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K Anzai

Publications and source records attributed to K Anzai.

At least 73 records · Page 4Linked to original sources

Design and synthesis of amphipathic 3(10)-helical peptides and their interactions with phospholipid bilayers and ion channel formation.

It has been reported that a peptide corresponding to the S4 segment in sodium channel protein is able to form voltage-dependent cation-selective ion channels (Tosteson, M. T., Auld, D. S., and Tosteson, D. C. (1989) Proc. Natl. Acad. Sci. U. S. A. 86, 707-710). However, biological and other physical properties remain unexamined. In the present study, three peptides, H-(Ala-Arg-Leu)8-OH (ARL8), H-(Val-Arg-Leu)8-OH (VRL8), and H-(Leu-Arg-Leu)8-OH (LRL8) which were designed on the basis of the S4 segment and expected to form 3(10)-helix, were synthesized and examined with regard to conformational change by the interaction with membranes, membrane perturbation ability, ion channel formation, and antimicrobial activity. According to CD spectra, these peptides were found to form a 3(10)-helical structure in the presence of dipalmitoyl-DL-alpha-phosphatidylcholine/dipalmitoyl-DL-alpha- phosphatidylglycerol (3:1) liposomes. The experiment of the peptide-induced leakage of carboxyfluorescein from liposomes showed that all the peptides had a strong ability to perturb membranes. The peptides were able to form cation-selective ion channels in planar asolectin lipid bilayers. The conductances of the ion channels were small (approximately 2 picosiemens for VRL8 and LRL8 and approximately 23 picosiemens for ARL8), suggesting that the peptides produce narrow pores or wider pores with certain permeable barriers that are a portion of the whole channels. The differences in their conductances depend possibly on the sizes of the side chains of Ala, Val, and Leu residues. However, non of the peptides showed antimicrobial activity (minimum inhibitory concentrations, > 50 micrograms/ml). Here, we present the first evidence that the peptides can form 3(10)-helical structures with long chain lengths in a lipid bilayer environment.

Amino Acid Sequence↗

Ion channel activity of a synthetic peptide with a primary structure corresponding to the presumed pore-forming region of the voltage dependent potassium channel.

A 26-mer peptide of which the sequence contains the presumed pore forming region of the Shaker K+ channel (H5 region) was chemically synthesized. The peptide was found to interact and penetrate lipid membranes based on the fluorescence of Trp residues of the peptide in the presence and absence of liposomes. The secondary structure and the ion channel forming ability of the peptide were measured by CD spectroscopy and by a planar bilayer technique, respectively. The secondary structure of the peptide was composed of a mixture of an alpha-helix, beta-sheet, beta-turn, and a random coil. The content of beta-sheet structure was increased by the presence of liposomes. In planar bilayers, the peptide formed anion-selective ion channels with a larger conductance than that of the native Shaker K+ channel. These results suggest that the H5 region of the Shaker K+ channel can penetrate into lipid bilayers and form ion channel structures by itself, but it requires other structural components to reproduce the native characteristics of the K+ channel.

Amino Acid Sequence↗

Budd-Chiari syndrome and Epstein-Barr virus (EBV) associated plasmacytoma in a patient with chronic active EBV infection.

A 42-year-old Japanese man with chronic active Epstein-Barr virus (EBV) infection initially responded to treatment with interleukin-2 (IL-2). Six months later he developed thrombosis in the hepatic veins, and Budd-Chiari syndrome associated with severe hepatic damage was diagnosed. He also developed a solitary EBV-positive plasmacytoma in the right femur. Since these rare complications occurred after long-term IL-2 therapy, the possibility that long-term IL-2 therapy might cause Budd-Chiari syndrome and liver damage as well as EBV-associated plasmacytoma is discussed.

Adult↗

Enhancement of mutagenic activity of 9-aminoacridine by introducing a nitro group into the molecule.

Mutagenic activity and DNA intercalation were examined for 9-aminoacridine (9-AA) and its derivatives. Introduction of a nitro group into the 9-AA molecule was found to enhance the activity enormously as was detected by the Ames test. Acetylation of amino group at 9-position of acridine ring inhibited the intercalation, the frameshift activity disappearing. Rat liver S9 converted 9-AA metabolically to 9-amino-2-hydroxyacridine.

Acetylation↗

[Effective combination therapy by recombinant erythropoietin and cepharanthin in a girl with refractory anemia].

A 3-year-old girl was admitted with a one-month history of a tendency to bleed to Jikei Kashiwa hospital in May, 1992. She developed pancytopenia as follows; hemoglobin: 8.6 g/dl, red blood cell: 316 x 10(4)/microliters, reticulocyte: 9,480/microliters, white blood cell: 2,500/microliters (neutrophil: 400/microliters) and platelet count: 2.7 x 10(4)/microliters. Her bone marrow was hypoplastic, but was so dysplastic in 3 cell-lines as to be diagnosed as hypoplastic refractory anemia. After two courses of methylprednisolone pulse therapy followed by oral prednisolone therapy which were not effective and were supplemented by blood transfusions, the treatment of 20mg/day oral Cepharanthin, a biscoclaurine alkaloid, and intravenous recombinant human erythropoietin (rhEPO) twice a week at dose of 6,000 U/week was initiated in January, 1993. About 3 months later she showed a steady rise in hemoglobin concentration (from 4.1 to 11.9 g/dl) and platelet count (from 4,000 to 39,000/microliters). Although the rhEPO was tapered and ceased in September, 1993, her hemoglobin concentration has ranged from 11.0 to 11.9 g/dl and her platelet count from 30,000 to 40,000/microliters by giving her Cepharanthin and low dose prednisolone.

Alkaloids↗

[Evaluation of combination chemotherapy for advanced gastric carcinoma as a neoadjuvant chemotherapy with CDDP, MMC, etoposide and 5'-DFUR].

Seven cases of nonresectable gastric carcinoma with lymph node metastasis were treated with combination chemotherapy [CDDP 75 mg/m2 i.v. day 1 (A method: Ccr > or = 50 ml/min) or 20 mg/m2 i.v. day 1, 2, 4, 5 (B method: Ccr < 50 ml/min), MMC 10 mg/m2 i.v. day 1, etoposide 50 mg/body i.v. day 3, 4, 5, 5'-DFUR 2,100 mg/body po 4 day/week] every 4 weeks as a neoadjuvant chemotherapy. After treatment, the size of the primary tumor was reduced in four of seven cases. The lymph nodes disappeared in one case and were reduced in size in four cases. Metastatic liver tumors were found in four cases. They disappeared in one case and the size was reduced in one of seven cases. One patient with renal dysfunction was treated with B method. However, renal dysfunction did not become worse. Five patients were operated after chemotherapy. Absolute curative resection was performed in three of them. The total rate of curative resection was 43% (3/7). Four patients were alive for 19 months after operation. The main side effects of this therapy were nausea, anorexia and bone marrow suppression, which, were found in all patients. These results suggest that this combination chemotherapy is as effective as neoadjuvant chemotherapy for advanced gastric carcinoma.

Aged↗

[A case of pure red cell aplasia associated with sodium valproate therapy].

We reported a 14-year-old female with petit mal epilepsy who suffered from pure red cell aplasia 12 weeks after sodium valproate (VPA) therapy started. On admission she presented anemia but no jaundice. Her hemoglobin was 5.4g/dl and bone-marrow biopsy revealed hypocellularity with erythroid hypoplasia. The Direct Coombs' test and anti-nucleotide antibody were positive. Reticulocytosis occurred 10 days after discontinuation of VPA. The Direct Coombs' test became negative one year after discontinuation of VPA. In general, drug-induced PRCA is caused by toxic or allergic agents, but this case suggests the immune mechanism of VPA-induced PRCA.

Adolescent↗

Novel radioactive phospholipid probes as a tool for measurement of phospholipid translocation across biomembranes.

In an attempt to develop a new method to measure transbilayer phospholipid translocation, with a higher sensitivity and higher temporal resolution, novel radioactive phospholipid probes (*C5-PC, *C5-PE, and *C5-PS) with a short acyl chain at the 2-position were synthesized. The *C5-PC probe was made by coupling lysophosphatidylcholine with [14C]pentanoic acid, using N,N-carbonyldiimidazole as a coupling agent (yield 37%), and *C5-PE and *C5-PS were synthesized by exchanging the choline moiety of *C5-PC for ethanolamine and L-serine, respectively, as catalyzed by phospholipase D. The usefulness of the probes was confirmed by measuring phospholipid translocation across the human erythrocyte plasma membrane, in which the presence of aminophospholipid translocase was revealed using EPR techniques (Zachowski, A., Farve, E., Cribier, S., Herve, P. and Devaux, P.F. (1986) Biochemistry 25, 2585-2590). Using the present probes, ATP-dependent and SH-reagent-inhibitable translocation of *C5-PS and *C5-PE from outer to inner leaflets, which is characteristic to the translocation mediated by aminophospholipid translocase, was detected with a higher sensitivity than seen with the EPR technique. These radioactive phospholipid probes will be useful to measure phospholipid translocation with a high sensitivity and have the potential for application in measurements of transbilayer lipid-translocation for a wide variety of membranes.

Biological Transport↗

Effect of salts on conformational change of basic amphipathic peptides from beta-structure to alpha-helix in the presence of phospholipid liposomes and their channel-forming ability.

A synthetic model peptide, H-(Leu-Al alpha-Arg-Leu)3-(Leu-Arg-Al alpha-Leu)3-OH (4(6)) can form ion channels in planar lipid bilayers by taking an amphipathic alpha-helix (Agawa, Y., Lee, S., Ono, S., Aoyagi, H., Ohno, M., Taniguchi, T., Anzai, K. and Kirino, Y. (1991) J. Biol. Chem. 266, 20218-20222). For further study of ion channels formed by this type of peptides, we planned to synthesize [Trp1]-4(6)(Ser) and [Trp12]-4(6)(Ser) in which a hydrophilic amino acid, Ser, was introduced in several positions of 4(6) instead of hydrophobic ones. This modification was expected to decrease the ability of membrane perturbation and to simplify various current levels of the channel observed for 4(6). Furthermore, additional Trp was introduced to the N-terminus or position 12 to monitor the lipid-peptide interaction. CD study showed that both peptides formed a random structure in buffer, but an alpha-helix in the presence of egg PC and a beta-structure in egg PC/egg PG (3:1). Moreover, addition of NaCl to the acidic liposomes induced the conformational transition in the peptide from beta-structure to alpha-helix. Salt-induced conformational transition in the presence of acidic liposomes was discussed in terms of membrane binding and ion-channel formation in planar lipid bilayer. Despite introduction of hydrophilic residues instead of hydrophobic residues in 4(6), the peptide showed nearly the same dye-release ability from egg PC- egg PG liposomes as 4(6). [Trp12]-4(6)(Ser) was able to form cation-selective ion channels with two levels of conductance (mainly 250 and occasionally 125 pS) in asolectin planar lipid bilayer, suggesting that appropriate orientation of hydrophobic and hydrophilic residues in amphipathic peptide can simplify channel current levels.

Amino Acid Sequence↗

Production of anti-cardiolipin antibody in AKR/J mice with streptozocin-induced insulitis and diabetes.

We herein report that anti-cardiolipin antibodies (ACA) were detected in AKR/J mice treated with multiple low doses of streptozocin (STZ)-induced insulitis and diabetes. Daily intraperitoneal (i.p.) injections of 40 mg/kg body wt. of STZ for five consecutive days in the AKR/J mice resulted in hyperglycemia and mononuclear cell infiltrations of islets (insulitis). ACA appeared on day 14, when hyperglycemia began to occur, at a rate of 13.3% (4/30). The rate increased to 83.3% (25/30) on day 21, when diabetes developed, and then fell to 10% (3/30) on day 28. Neither the diabetic AKR/J mice treated with a single high dose of STZ (200 mg/kg body wt.) nor the non-diabetic insulitis free Balb/c mice and B10.S(9R) mice treated with multiple low doses of STZ (40 mg/kg body wt.) produced ACA. The IgG subclass of the ACA belonged mainly to IgG2a. These findings suggest that ACA are produced in association with the development of insulitis, but not induced by either hyperglycemia or STZ.

Animals↗

Frequent fusion of liposomes to a positively charged planar bilayer without calcium ions.

A novel positively charged planar bilayer membrane was formed from a mixture containing 20% cationic lipid, 1,2-dioleoyloxy-3-(trimethylammonio)propane, and neutral phospholipid mixture of 56% phosphatidylethanolamine and 24% egg phosphatidylcholine. The basic properties of the bilayer were essentially the same as those previously reported for neutral and negatively charged lipid bilayers. Using the positively charged bilayer in addition to neutral and negatively charged bilayers, the effects of charge of the planar bilayers upon vesicle-planar membrane fusion were investigated by measuring the fusion, to the bilayers, of liposomes containing nystatin-ergosterol channels and carrying a net negative charge. The tendency for fusion was evaluated in terms of the time elapsed before the first fusion event (denoted fusion time). In the absence of calcium ions, a fusion time of about 1 min was measured with the positively charged planar bilayers, and about 5 and over 15 min with the neutral and negatively charged planar bilayers, respectively. These results indicated that the vesicle-planar membrane fusion without calcium ions is greatly enhanced by the presence of cationic lipids in the planar bilayers, and suggested the usefulness of cationic lipid bilayers.

Calcium↗

Purification of the cardiac 1,4-dihydropyridine receptor using immunoaffinity chromatography with a monoclonal antibody against the alpha 2 delta subunit of the skeletal muscle dihydropyridine receptor.

The 1,4-dihydropyridine receptor associated with L-type Ca2+ channels was purified about 1700-fold from porcine cardiac sarcolemmal membranes using a simple and rapid (ca. 8 h) two-step procedure: wheat germ agglutinin affinity chromatography followed by immunoaffinity chromatography with a monoclonal antibody (MCC-1) against the alpha 2 delta subunit of the skeletal muscle Ca2+ channel with a glycine elution buffer (pH 3). Gel electrophoresis of this purified sample under non-reducing conditions revealed a major polypeptide band with molecular weight of 190 kDa, which was separated under reducing conditions to a 155 kDa band and 2-3 bands with M(r) about 20 kDa, corresponding to alpha 2 and delta subunits, respectively. The peptide band corresponding to the alpha 1 subunit was not detected in this gel electrophoresis. However, the alpha 1 subunit without bound alpha 2 delta was selectively eluted from MCC-1 Sepharose with 1% Triton X-100. A 190 kDa band corresponding to the alpha 1 subunit was visualized by fluorography and by silver staining in the fraction eluted with Triton X-100. Electrophoretically, the amount of alpha 1 was smaller than that of the alpha 2 subunit in the purified sample obtained here.

Animals↗

Developmental change in subcellular location of Bp-1 protein with an ability to interact with both identifier sequence and its brain-specific transcript, BC-1 RNA.

Identifier sequences are transcribed to generate a brain-specific BC-1 RNA present as a ribonucleoprotein particle in the dendrites and somata of neurons. This ribonucleoprotein particle contains an identifier sequence-binding protein (Bp-1 protein). We report here the purification of BC-1 RNA and demonstrate that Bp-1 protein interacts directly with the RNA. We also demonstrate an accumulation of Bp-1 protein in the nucleus of brain cells from mouse fetus and newborns that precedes the postnatal increase in BC-1 RNA. Cytoplasmic Bp-1 protein present in a complex with BC-1 RNA increases postnatally with a concomitant decrease in nuclear Bp-1 protein. These observations suggest that Bp-1 protein may play a role(s) in the synthesis and nuclear export of BC-1 RNA.

Aging↗

The 10 S BC-1 ribonucleoprotein particle contains identifier sequence-binding proteins that interact with an array of GCAAG/CTTGC motifs between split promoter sequences for RNA polymerase III.

BC-1 RNA is a brain-specific small RNA transcript of identifier sequences present in the somas and dendrites of neurons. We recently reported that the RNA is complexed with a protein(s) to form a 10 S ribonucleoprotein particle (Kobayashi, S., Goto, S., and Anzai, K. (1991) J. Biol. Chem. 266, 4726-4730). We demonstrate here that this 10 S BC-1 ribonucleoprotein particle contains a DNA-binding protein(s) (Bp-1 protein) capable of interacting with a region between split promoter sequences for RNA polymerase III within the identifier sequences. The region has short inverted repeats: a perfect octanucleotide repeat (GCGCTTGCCTAGCAAGCGC) and an imperfect heptanucleotide repeat (GCCTAGCAAGCGCAAGGC), each of which contains a GCAAG/CTTGC motif. We also demonstrate that the binding of this protein either to the array of pentamer motifs or to BC-1 RNA is mutually exclusive. The molecular masses of photo-cross-linking adducts of Bp-1 protein to a 32P-labeled GCAAG/CTTGC motif-specific probe were estimated to be about 31 and 36 kDa, indicating that two species of Bp-1 proteins may be present in the brain.

Animals↗

rab15, a novel low molecular weight GTP-binding protein specifically expressed in rat brain.

rab3A is a low molecular weight (LMW) GTP-binding protein specifically expressed in brain and localized to synaptic vesicles. rab3A has been proposed to play a role in neurotransmitter release by regulating membrane flow in the nerve terminal. In an attempt to define other LMW GTP-binding proteins that may regulate neurotransmitter release, seven cDNA clones encoding new members of the rab family of LMW GTP-binding proteins were isolated from a rat brain cDNA library. The rab proteins contain the four conserved structural domains essential for GTP binding in addition to domains required for membrane localization and effector protein interactions. One protein, rab16, is closely related to members of the rab3 subfamily, whereas two others are assigned as the rat homologs of canine rab8 and rab10. Four additional clones, rab12, rab13, rab14, and rab15, revealed unique sequences and are new members of the rab family of LMW GTP-binding proteins. The patterns of expression of rab15 and rab3A closely overlap but differ from that observed for all other known LMW GTP-binding proteins. This data suggests that rab15 may act in concert with rab3A in regulating aspects of synaptic vesicle membrane flow within the nerve terminal.

Amino Acid Sequence↗