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T Kabashima

Publications and source records attributed to T Kabashima.

At least 19 recordsLinked to original sources

Prolyl endopeptidase from Sphingomonas capsulata: isolation and characterization of the enzyme and nucleotide sequence of the gene.

Prolyl endopeptidase (prolyl oligopeptidase, EC 3.4.21.26) was purified from Sphingomonas capsulata IFO 12533, and its gene was cloned and expressed in Escherichia coli. The recombinant enzyme was markedly inhibited by diisopropyl phosphofluoridate and hardly affected by SH reagents or metal chelators, similar to the native enzyme purified from S. capsulata. Nucleotide sequencing analysis revealed an open reading frame of 2169 bp, coding for a protein of 723 amino acids with a predicted molecular weight of 78,433. The amino acid sequence was 39.6, 45.3, 38.9, and 38.3% homologous to Flavobacterium meningosepticum, Aeromonas hydrophila, porcine brain, and human T cell prolyl endopeptidase, respectively. A region near the C-terminus and the region containing the putative catalytic triad residues were highly conserved. The enzyme was crystallized by the hanging drop vapor diffusion method, using ammonium sulfate as a precipitant.

Amino Acid Sequence

Thermostable glycerol kinase from Thermus flavus: cloning, sequencing, and expression of the enzyme gene.

The thermostable glycerol kinase (EC 2.7.1.30) gene from Thermus flavus was cloned and expressed in Escherichia coli DH5 alpha. An open reading frame of 1488 bp for the glycerol kinase gene (glpK) starting with an ATG methionine codon was found, which encodes a protein of 496 amino acid residues whose calculated molecular weight is 54,835. The amino acid sequence of T. flavus glycerol kinase is 80.6% and 64.1% identical with those of Bacillus subtilis and E. coli. Transformants of E. coli DH5 alpha harboring plasmid pGYK12 with a 1505 bp chromosomal DNA fragment containing the T. flavus glycerol kinase gene showed about 23.8-fold higher glycerol kinase activity than T. flavus.

Amino Acid Sequence

Roles of the Ser146, Tyr159, and Lys163 residues in the catalytic action of 7alpha-hydroxysteroid dehydrogenase from Escherichia coli.

The Escherichia coli 7alpha-hydroxysteroid dehydrogenase (7alpha-HSDH; EC 1.1.1.159) has been the subject of our studies, including the cloning of its gene, and determination of the crystal structures of its binary and ternary complexes [J. Bacteriol. 173, 2173-2179 (1991); Biochemistry 35, 7715-7730 (1996)]. Through these studies, the Ser146, Tyr159, and Lys163 residues were found to be involved in its catalytic action. In order to clarify the roles of these residues, we constructed six single mutants of 7alpha-HSDH, Tyr159-Phe (Y159F), Tyr159-His (Y159H), Lys163-Arg (K163R), Lys163-Ile (K163I), Ser146-Ala (S146A), and Ser146-His (S146H), by site-directed mutagenesis. These mutants were overexpressed in E. coli WSD, which is a 7alpha-HSDH null strain, and the expressed enzymes were purified to homogeneity. The kinetic constants of the mutant enzymes were determined, and the structures of the Y159F, Y159H, and K163R mutants were analyzed by X-ray crystallography. The Y159F mutant showed no activity, while the Y159H mutant exhibited 13.3% of the wild-type enzyme activity. No remarkable conformational change between the Y159F (or Y159H) and wild-type proteins was detected on X-ray crystallography. On the other hand, the K163I mutant showed just 5.3% of the native enzyme activity, with a 8. 5-fold higher Kd. However, the K163R mutant retained 64% activity, and no remarkable conformational change was detected on X-ray crystallography. In the cases of the S146A and S146H mutants, the activities fairly decreased, with 20.3 and 35.6% of kcat of the wild-type, respectively. The data presented in this paper confirm that Tyr159 acts as a basic catalyst, that Lys163 binds to NAD(H) and lowers the pKa value of Tyr159, and that Ser146 stabilizes the substrate, reaction intermediate and product in catalysis.

Binding Sites

Prolyl aminopeptidase from Serratia marcescens: cloning of the enzyme gene and crystallization of the expressed enzyme.

We cloned and sequenced the Serratia marcescens prolyl aminopeptidase (SPAP) gene. Nucleotide sequence analysis revealed an open reading frame of 951 bp, encoding a protein of 317 amino acids with a predicted molecular weight of 36,083. The expressed enzyme was purified about 90-fold on columns of Toyopearl HW65C and DEAE-Toyopearl, with an activity recovery of 30%. The apparent molecular weight of the purified enzyme was 36,000 and 38,000 as estimated by SDS-PAGE and gel filtration, respectively. The enzyme was not inhibited by diisopropyl phosphofluoridate (DFP) or phenylmethylsulfonyl fluoride (PMSF), but was markedly inhibited by 3,4-dichloroisocoumarin (DCIC). Crystals of the enzyme were grown by the hanging drop vapor diffusion method using PEG6000 as a precipitant at pH 6.5. The crystals are tetragonal with cell dimensions a= b =65.6 A, and c=169.8 A, a space group P4(1)2(1)2 or P4(3)2(1)2, and probably contain one monomer in the asymmetric unit. They diffract to at least 2.22 A resolution.

Amino Acid Sequence

Cloning and expression of the cDNA encoding prolyl oligopeptidase (prolyl endopeptidase) from bovine brain.

Prolyl oligopeptidase (EC 3.4.21.26, prolyl endopeptidase) cDNA from bovine brain was cloned by PCR, and the amplified fragment was used as a probe to screen the cDNA library from bovine brain. The obtained clone contained a 2.7 kb DNA fragment with an open reading frame of 2130 nucleotides, and encoded a protein of 710 amino acids with a deduced molecular weight of 80640 Da. The deduced amino acid sequence is 95, 94, 51 and 48% homologous to those of human T-cell, porcine brain, Aeromonas hydrophila, and Flavobacterium meningosepticum prolyl endopeptidases, respectively. The bovine brain prolyl endopeptidase-encoding cDNA was expressed using an expression vector bearing a tac promoter, with an approximate yield of 20 micrograms/ml of cell culture.

Amino Acid Sequence

Prolyl aminopeptidase gene from Flavobacterium meningosepticum: cloning, purification of the expressed enzyme, and analysis of its sequence.

In spite of the numerous studies regarding prolyl aminopeptidase, little is known about its mechanism and the significance of its similarity to a number of hydrolases of diverse specificity that belong to the alpha/beta hydrolase-fold family (Pseudomonas 2-hydroxymuconic semialdehyde hydrolase, atropinesterase, and 2-hydroxy-6-oxophenylhexa-2,4-dienoic acid hydrolase; human and rat epoxide hydrolases). We report the cloning and sequencing of the novel prolyl aminopeptidase gene from Flavobacterium meningosepticum (FPAP) which allowed a more comprehensive sequence comparison. FPAP was found to be a 35-kDa monomeric enzyme, releasing N-terminal proline but not hydroxyproline residues from small peptides and naphthylamide esters. Using the unweighted pair group method with arithmetic mean method, an evolutionary tree that depicts the probable relationship between the prolyl aminopeptidases and the alpha/beta hydrolase-fold enzymes was constructed. Since the alpha/beta hydrolase-fold family might also include the members of the prolyl oligopeptidase family (prolyl oligopeptidase, dipeptidyl peptidase IV, and prolyl carboxypeptidase), this proposal links all the known Pro-Y bond-cleaving proline-specific peptidases (prolyl oligopeptidase family, prolyl aminopeptidases, and prolinase) as enzymes with similar scaffolds and hydrolytic mechanisms. On the other hand, the enzymes that cleave X-Pro bonds are metalloenzymes grouped within the "pita-bread" fold family (aminopeptidase P and prolidase). Although the latter two enzymes show significant sequence homology, prolyl aminopeptidase, prolinase, and the members of the prolyl oligopeptidase family do not, and might share the alpha/beta hydrolase-fold scaffold. This rationale would explain the failure in finding a common "proline-recognizing motif" in the primary structures of these proline-specific peptidases.

Amino Acid Sequence

Prolyl aminopeptidase is also present in Enterobacteriaceae: cloning and sequencing of the Hafnia alvei enzyme-gene and characterization of the expressed enzyme.

The Hafnia alvei prolyl aminopeptidase gene (hpap) was cloned and sequenced, the expressed enzyme (HPAP) was purified to homogeneity and thoroughly characterized. An open reading frame of 1,281 bp was found to code for the enzyme, resulting in a protein of 427 amino acids with a molecular weight of 48,577. HPAP resembles the Aeromonas sobria enzyme, having 45% identity and the same distinctive properties with respect to size and substrate specificities. Both enzyme show similar chromatographic behavior, and HPAP could be purified following the procedure previously described for the Aeromonas enzyme. HPAP was found to be resistant to diisopropylphosphofluoridate as are most of the prolyl aminopeptidases hitherto described. In spite of this similarity, no inhibition by 1 mM p-chloromercuribenzoate solution could be detected. Significant inhibition was, however, observed when the enzyme was incubated with 3,4-dichloroisocoumarin. This study confirms the presence of two types of prolyl aminopeptidases, of which the Hafnia and Aeromonas enzymes constitute one group and the Bacillus, Neisseria, and Lactobacillus enzymes the other, and describes the cloning of the first prolyl aminopeptidase gene from an Enterobacteriaceae.

Aeromonas

Dipeptidyl peptidase IV from Xanthomonas maltophilia: sequencing and expression of the enzyme gene and characterization of the expressed enzyme.

The dipeptidyl peptidase IV [EC 3.4.14.5] gene of Xanthomonas maltophilia, expressed in Escherichia coli, was cloned by the shotgun method. Nucleotide sequence analysis revealed an open reading frame of 2,223 bp, coding for a protein of 741 amino acids with a predicted molecular weight of 82,080. The expressed enzyme was extracted with SDS, and the solubilized enzyme was purified about 1,030-fold on columns of Toyopearl HW65C, DEAE-Toyopearl twice, and hydroxyapatite, with an activity recovery of 50%. The enzyme hydrolyzed a proline-containing peptide at the penultimate position, and was inhibited by diisopropyl phosphofluoridate. The enzyme was most active at pH 8.5, and was stable between at pH 7.0 and 9.0. The molecular weight of the purified enzyme was estimated to be 83,000 and 165,000 by SDS-PAGE and gel filtration, respectively.

Amino Acid Sequence

Cloning, sequencing, and expression of the dipeptidyl peptidase IV gene from Flavobacterium meningosepticum in Escherichia coli.

The dipeptidyl peptidase IV (DP IV, EC 3.4.14.5) gene from Flavobacterium meningosepticum was cloned by Southern and colony hybridizations using probes amplified by PCR, and expressed in Escherichia coli DH1. E. coli DH1 harboring pFDP-H1, which was a subclone derived from the positive clone pFDP-1, showed 3.5-fold higher activity than F. meningosepticum. Nucleotide sequencing analysis revealed an open reading frame of 2133 bp, coding for a protein of 711 amino acids with a predicted molecular weight of 80,626. The expressed enzyme in E. coli DH1/pFDP-H1 was purified about 345-fold with an activity recovery of 12.3%. The molecular weight of the purified enzyme was estimated to be 75,000 by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and 160,000 by gel filtration, respectively, suggesting a dimeric form of the native enzyme. The deduced amino acid sequence of DP IV was homologous to those of the serine proteases of the "prolyl endopeptidase family." A sequence near the C-terminal region and the putative catalytic triad residues were well conserved among these enzymes.

Amino Acid Sequence

Protease II from Moraxella lacunata: cloning, sequencing, and expression of the enzyme gene, and crystallization of the expressed enzyme.

A gene coding for protease II (basic amino acid specific oligoendopeptidase) from Moraxella lacunata was cloned and expressed in Escherichia coli DH1. The transformant harboring a hybrid plasmid, pMPROII-12, with a 3.0-kbp insert at the PvuII-SacI site in pUC19, showed 23-fold higher enzyme activity than M. lacunata. The expressed enzyme from E. coli DH1/pMPROII-12 was purified by 40-80% ammonium sulfate fractionation, chromatography on DEAE-Toyopearl, and Sephadex G-150 gel filtration. The enzyme was most active at pH 6.5 and stable at pH 6.5-9.5. It had an optimum temperature of 35 degrees C for 5 min of reaction and was stable to up to 35 degrees C for 30 min at pH 7.0. Its molecular weight was estimated to be 80,000 by SDS-PAGE and gel-filtration analyses. It enzyme was inhibited by diisopropyl fluorophosphate (DFP) and classified as a serine endoprotease. Its amino acid sequence was 38% homologous to that of the E. coli protease II. By alignment with other members of the prolyl endopeptidase family, the amino acid residues involved in the catalytic triad were deduced to be Ser-534, Asp-619, and His-654. The enzyme was crystallized by the hanging drop vapor diffusion method using PEG 4000 as precipitant.

Amino Acid Sequence

Prolidase from Xanthomonas maltophilia: purification and characterization of the enzyme.

Prolidase (iminodipeptidase, EC 3.4.13.9) was purified from an extract of Xanthomonas maltophilia, by ammonium sulfate fractionation and sequential chromatographies on DEAE-Toyopearl, Toyopearl HW65C, FPLC-Hiload Superdex 200 pg, and FPLC-Hitrap Q columns, which an activity recovery of 2.3%. The enzyme was the most active at pH 7.5 with Leu-Pro as substrate. It was stable between pH 6.0 and 8.5 for 60 min at 37 degrees C and retained half of activity after 60 min at 37 degrees C. The isoelectric point of the enzyme was 3.7. Its molecular weight was estimated to be 100,000 by gel filtration on FPLC-Hiload Superdex 200 and 51,000 by SDS-PAGE, suggesting that it is a dimer. It hydrolyzed dipeptides only if proline is located at the carboxyl terminal position. The enzyme was inhibited by PCMB and o-phenanthroline, and was activated by Mn2+.

Chromatography, Ion Exchange

Pyroglutamyl peptidase gene from Bacillus amyloliquefaciens: cloning, sequencing, expression, and crystallization of the expressed enzyme.

The pyroglutamyl peptidase [EC 3.4.11.8] gene from Bacillus amyloliquefaciens was cloned and expressed in Escherichia coli DH1. The transformant of E. coli DH1 harboring plasmid pBPG 1 with a 2.1 kb chromosomal DNA fragment showed 80-fold higher activity than B. amyloliquefaciens. The nucleotide sequence of a 0.9 kb fragment that contains the promoter and the mature protein coding region was determined by the dideoxy chain-termination method. An open reading frame of 648 bp starting with an ATG methionine codon was found, which encodes a protein of 215 amino acid residues with a deduced molecular weight of 23,286. The enzyme has two cysteine residues (Cys68 and Cys144) per subunit molecule. Substitution of Cys144 with Ser by site-directed mutagenesis resulted in a complete loss of the activity, while that of Cys68 with Ser did not affect the activity at all. This result and titration with DTNB suggest that Cys144 is concerned in the catalytic action and Cys68 is located inside the enzyme. The expressed enzyme was purified to homogeneity by hydrophobic chromatography on a Toyopearl HW-65C column and crystallization, with an activity recovery of 42.7%. The enzyme was most active at pH 6.5 and stable at pH 7.0-9.0. Its molecular weight was estimated to be 51,000 by gel filtration, suggesting it to be a dimer. Big crystals of the wild and PCMB-modified enzymes were obtained by the hanging drop method.

Amino Acid Sequence

Intravenous gammaglobulin therapy for thromboneutropenic neonates of mothers with systemic lupus erythematosus.

i.v. IgG therapy was used to treat thromboneutropenia in 2 male neonates of mothers with SLE. The mothers of both neonates were thrombocytopenic but not neutropenic during the last 3 months of their pregnancies. Anti-platelet and anti-neutrophil IgG directed against platelets and neutrophils from the neonates were detected in the sera of both mothers. The platelet and neutrophil counts increased significantly with i.v. IgG therapy in both neonates. i.v. IgG therapy is a safe and effective regimen for passive immune thromboneutropenia.

Agranulocytosis

Local bone resorption induced by serially transplantable human renal cell carcinoma in nude mice.

The high incidence of metastatic bone disease in urological cancer makes it necessary for clinicians to look for a valid experimental model to investigate the basic interactions between cancer cells and bone in order to improve the treatment. A new model of bone resorption was defined, namely the subcutaneous injection of tumor cell suspensions of serially transplanted renal cell carcinoma in nude mice after disruption of the periosteum of the calvaria. The tumor induced osteolysis associated with osteoclast proliferation with reactive bone formation. The X-p film from nude mice calvaria showed the same multiple osteolytic punched-out lesions as those of the patient's skull.

Aged

Monocyte-mediated suppression of T lymphocyte blastogenesis and its reversal by deoxyguanosine. Defects in patients with systemic lupus erythematosus.

We investigated monocyte-mediated suppression of T lymphocyte blastogenesis in normals and patients with systemic lupus erythematosus (SLE). When monocytes from normals were cocultured with autologous T lymphocytes with a ratio of 1:1 and stimulated with phytohemagglutinin (PHA), 3H-thymidine incorporation by T lymphocytes was suppressed. This monocyte-mediated suppression was reversed by purine nucleoside phosphorylase substrate, deoxyguanosine. In SLE patients, both monocyte-mediated suppression and its reversal by deoxyguanosine were defective. The defective function was observed both in patients with active and inactive diseases. The defective function was studied sequentially before and after change in the clinical status of patients. The defects remained unaffected regardless of the disease activity. The defects in monocyte-mediated suppression and its reversal by deoxyguanosine in SLE patients as demonstrated in our study suggest the presence of intrinsic monocyte dysfunction in SLE.

Adult