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  • 1
    ISSN: 1432-072X
    Keywords: Key wordsRhodospirillum salinarum ; Lipopolysaccharide ; Mixed lipid A ; 2 ; 3-Diamino-2 ; 3-dideoxy-d-glucose ; 4-O-Methyl- ; galacturonic acid ; Halophilic bacteria ; Lethal toxicity
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The structural elucidation of lipid A of the cell wall lipopolysaccharide (LPS) of Rhodospirillum salinarum 40 by chemical methods and laser desorption mass spectrometry revealed the presence of a mixed lipid A composed of three different 1,4′bisphosphorylated β(1→6)-linked backbone hexosaminyl-hexosamine disaccharides, i.e. those composed of GlcN→GlcN, 2,3-diamino-2,3-dideoxy-d-Glc-(DAG)→DAG, and DAG→GlcN. Lipid A of R. salinarum contained preferentially 3-OH-18 : 0 and 3-OH-14 : 0 as amide-linked and cisΔ11–18 : 1 and c19 : 0 as ester-linked fatty acids. The mass spectra of the liberated acyl-oxyacyl residues proved the concomitant presence of 3-O-(cisΔ11–18 : 1)–18 : 0 and 3-O-(c19 : 0)-14 : 0 as the predominating diesters in this mixed lipid A. The glycosidically linked and the ester-linked phosphate groups of the backbone disaccharide were neither substituted by ethanolamine, phosphorylethanolamine, nor by 4-amino-4-deoxy-l-arabinose, in contrast to most of the enterobacterial lipid As. In the core oligosaccharide fraction, a HexA (1→4)HexA(1→5)Kdo-trisaccharide was identified by methylation analysis. The terminal HexA (hexuronic acid) is possibly 4-OMe-GalA, a component described here as an LPS constituent for the first time. LPS of R. salinarum showed a lethality in C57BL/10 ScSN (LPS-responder)-mice) of an order of 10–1–10–2 of that reported for Salmonella abortus equi LPS, and it was also capable of inducing TNFα and IL6 in macrophages of C57BL/10ScSN mice.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of bone and mineral metabolism 16 (1998), S. 227-233 
    ISSN: 1435-5604
    Keywords: Key words: osteoclasts ; nucleolar organizer regions ; gene expression
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract: Osteoclasts are multinuclear bone-resorbing cells. Little is known about regulation of gene expression in these cells and how it changes during the aging of an osteoclast, which is indicated by an increasing number of nuclei. Silver staining of nucleolar organizer regions, so-called Ag-NORs, allows us to assess the activity of rRNA expression. Using this technique, we show that individual nuclei of osteoclasts can be stained specifically and that the majority of individual nuclei contained Ag-NORs. The number and size of Ag-NORs varied, indicative of difference in the progression of the cell cycle through the G1 phase. The relative activity of Ag-NORs was not synchronized on the level of individual nuclei, regardless of the number of nuclei per osteoclast. Surprisingly, the total activity of Ag-NOR appeared to be correlated to the total nuclear area of an osteoclast. We conclude that regulation of gene expression in multinuclear osteoclasts most likely occurs on the level of individual nuclei.
    Type of Medium: Electronic Resource
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