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231.
Barsanjit Mazumder Shyamali Mukherjee Parimal C. Sen 《Molecular and cellular biochemistry》1990,95(1):13-20
Chlorpromazine, an antipsychotic drug, is found to inhibit Na+,K+-ATPase activity in rat brain microsomal membranes in vitro in concentration and time dependent manner but some inconsistency is observed when the effect was studied with respect to different temperatures. Various ligands and/or substrate affect the inhibition by chlorpromazine in different ways. The in vivo study with this drug shows that the activities of Na+,K+-ATPase, Ca–2-ATPase and acetylcholinesterase in the microsomal membranes of different organs are inhibit with increases in concentration or lengths of time of treatment and then levels off. 相似文献
232.
P F Barnes S J Fong P J Brennan P E Twomey A Mazumder R L Modlin 《Journal of immunology (Baltimore, Md. : 1950)》1990,145(1):149-154
TNF and IFN-gamma are thought to be involved in the immune response to mycobacterial infection because they exhibit antimycobacterial effects in vitro. To investigate the roles of these cytokines in vivo at the site of disease activity in human tuberculosis, we evaluated local cytokine production in patients with tuberculous pleuritis. Both TNF and IFN-gamma were selectively concentrated 5- to 30-fold in pleural fluid, compared to blood of the same patients. Messenger RNA for both cytokines was detected in pleural tissue by in situ hybridization, suggesting that selective cytokine concentration is due to local cytokine production. Two Mycobacterium tuberculosis cell wall components, the protein-peptidoglycan complex and lipoarabinomannan, caused dose-dependent release of TNF by pleural fluid mononuclear cells and may constitute the stimuli for TNF production in the pleural space. In contrast to results obtained for TNF release, the protein-peptidoglycan complex, but not lipoarabinomannan, stimulated IFN-gamma release by pleural fluid mononuclear cells. The clinical manifestations of tuberculous pleuritis, such as fever, exudative pleural effusion, and tissue necrosis, may be due to the effects of elevated local TNF concentrations, produced in response to mycobacterial cell wall components. 相似文献
233.
234.
From the aerial parts of Canscora decussata Schult (Gentianaceae), five triterpenes, viz. gluanone, canscoradione, friedelin, fridelan-3-β-ol, and β-amyrin, three sterols, viz. sitosterol, stigmasterol, and campesterol, besides liberal amount of a mixtures of n-alkanes (C27-C31) and n-alkanols (C26-C32) have been isolated. The identity of the compounds has been established by chemical transformations, spectral evidence, and by direct comparison, where possible, with authentic reference materials. Gluanone and canscoradione have not been encountered before in nature. 相似文献
235.
236.
Shibnath Ghosal 《Phytochemistry》1985,24(8):1807-1810
From peeled fruits of Musa paradisiaca (banana, vegetable variety), two new acyl steryl glycosides, sitoindoside-III and sitoindoside-IV, and two new steryl glycosides, sitosterol gentiobioside and sitosterol myo-inosityl-β-D-glucoside, have been isolated by gradient solvent extraction and extensive chromatography (CC, prep. TLC, GC and HPLC). The compounds have been characterized by comprehensive spectroscopic analyses (IR, 1H NMR, GC, mass spectra, [α]D) and crucial chemical transformation. Additionally, seasonal variations of the total sterols, free sterols, steryl esters, steryl glycosides and acyl steryl glycosides in the active samples of banana have been analysed. The results provide a basis for the observed fluctuations in the anti-ulcerogenic activity of the extracts, in different seasons, and the importance of appropriate formulation of the pure principles to optimize the activity. 相似文献
237.
A new optically active flavan aglucone, 7-hydroxy-3′,4′-methylenedioxyflavan, and its 7-glucoside have been isolated from the bulbs of Zephyranthes flava, collected at flowering. Additionally, two known flavans, 7,4′-dihydroxy-3′-methoxyflavan and 7-methoxy-2′-hydroxy-4′,5′-methylenedioxyflavan, have been isolated for the first time from this species. The structures of these flavans have been established by comprehensive analyses (UV, IR, 1H NMR, 13C NMR, mass spectrometry, [α]D) of the compounds and their acetates, and also by chemical correlation. 相似文献
238.
Arif Uddin Tarikul Huda Mazumder Supriyo Chakraborty 《Journal of cellular physiology》2019,234(5):6397-6413
The mitochondrial cytochrome oxidase (CO) genes are involved in complex IV of the electron transport system, and dysfunction of CO genes leads to several diseases. However, no work has been reported on the codon usage pattern of these genes. We used bioinformatic methods to analyze the compositional properties and the codon usage pattern of the COI, COII, and COIII genes in fishes, birds, and mammals to understand the similarities and dissimilarities of codon usage in these genes, which gave an insight into the molecular biology of these genes. The effective number of codons (ENC) value of genes was high in different species of fishes, birds and mammals, which indicates that the codon bias of CO genes was low and the ENC values were significantly different among fishes, birds, and mammals, as revealed from the t test. The overall guanine and cytosine (GC) content in fishes, birds, and mammals was lower than 50% in all genes, indicating that the genes were AT-rich and significantly different among fishes, birds, and mammals. The TCA codon was overrepresented in fishes, birds, and mammals for the COI gene, in birds and mammals for the COII gene, but it was not overrepresented in others. Only three codons, namely CTA, CGA, and AAA, were overrepresented in all three groups for the COI, COII, and COIII genes, repectively. From the neutrality plot in fishes, birds, and mammals, it was observed that the slopes of the regression lines (regression coefficients) in the COI, COII, and COIII genes were <0.5, suggesting that natural selection played a major role, whereas mutation pressure played a minor role. 相似文献
239.
R Mazumder J R Logan A T Mikell Jr S W Hooper 《Journal of industrial microbiology & biotechnology》1999,23(6):476-483
An azo dye-degrading bacterium, Caulobacter subvibrioides strain C7-D, semi-constitutively produces an azoreductase that reduced the azo bond of the dyes Acid Orange (AO) 6, AO7,
AO8, AO12, Acid Red (AR) 88, AR151, and Methyl Red (MR). This activity was oxygen insensitive. Of the dyes tested, AO7 was
the best inducer and the most rapidly reduced substrate suggesting that dye AO7 most closely mimics the natural physiological
substrate for this enzyme. The K
m for AO7 was 1 μM. Purification of the azoreductase from C. subvibrioides strain C7-D was achieved through dye-ligand affinity chromatography using the dye Orange-A covalently coupled to an agarose
support. The azoreductase is approximately 30 kDa and enzyme studies indicate a single azoreductase. The optimal activity,
pH, cofactor usage, substrate specificity, molecular weight and K
m characteristics of the enzyme set it apart from other known oxygen-insensitive azoreductases.
Received 18 May 1999/ Accepted in revised form 13 July 1999 相似文献
240.