extracellular Ca2+.

Animals↗

mus308 mutants of Drosophila exhibit hypersensitivity to DNA cross-linking agents and are defective in a deoxyribonuclease.

Mutagen-sensitive strains that identify 16 different Drosophila genes have been screened for alterations in DNA metabolic enzymes. A characteristic defect in an acid-active deoxyribonuclease was observed in strains carrying the six available mutant alleles of the mus308 gene. Since that enzyme is detected at normal levels in a mutant strain that is deficient in the previously identified enzymes DNase 1 and DNase 2, it represents a new Drosophila nuclease that is designated Nuclease 3. The mus308 mutants were originally distinguished from all other mutagen-sensitive mutants of Drosophila because they exhibit hypersensitivity to the DNA cross-linking agent nitrogen mustard without expressing a concurrent sensitivity to the monofunctional agent methyl methanesulfonate. Further observations of hypersensitivity to the mutagens trimethylpsoralen, diepoxybutane and cis-platinum now establish a more general sensitivity of these mutants to agents capable of generating DNA cross-links. In spite of the hypersensitivity of the mus308 mutants to DNA cross-linking agents, the initial incision step of DNA cross-link repair is normal in mus308 cells as assayed by the alkaline elution procedure. The Drosophila mus308 mutants show promise of providing a useful model for analogous defects in other organisms including man.

Animals↗

Establishment and characterization of a clonal line of parathyroid endothelial cells.

We have isolated endothelial cells derived from bovine parathyroid tissue. These cells have been cloned and maintained by serial passage for more than 40 months without showing signs of senescence. Prolonged culture was accomplished by using a medium favoring endothelial cell growth and methods for enriching endothelial cells in primary culture. The cloned parathyroid endothelial cells contained factor VIII-related antigen, took up acetylated low-density lipoproteins and parathyroid hormone, and showed morphological features comparable to other endothelial cells. Bovine parathyroid endothelial cells replicated with a mean doubling time of 65 h. Fibroblast growth factors, platelet-derived growth factor, and calcium acted as mitogens for parathyroid endothelial cells, whereas transforming growth factor beta inhibited proliferation.

Animals↗

Invertrons, a class of structurally and functionally related genetic elements that includes linear DNA plasmids, transposable elements, and genomes of adeno-type viruses.

Invertrons are genetic elements composed of DNA with inverted terminal repeats at both ends, covalently bonded to terminal proteins involved in the initiation of DNA replication at both their 5' termini when they exist in the cytoplasm of their host in free form. They function as viruses, linear DNA plasmids, transposable elements, and sometimes combinations of two of these properties. They differ from retroviruses and related retro-type transposons which have direct repeats on both their genomic ends and exploit RNA intermediates for replication of their DNA. A model for replication and integration of invertrons is presented, as well as a model for transposition of transposable elements.

Adenoviridae↗

The dynamic changes of plasma tissue-type plasminogen activator level and the activity of its inhibitor during coronary vasospasm.

This study aimed to examine the dynamic changes of the fibrinolytic system during coronary vasospasm. Tissue-type plasminogen activator (t-PA), plasminogen activator inhibitor (PAI) and fibrinopeptide A (FPA) levels were measured in the great cardiac venous and arterial blood of 9 patients with clinically and angiographically proven vasospastic angina and 11 controls. Before ergonovine provocation, although there was no difference between the above 2 groups in t-PA levels in the aorta or the great cardiac vein, the PAI level in patients with variant angina was lower than in the controls both in the aorta (4.2 +/- 3.5 IU/ml vs 10.9 +/- 5.2 IU/ml) and in the great cardiac vein (2.3 +/- 2.9 IU/ml vs. 11.9 +/- 4.9 IU/ml). During ergonovine-induced coronary vasospasm in patients with variant angina, the t-PA level in the great cardiac vein significantly increased from 3.4 +/- 0.7 ng/ml to 4.4 +/- 0.5 ng/ml (p less than 0.05), but it did not change in the aorta. The maximal dose of ergonovine (0.4 mg) induced mild diffuse coronary vasoconstriction in the controls, and this diffuse coronary vasoconstriction induced a reduction of PAI levels in the great cardiac vein from 11.9 +/- 4.9 IU/ml to 9.5 +/- 4.8 IU/ml (p less than 0.05). FPA levels in the great cardiac vein did not change during ergonovine-induced coronary vasospasm in either group. Thus, the coronary vasospasm induced the release of t-PA from endothelial cells of coronary vessels and resulted in the reduction in the PAI activity in the great cardiac vein.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗