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341.
Using an anti-serum raised in rabbits against 12 week old human foetuses, foetal-specific materials were identified in bone marrow cells in a number of neoplastic and non-neoplastic conditions.
Particularly high levels were found in patients with pernicious anaemia and folic acid deficiency and to a lesser extent, iron deficiency. Several types of leukaemia also demonstrated high proportion of the cells staining positive with the anti-foetal serum described.
The importance of the expression of foetal substances by cells during both neoplastic and non-neoplastic abnormal states is discussed. Emphasis is also placed on the importance of maturation arrest and abnormalities being one of the conditions under which foetal-specific substances (also called foetal antigens), can be expressed.  相似文献   
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Summary Staphylococcus aureus AB188 (a clinical isolate from wound pus) has been found to produce bacteriocins and/or bacteriocin-like inhibitory substance(s) tentatively termed staphylococcin Bac188. It has a broad activity spectrum against many Gram-positive (e.g. B. subtilis, S. aureus, E. faecalis), Gram-negative bacteria (e.g. E. coli, S. typhi and S. dysenteriae), and dermatophytes including Microsporum canis, Microsporum gypseum, Trichophyton mentagrophytes, Trichophyton longi and Trichophyton rubrum. Interestingly, staphylococcin Bac188 also showed very potent activity against many clinical isolates of Mycobacterium tuberculosis. Staphylococcin Bac188 showed wide thermostability and remained stable over the wide pH range (pH 2–14). It was also resistant to treatment with chloroform, catalase, lipase and lysozyme, but showed sensitivity to proteinase K, trypsin and α-chymotrypsin suggesting its proteinaceous nature. Staphylococcin Bac188 revealed bactericidal effects on the S. aureus SS-1 sensitive strain as well as on E. coli and S. typhi, suggesting a similar mode of action on both Gram-negative and Gram-positive organisms. The antimicrobial, antidermatophytic and antimycobacterial activities expressed by S. aureus AB188 correlate with the production of a bacteriocin and/or bacteriocin-like inhibitory substance with properties similar to other staphylococcins reported earlier. To our knowledge, this is the first report describing such wide possible clinical applications of a bacteriocin and/or bacteriocin-like inhibitory substance produced by S. aureus AB188, suggesting further investigation for potential therapeutic development.  相似文献   
344.
The energetics and location of renal transport of acetoacetate, beta-hydroxybutyrate, alpha-hydroxybutyrate and gamma-hydroxybutyrate by luminal-membrane vesicles from either whole cortex or pars convoluta or pars recta of rabbit proximal tubule were studied. Addition of either acetoacetate or beta-hydroxybutyrate or its analogues to dye-membrane-vesicle suspensions in the presence of Na+ gradient (extravesicular greater than intravesicular) resulted in absorbance changes indicative of depolarizing event(s). Valinomycin enhanced the Na+-dependent uptake of monocarboxylic acids, provided a K+ gradient (intravesicular greater than extravesicular) was present. By contrast, Na+-dependent uptake of these compounds was nearly abolished by ionophores that permit Na+ to pass through the luminal-membrane via another channel, either electrogenically (e.g. gramicidin D) or electroneutrally (e.g. nigericin). These results established that the Na+-dependent transport of ketone bodies and analogues by luminal-membrane vesicles is an electrogenic process. Eadie-Hofstee analysis of saturation kinetic data suggested the presence of multiple transport systems in vesicles from whole cortex for these compounds. Tubular localization of the transport systems was studied by the use of vesicles derived from pars convoluta and pars recta. In pars recta uptake of all these compounds was mediated by means of a single high affinity common transport system. Uptake of these compounds by vesicles from pars convoluta was carried out via a relatively low affinity but common transport system. The physiological importance of the transport systems is discussed.  相似文献   
345.
A P Hansen  S P Sheikh 《FEBS letters》1992,306(2-3):147-150
Affinity labeling using [125I-Tyr36]PYY and homobifunctional affinity crosslinking reagents of the rabbit Y2 receptor for peptide YY(PYY) results in specifically labeled proteins of both M(r) = 50,000 to 60,000 and M(r) = 96,000 to 115,000 [1,2]. In this work the glycoprotein nature of affinity labeled Y2 receptor proteins were investigated by enzymatic deglycosylation using neuraminidase, endoglycosidase F (endo F), N-glycosidase F (PNGase F), and O-glycanase treatment. Only N-glycosidase F and neuraminidase increased the electrophoretic mobility of the radiolabeled receptor bands, whereas all other glycosidases did not. PNGase F treatment of both radiolabeled receptor bands electroeluted from gel slices reduced the apparent molecular mass of by 16-17 kDa units, that is M(r) = 96,000 to 79,000 and M(r) = 60,000 to 44,000, indicating removal of N-linked oligosaccharide chains of similar size from both species. Neuraminidase treatment caused slight increases in the electrophoretic mobilities suggesting the presence of terminal sialic residues. It is concluded that the Y2 binding proteins are N-linked complex (sialo)glycoproteins with a minimal core protein size of M(r) = 44,000. Furthermore, based on this sensitivity pattern of the glycosidases, the Asn-linked carbohydrate may be of the tri- or tetra-antennary complex type containing terminal sialic acid residues.  相似文献   
346.
Summary The irrigation water in use at the Punjab University New Campus is of good quality except the water of one tubewell which is relatively poor (high-salinity and low-sodium water) and has 0.45 ppm boron. Water with a boron content of upto 3.00 ppm did not affect the germination of the seeds of wheat (Triticum vulgare L. var. Mexi-Pak) and there was some stimulation of the growth of seedlings by an increase in the concentration of boron beyond 0.45 ppm. However, these seedlings, when transplanted to the soils supplied with waters containing different amounts of boron, showed a decrease in their growth at higher concentrations of boron with their ageing, and when these plants were about 100 days old and almost mature, their growth decreased significantly with an increase in the concentration of boron to 2.00 or 3.00 ppm in the water supplied to them. The growth of the plants of Mexi-Pak wheat is inversely related to the boron content of their tissues when it is more than 0.60 ppm. Mexi-Pak wheat is semi-tolerant to boron. re]19750605  相似文献   
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The ability to discriminate between different ionic species, termed ion selectivity, is a key feature of ion channels and forms the basis for their physiological function. Members of the degenerin/epithelial sodium channel (DEG/ENaC) superfamily of trimeric ion channels are typically sodium selective, but to a surprisingly variable degree. While acid-sensing ion channels (ASICs) are weakly sodium selective (sodium:potassium ratio ∼10:1), ENaCs show a remarkably high preference for sodium over potassium (>500:1). This discrepancy may be expected to originate from differences in the pore-lining second transmembrane segment (M2). However, these show a relatively high degree of sequence conservation between ASICs and ENaCs, and previous functional and structural studies could not unequivocally establish that differences in M2 alone can account for the disparate degrees of ion selectivity. By contrast, surprisingly little is known about the contributions of the first transmembrane segment (M1) and the preceding pre-M1 region. In this study, we used conventional and noncanonical amino acid–based mutagenesis in combination with a variety of electrophysiological approaches to show that the pre-M1 and M1 regions of mASIC1a channels are major determinants of ion selectivity. Mutational investigations of the corresponding regions in hENaC show that these regions contribute less to ion selectivity, despite affecting ion conductance. In conclusion, our work suggests that the remarkably different degrees of sodium selectivity in ASICs and ENaCs are achieved through different mechanisms. These results further highlight how M1 and pre-M1 are likely to differentially affect pore structure in these related channels.  相似文献   
350.
The relationship of minerals and trace elements with inflammatory bowel disease (IBD) is complex. Alterations in their metabolism can be induced by the diseases and their complications. To study the role of trace elements in IBD patients’ serum zinc and copper and their related enzymes, including superoxide dismutase (SOD), activity were measured in patients with IBD patients as well as in healthy subjects. In addition, the correlation between serum trace element levels, albumin, total protein, urea level, copper/zinc ratio, and disease activity (DA) was determined in these subjects. Serum samples were obtained from 35 patients (19 ulcerative colitis (UC) and 16 Crohn’s disease (CD)) in the active phase of the disease and 30 healthy control subjects. Serum levels of zinc, copper, SOD activity, albumin, total protein, and urea were measured. The results were compared between the two groups using independent Student’s t test in statistical analysis. Serum levels of zinc, SOD activity, albumin, and total protein were significantly lower (P < 0.05) in patients than controls, while serum urea level was significantly higher in patients compared to controls. Copper concentrations did not differ between patients with IBD (mean ± SD, 58.8 ± 20.7 μg/d) and controls (55.57 ± 12.6 μg/d). Decreased levels of zinc and SOD activity are associated with increased inflammatory processes indicating inappropriate antioxidant system in patients with IBD. Additionally, lower levels of albumin and total protein with higher level of urea reflect metabolic problems in liver system.  相似文献   
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