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A. J. Gatrill C. D. Mackenzie J. E. McMahon J. F. Williams R. H. Guderian 《The Histochemical journal》1987,19(9):509-519
Summary Immunocytochemical and histochemical properties of macrophages present in the subcutaneous chronic inflammatory responses surrounding adultOnchocerca volvulus (nodules) in human tissues were examined. Macrophages with strong non-specific esterase (NSE) and acid phosphatase (AcPase) activities but weak adenosine triphosphatase (ATPase) activity and HLA-DR expression (NSE+++, AcPase+++, ATPase–/+, HLA-DR–/+) were present in the centre of nodules. Many of the cells adhering to the surface of worms were NSE+++, AcPase+++, ATPase–, HLA-DR+++. The inner zone of the fibrous capsule of nodules contained macrophages with the profile NSE+++, AcPase–, ATPase–/+, HLA-DR–/+. A fourth type, NSE+++, AcPase–/+, ATPase–/+, HLA-DR+++, was located in the outer zone of the capsule, frequently within perivascular accumulations of macrophages, lymphocytes and plasma cells. Active fibroblasts were identified at the inner edge of the fibrous capsule by alkaline phosphatase staining. A feature of all nodules examined was the presence of lipid-filled macrophages, demonstrated by Oil Red O stain; these cells were usually situated in zones adjacent to the centre of nodules, and were of the NSE++, AcPase++, ATPase–/+, HLA-DR–/+ type. Lipid accumulation was not found to be related to the clinical status of the patients studied. The origin and functional significance of this lipid is unknown. 相似文献
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W Zou R Mackenzie L Thérien T Hirama Q Yang M A Gidney H J Jennings 《Journal of immunology (Baltimore, Md. : 1950)》1999,163(2):820-825
The protective epitope of the type III group B streptococcal polysaccharide (GBSPIII) is length dependent and conformational. To obtain a more accurate characterization of the conformational epitope, ELISA inhibition and surface plasmon resonance studies were conducted on two GBSPIII-specific mAbs using a large panel of oligosaccharide probes. The results of the studies confirmed that 2 repeating units (RU) is the minimum binding unit and that, while increases in chain length from 2 RU to 7 RU caused further optimization of the epitope, it remained monovalent. A 3-fold increase in affinity was observed between 7 RU and 20 RU, which, by surface plasmon resonance studies on a Fab, was shown to be due to both further optimization of the individual epitope and the occurrence of multivalency of epitope. The data support our hypothesis that the conformational epitope is an extended helical segment of the GBSPIII. GBSPIII exists mainly in the random coil form, which structurally mimics short oligosaccharide self Ags, but it can infrequently and spontaneously form extended helices. Although not prevalent in GBSPIII, the immune system preferentially selects these helical epitopes because they are unique to the polysaccharide. Contrary to a previously proposed model of GBSPIII binding in which the binding of the first Ab propagates a continuum of helical epitopes, our binding kinetics are consistent only with the helical epitope's being discontinuous and infrequent. 相似文献
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A 3-year enpidemiologic study of fatal motor vehicle accidents was carried out by the Alberta Task Force on Highway Accidents. It was found that 11.1% of culpable drivers had been driving while impaired by alcohol on at least one occasion prior to the fatal accident, while only 3.3% of exonerated drivers had previous records. This significant difference led to a case-control study that demonstrated that the recidivist drivers (case group) differed significantly in a number of aspects from the innocent drivers (control group)--notably, age distribution, sex, whether drinking before the accident, blood alcohol concentration, ethnic distribution, class of accident and type of collision. Thus the recidivist driver is a greater threat to highway safety than the innocent driver and needs special attention by legislators and law enforcement agencies. 相似文献
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Glutamine, the preferred precursor for neurotransmitter glutamate, is likely to be the principal substrate for the neuronal System A transporter SAT1 in vivo. By measuring currents associated with SAT1 expression in Xenopus oocytes, we found that SAT1 mediates transport of small, neutral, aliphatic amino acids including glutamine, alanine and the System A‐specific analogue 2‐(methylamino) isobutyrate, each with K0.5 of 0.3–0.5 mm . Amino acid transport is driven by the Na+ electrochemical gradient. Kinetic data indicates that Na+/cotransport comprises the ordered binding first of Na+ (a voltage‐dependent step), then alanine, then simultaneous translocation. Li+ (but not H+) can substitute for Na+ but results in reduced Vmax. In the absence of amino acid, SAT1 mediates a cation leak with selectivity Na+, Li+, H+, K+. The temperature‐dependence of the leak current (Ea = 17 ± 3 kcal/mol) is consistent with carrier‐mediated Na+ uniport activity (cf 13 ± 2 kcal/mol for Na+/alanine cotransport) but the leak does not saturate at physiological [Na+], suggesting channel activity. Despite a Na+ Hill coefficient of 1, we obtained Na+/amino acid coupling coefficients greater than 1 from simultaneous measurement of charge and [3H]alanine or [3H]glutamine uptake. Interpretation of these data is model‐dependent and consistent with either (1) an all‐carrier model in which Na+/amino acid cotransport is thermodynamically coupled 2 : 1, cotransport is preferred over Na+ uniport, and in which there is little cooperativity between Na+ binding events, or (2) 1 : 1 coupling in parallel with an always‐on Na+ channel activity. In either scenario, the presence of SAT1 at the plasma membrane and resultant Na+ fluxes will place a significant energy burden on the cell. 相似文献
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Graham Mackenzie Gordon Shaw Hilary A. Wilson 《Nucleosides, nucleotides & nucleic acids》2013,32(4):339-343
Abstract A novel conversion of ethyl 5-amino-1 -(2, 3, 0-isopropylidene-β-D-ribofuranosyl)imidazole-4-carboxylate (2) to the corresponding 2, 5'-cyclo derivative (4) occurs with alkaline hypobromite or N-chlorosuccinimide and alkali. 相似文献
40.
The existence of multiple chromosomes in bacteria has been known for some time. Yet the extent of functional solidarity between different chromosomes remains unknown. To examine this question, we have surveyed the well-described genes of the tryptophan biosynthetic pathway in the multichromosomal photosynthetic eubacterium Rhodobacter sphaeroides 2.4.1. The genome of this organism was mutagenized using Tn5, and strains that were auxotrophic for tryptophan (Trp(-)) were isolated. Pulsed-field gel mapping indicated that Tn5 insertions in both the large (3 Mb CI) and the small (0.9 Mb CII) chromosomes created a Trp(-) phenotype. Sequencing the DNA flanking the sites of the Tn5 insertions indicated that the genes trpE-yibQ-trpGDC were at a locus on CI, while genes trpF-aroR-trpB were at locus on CII. Unexpectedly, trpA was not found downstream of trpB. Instead, it was placed on the CI physical map at a locus 1.23 Mb away from trpE-yibQ-trpGDC. To relate the context of the R. sphaeroides trp genes to those of other bacteria, the DNA regions surrounding the trp genes on both chromosomes were sequenced. Of particular significance was the finding that rpsA1, which encodes ribosomal protein S1, and cmkA, which encodes cytidylate monophosphate kinase, were on CII. These genes are considered essential for translation and chromosome replication, respectively. Southern blotting suggested that the trp genes and rpsA1 exist in single copy within the genome. To date, this topological organization of the trp "operon" is unique within a bacterial genome. When taken with the finding that CII encodes essential housekeeping functions, the overall impression is one of close regulatory and functional integration between these chromosomes. 相似文献