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Biomedical subjects

H Amanuma

Publications and source records attributed to H Amanuma.

At least 55 records · Page 3Linked to original sources

Integration and expression of murine retrovirus-related sequences in schistosomes.

Antibodies against the retrovirus envelope glycoprotein (gp70) of mouse xenotropic retrovirus, BALB virus 2 (Bv2) reacted with the adult worms of Schistosoma japonicum and S. mansoni. This reaction was completely inhibited after adsorption of the antibodies with virions of retrovirus. The reactive schistosome antigen was located in the subtegumental layer of the adult male fluke and in the vitelline gland of the adult female of S. japonicum and S. mansoni. Proteins extracted from both parasites were examined by immunoblot analysis. Anti-Bv2 gp70 antiserum reacted with those proteins from both schistosomes and the band patterns were different among sexes and species. Southern hybridization of the DNA extracted from adults of S. japonicum and S. mansoni demonstrated the presence of sequences homologous to the env gene of mouse ecotropic and xenotropic retroviruses. DNA sequences homologous to the gag and pol regions of the ecotropic murine leukaemia virus were also detected in the DNAs of schistosomes.

Animals↗

Requirement of the single base insertion at the 3' end of the env-related gene of Friend spleen focus-forming virus for pathogenic activity and its effect on localization of the glycoprotein product (gp55).

In order to obtain evidence for the essential role of the single base insertion occurring at the 3' end of the env-related gene of Friend spleen focus-forming virus (SFFV) encoding the leukemogenic glycoprotein (gp55) a mutant SFFV genome was constructed in which the segment of the gp55 gene of the polycythemia-inducing strain of SFFV containing the single base insertion and the 6-base-pair duplication was replaced by the corresponding sequence of the Friend murine leukemia virus env gene. The mutant SFFV-Friend murine leukemia virus complex did not induce symptoms of the erythroproliferative disease in adult DBA/2 mice. During passage through newborn DBA/2 mice, the mutant virus complex invariably gave rise to weakly pathogenic variant SFFVs. All of the variant SFFVs induced in adult DBA/2 mice a transient mild splenomegaly associated with normal or slightly low hematocrit value, and they produced gp55 with a molecular weight similar to that of gp55 of the wild-type SFFV. For the two isolates of variant SFFV, the 3' portion of the viral DNA intermediate containing the 3' portion of the gp55 gene was molecularly cloned. Nucleotide sequences of these biologically active cloned DNAs were determined and showed that the variant SFFV genomes arose from the mutant SFFV genome by regaining the single base insertion, indicating that the single base insertion is essential for the biological activity of gp55. Evidence is presented indicating that the single base insertion which causes a loss of the cytoplasmic domain of the env-related protein is not related to the localization of the further-glycosylated form of gp55 in the plasma membrane but is involved with the release of gp55 from cells.

Amino Acid Sequence↗

Characterization of erythropoietin receptor on erythropoietin-unresponsive mouse erythroleukemia cells.

A membrane receptor for erythropoietin was identified in various erythropoietin-unresponsive mouse erythroleukemia cells. Scatchard analyses of the binding of human 125I-labeled erythropoietin to T3C1-2-0, K-1, GM86 and 707 cells showed the presence of a single class of binding sites with apparent Kd values of 0.27-0.78 nM, which are slightly higher than those of erythropoietin-responsive cells. The number of binding sites varied from 110 to 930 per cell. Crosslinking of 125I-erythropoietin to its binding sites with disuccinimidyl suberate revealed the existence of a single binding protein with molecular mass of 63 kDa. No binding sites with higher molecular mass, as observed in erythropoietin-responsive cells, were detected, nor was any specific binding observed to the non-erythroid hematopoietic cell or to the human erythroleukemia cells examined.

Animals↗

Identification of putative endogenous proviral templates for progenitor mink cell focus-forming (MCF) MuLV-related RNAs.

Murine leukemia virus (MuLV)-related RNAs exhibiting different env deletions are believed to participate in the generation of leukemogenic mink cell focus-forming (MCF) viruses. We have cloned an endogenous MuLV provirus from AKR/J mouse DNA, designated as A-2, which may serve as template for the env-deleted E2 MuLV RNA, expressed in GIX+ mice (D.E. Levy et al., J. Virol. 56, 691-700 (1985]. We have also isolated an endogenous MCF-related DNA, A-1, which shared close sequence homology with the 7.2-kb RNA expressed in AKR mice (F. Laigret et al., J. Virol. 62, 376-386 (1988] and sustained an identical env deletion. The data indicate that putative precursor MCF-related RNAs are transcribed from a heterogenous family of env-deleted endogenous MuLV DNAs.

Base Sequence↗

Down-regulation of c-myb gene expression is a prerequisite for erythropoietin-induced erythroid differentiation.

The role of nuclear protooncogenes during erythroid cell differentiation was examined by transfecting exogenous c-fos and c-myb genes into mouse erythroleukemia cells, which can be induced to differentiate either with erythropoietin (Epo) or dimethyl sulfoxide. Expression of exogenous c-myb or c-fos oncogene completely inhibited Epo-induced erythroid differentiation but only partially inhibited dimethyl sulfoxide-induced differentiation. Normally Epo-induced differentiation leads to a drastic decline of c-myb mRNA levels and an increase of c-myc transcripts in the early stage of differentiation. Cells expressing exogenous c-fos gene, however, maintained high levels of c-myb mRNA after Epo treatment. This high level of c-myb transcripts was found to be due to block of transcription shutoff (or transcriptional activation) rather than to mRNA stabilization. It is concluded that the down-regulation of endogenous c-myb gene expression is a prerequisite for commitment of Epo-induced erythroid differentiation and that expression of c-myb gene may be indirectly regulated by c-fos gene product. We also concluded that early down-regulation of c-myc gene expression is not essential for erythroid differentiation and that gene regulation of chemically induced erythroid differentiation may differ from that of Epo-induced differentiation.

Animals↗

Specific binding of erythropoietin to its receptor on responsive mouse erythroleukemia cells.

Erythropoietin (Epo) is a glycoprotein factor that specifically regulates the proliferation and differentiation of erythroid progenitor cells. Here we describe the isolation of Epo-responsive mouse erythroleukemia cell line SKT6, the characterization of the specific binding of biologically active 125I-labeled human Epo (125I-Epo) to its membrane receptor, and, finally, report information concerning the molecular structure of the receptor. About 75% of erythroid colony-forming precursor cell-like colonies derived from SKT6 cells were hemoglobin-positive after 3- to 4-day exposure to Epo in methylcellulose culture. Radioiodinated Epo bound specifically to SKT6 cells, and Scatchard analysis of the data showed a high affinity for 125I-Epo (Kd = 0.15 nM) but displayed only a small number of specific receptors (approximately equal to 470 per cell). Membrane components that specifically interact with 125I-Epo were identified by covalent crosslinking with disuccinimidyl suberate, and three receptor species with apparent Mr 63,000, 94,000, and 119,000 were found in membrane from SKT6 cells, suggesting the complex structure of the receptor molecules. Specific bindings were also detected in all of the Epo-unresponsive Friend erythroleukemia cells examined, and cross-linking study revealed the presence of only the 63,000 species as a binding site.

Animals↗

Decrease in glucose transport activity of Friend erythroleukemia cell caused by dimethylsulfoxide, a differentiation-inducing reagent.

A transport system for D-glucose was found in a Friend erythroleukemia cell line, T-3-C1-2-O and was characterized as a facilitated diffusion system. D-Glucose transport activity showed a half-saturation concentration of 2.2 mM and was inhibited by mercuric ions, cytochalasin B, phloretin, and stilbestrol, but was not strongly inhibited by phloridzin. Transport of 3-O-methyl-D-glucose was faster than D-glucose and the intracellular concentration of the sugar was found to reach the concentration in the assay medium. The treatment of cells with a differentiation-inducing reagent, dimethylsulfoxide(Me2SO), for 24 h caused a marked decrease in glucose transport activity due to a decrease in Vmax. In an induction-insensitive Friend cell line, T-3-K-1, D-glucose transport activity was low in untreated cells and Me2SO treatment did not cause a significant decrease in transport activity. The results obtained in this study indicate that the decrease in glucose transport activity is not due to the direct effect of Me2SO on transport activity, but is associated with the induction of differentiation. By immunoblotting cell lysates of T-3-C1-2-O cells using antibody to human erythrocyte glucose transporter, a single major band having a molecular weight of 52,000 was detected, which may be a glucose transporter in Friend cells.

Animals↗

Isolation and characterization of a genomic DDD mouse interleukin-3 gene.

A chromosomal DNA segment containing the entire gene for interleukin-3 (IL-3) was isolated from DDD mouse erythroleukemia cells, and its gene organization and nucleotide sequence were determined. Enhancer-like sequences in the second intron and G + C-rich sequence in the 5'-flanking region may play a role in the regulation of tissue-specific and inducible gene expression. Southern blot analyses revealed that constitutively IL-3-producing WEHI-3 cells have the rearranged IL-3 gene, and that genomic DNAs prepared from the adult and fetal mouse liver have the same organization of the IL-3 gene. No IL-3 gene transcript was detected in the mouse erythroleukemia cells by Northern blot analysis.

Animals↗

[Modified env gene in Friend spleen focus forming virus--structure, origin, and its role in leukemogenesis].

Modified env gene or gp55 gene in Spleen Focus Forming Virus, polycythemic strain, K-1 was molecularly cloned and its structure was characterized gp55 is a fusion glycoprotein consisting of N terminal 2/3 of xenotropic virus-related gp70 and C terminal half of F-MuLV p15E. A unique structure at the 3' and of the gp55 gene with 6 base pairs + 1 base pairs insert was identified. Gp55 may be hooked by the lipid bilayer of the cell membrane of the SFFV-intected cells, and additional glycosylation on the cell surface may modify the growth regulation of the cells. Possible origin of SFFV-specific gp55 gene was discussed.

Animals↗

env-Related leukemogenic genes (gp55 genes) of two closely related polycythemic strains of Friend spleen focus-forming virus possess different recombination points with an endogenous mink cell focus-forming virus env gene.

The unintegrated circular provival DNA of the replication-competent, helper Friend murine leukemia virus (F-MuLV) in a polycythemic strain of Friend leukemia virus complex (FLV, K-1 strain) was molecularly cloned after insertion into the EcoRI site of the plasmid pBR322. The nucleotide sequence of its env gene has been determined. Sequences of this F-MuLV env gene, and the previously reported env-related gene (gp55 gene) of Friend spleen focus-forming virus (SFFV) (K-1 strain) were compared to that of the same gene of the other polycythemic SFFV isolate, SFFV (502), recently reported by Clark and Mak. The gp55 genes of the two SFFV isolates are almost identical to each other and have several common characteristic structures. However, the two gp55 genes are different in that the gp55 gene of SFFV (K-1) has a longer nonecotropic MuLV env sequence than that of SFFV (502). This finding may suggest that each SFFV isolate has been generated independently by recombination between a putative defective variant of F-MuLV and an endogenous mink cell focus-forming virus env sequence.

Amino Acid Sequence↗

Purification and properties of penicillin-binding proteins 5 and 6 from the dacA mutant strain of Escherichia coli (JE 11191).

Penicillin-binding proteins 5 and 6 have been purified to homogeneity from the dacA mutant strain of Escherichia coli (JE 11191). Protein 6 from the mutant strain appears to be identical to that from the wild type, but protein 5 is a mutant protein which has no D-alanine carboxypeptidase activity. Moreover, the mutant protein 5 binds, but does not release, [14C]penicillin G. Correspondingly, an acyl-enzyme intermediate derived from a synthetic substrate is accumulated by the mutant protein. A comparison of the acylation site for the synthetic substrate and for penicillin G by limited proteolysis and some other properties of the mutant protein are described.

Acylation↗

Simultaneous release of penicilloic acid and phenylacetyl glycine by penicillin-binding proteins 5 and 6 of Escherichia coli.

Penicillin-binding proteins (PBPs) 5 and 6 of Escherichia coli released the bound penicilloyl moiety at an intermediate rate relative to, e.g., Staphylococcus aureus PBPs 4 (rapid) and 1 or 2 (slow). Each of these E. coli PBPs released the bound penicilloyl moiety as both penicilloic acid (hydrolysis) and phenylacetyl glycine (scission of the C-5--C-6 bond followed by hydrolysis).

Bacterial Proteins↗

Complete nucleotide sequence of the gene for the specific glycoprotein (gp55) of Friend spleen focus-forming virus.

The complete nucleotide sequence of the gene for the specific glycoprotein (gp55) of the polycythemic strain of Friend spleen focus-forming virus (SFFV) was derived from the cloned SFFV DNA intermediate. The gp55 gene is present within 1.4 kilobases of the 5' side of the 3'long terminal repeat sequence. The open reading frame predicts the primary translation product has a total of 409 amino acids with a Mr of 44,752. Comparisons of the deduced amino acid sequence of gp55 with those of the envelope (env) gene products of murine leukemia viruses (MuLVs) revealed that gp55 is composed of three distinct regions. The amino-terminal 80% of the molecule has a high degree of sequence homology with the amino-terminal portion of the gp70 of the Moloney mink cell focus-forming virus (BALB/Mo-MCFV). This portion of the BALB/Mo-MCFV gp70 is known to be coded for by the acquired xenotropic env-like sequence. The sequence of the following 66 amino acids of gp55 is highly homologous to that of the middle portion of the p15E of Moloney MuLV (Mo-MuLV). The sequence of the Carboxyl-terminal 12 amino acids is specific to gp55 and a comparison of the nucleotide sequence showed that this specific amino acid sequence is due to the presence of seven extra nucleotides compared with the sequence of the Mo-MuLV.

Amino Acid Sequence↗

Presence of a novel spleen focus-forming virus-specific glycoprotein (gp51) in a Friend leukemia cell line and its decrease during erythrodifferentiation.

All Friend leukemia cell lines induced by polycythemic strains of Friend leukemia virus complex express an appreciable amount of spleen focus-forming virus (SFFV)-coding envelope gene (env)-related glycoprotein with a molecular weight of 55 kilodaltons (gp55). A clonal, highly differentiation-inducible Friend leukemia cell line, T3-C1-2-O(2-O), possesses not only gp55 but also gp51 as SFFV-specific gene products. The peptide map of gp51 is quite similar to that of gp55 and the difference in their molecular weights is primarily dependent on their oligosaccharide content. In the differentiation-induced state, gp51 becomes far less detectable than gp55 in 2-O cells. The biological significance of this novel SFFV-coding glycoprotein is discussed.

Acetylglucosaminidase↗