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101.
Two soluble glycoproteins containing hydroxyproline were extractedfrom cultured tobacco cells (cell line XD-6S) and purified byion-exchange and gel-filtration chromatography. On DEAR-cellulosecolumn chromatography in the final step of the purification,one was eluted at 90 mM NaCl and the other at 120 mM as singlepeak. Both purified glycoproteins were also sedimented as singlepeak with an ultracentrifugation. The S20,w values were 6.1for the former and 7.0 for the latter. These glycoproteins were composed of 94% polysaccharide and6% protein in the former, and 87% polysaccharide and 13% proteinin the latter. The sugar moiety consisted of galactose, arabinose,rhamnose, and uronic acid in both. Hydroxyproline accountedfor 12% in the former and 20% in the latter amino acid composition.A high content of alanine in both (14 and 15%) was one of thedistinctive characteristics of these soluble glycoproteins. These intracellular soluble hydroxyproline-containing glycoproteinswere not labelled within 30 min of incubation with 3H-proline,although the radioactivity was rapidly incorporated (within15 min) into the intracellular macromolecules. (Received February 21, 1978; ) 相似文献
102.
Erythrocyte ghosts containing a known number of molecules of purified fragment A of diphtheria toxin with a constant amount of FITC-BSA as a fluorescence marker were prepared by dialyzing a mixture of erythrocytes and these substances against hypotonic solution. These substances were then introduced into diphtheria toxin-resistant mouse L cells by virus-mediated cell fusion of the cells with the ghosts, and mononuclear recipients that had fused with only one erythrocyte ghost were separated in a fluorescence-activated cell sorter (FACS) on the basis of their cell size and fluorescence intensity. After separation, the viability of cells containing known numbers of fragment A was examined by measuring colony-forming ability. The results demonstrated that a single molecule of fragment A was sufficient to kill a cell.This fact was confirmed by introduction into cells of fragment A from an immunologically related mutant toxin, CRM 176 (fragment A-176); this has a completely functional fragment B region, but in cell extracts, the enzymic activity of its fragment A is about 10 fold less than that of wild toxin. The cytotoxicity of CRM 176 is about two hundredths of that of the wild-type (Uchida, Pappenheimer and Greany, 1973). As expected, about 100–200 fold excess of fragment A-176 was needed to kill the cells. 相似文献
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105.
Chemical ionization (c.i.) mass spectra with isobutane as the reagent gas are reported for the peracetates of aldobiouronic acids and related compounds, and for peracetates and permethylated derivatives of dialdose dianhydrides. Ions (M+ + 43) having relatively high intensities were detected in the spectra of disaccharides lacking the dianhydride structure. Peracetylated dialdose dianhydrides showed very weak (M+ + 43) ions, and permethylated dianhydrides did not show them. The (M+ + 43) ion consisted of molecular ion and acetoxyl radical (but not of the reagent gas). In the c.i. mass spectra of the usual disaccharide peracetates, (M+ ? 31) and (M+ ? 60) ions had large intensities. In contrast, c.i. mass spectra extremely similar to the corresponding e.i. mass spectra were obtained for dialdose dianhydrides. 相似文献
106.
Eisuke Mekada Kenji Kohno Masahiro Ishiura Tsuyoshi Uchida Yoshio Okada 《Biochemical and biophysical research communications》1982,109(3):792-799
We have measured the specific uptake of 125I-labelled diphtheria toxin in the presence of methylamine by a number of cell lines with different sensitivities to diphtheria toxin. The results show a strong correlation between the toxin sensitivities of the cell lines and the amount of specific uptake. The specific association of labelled toxin with cells was clearly demonstrated even with CHO cells, a cell line with relatively low sensitivity. Thus, CHO cell mutants that are resistant to diphtheria toxin could be classified as toxin-binding or non-binding cells by this method. 相似文献
107.
Y Kitajima S Matsuhashi H Nishida Y Takasaki I Takahashi T Hisatsugu K Hori 《Journal of biochemistry》1991,109(4):544-550
Three monoclonal antibodies (MAbs1A2, 3C5, and 4C2) for human aldolase A [EC 4.1.2.13] were established. MAbs1A2, 3C5, and 4C2 were shown to belong to subclasses IgM, IgG1, and IgG2a, respectively. None of the MAbs inhibits aldolase A activity. Their epitopes were mapped in detail on the molecule by examining the reactivities of the MAbs to chimeric proteins between aldolases A and B [Kitajima et al. (1990) J. Biol. Chem. 265, 17493-17498] in ELISA and to the CNBr-cleaved fragments of aldolase A in immuno-blotting. MAbs1A2 and 3C5 reacted with sites located within amino acid residues 306-363 at the C-terminal region of the enzyme. MAb4C2 recognized an epitope of the enzyme present within amino acid residues 34-108 at the N-terminal region. In a competitive binding assay, MAbs1A2 and 3C5 competed with each other for binding to the antigen and also interfered with the binding of MAb4C2, whereas MAb4C2 failed to inhibit the binding of MAbs1A2 and 3C5 to the antigen. MAb3C5 showed a species-specificity in the reaction with the antigen; it reacted with human and rabbit aldolase A with similar reactivity but not at all with the rat and mouse enzymes, which differ from the human and rabbit enzymes in two amino acid residues at positions 328 and 348. Reactivities of MAbs to aldolase A were further examined with engineered enzymes containing an amino acid substitution.(ABSTRACT TRUNCATED AT 250 WORDS) 相似文献
108.
Kunihiro Kuwajima Naoki Okayama Kaori Yamamoto Tsuyoshi Ishihara Shintaro Sugai 《FEBS letters》1991,290(1-2)
Kinetics of unfolding and refolding of a staphylococcal nuclease mutant, in which Pro117 is replaced by glycine, have been investigated by stopped-flow circular dichroism, and the results are compared with those for the wild-type protein. In contrast to the biphasic unfolding of the wild-type nuclease, the unfolding of the mutant is represented by a single-phase reaction, indicating that the biphasic unfolding for the wild-type protein is caused by cis-trans isomerization about the prolyl peptide bond in the native state. The proline mutation also simplifies the kinetic refolding. Importance of the results in elucidating the folding mechanism is discussed. 相似文献
109.
110.