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A new procedure has been developed for the synthesis of 3'-amino-3'-deoxyribonucleosides of adenine, cytosine and uracil by condensing the trimethylsilylated bases with peracylated 3-azido-3-deoxyribose derivative. The azido group could subsequently be reduced to amino. The 5'-phosphates of these nucleosides have been prepared and the analogues have been tested for their ability to stimulate the ribosome-catalyzed reaction of 3'(2')-O-(N-formylmethionyl) adenosine 5'-phosphate with phenylalanyl-tRNA.  相似文献   
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Xylose is a second‐most abounded sugar after glucose in lignocellulosic hydrolysates and should be efficiently fermented for economically viable second‐generation ethanol production. Despite significant progress in metabolic and evolutionary engineering, xylose fermentation rate of recombinant Saccharomyces cerevisiae remains lower than that for glucose. Our recent study demonstrated that peroxisomedeficient cells of yeast Ogataea polymorpha showed a decrease in ethanol production from xylose. In this work, we have studied the role of peroxisomes in xylose alcoholic fermentation in the engineered xylose‐utilizing strain of S. cerevisiae. It was shown that peroxisome‐less pex3Δ mutant possessed 1.5‐fold decrease of ethanol production from xylose. We hypothesized that peroxisomal catalase Cta1 may have importance for hydrogen peroxide, the important component of reactive oxygen species, detoxification during xylose alcoholic fermentation. It was clearly shown that CTA1 deletion impaired ethanol production from xylose. It was found that enhancing the peroxisome population by modulation the peroxisomal biogenesis by overexpression of PEX34 activates xylose alcoholic fermentation.  相似文献   
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Antonie van Leeuwenhoek - Lignocellulosic biomass is an attractive sustainable platform for fuel ethanol production. Xylose is a second after glucose most abounded sugar in lignocellulosic...  相似文献   
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Abstract

A high yield synthesis of different O-ribofuranosylnucleosides has been achieved. Kinetics of the acid-catalysed hydrolysis of disaccharide nucleosides has been studied. Chemical and enzymatic incorporation of 2′-O-ribofuranosyl-nucleoside residue into oligonucleotides was investigated.  相似文献   
6.
An important feature of chemokines is their ability to bind to the glycosaminoglycan (GAG) side chains of proteoglycans, predominately heparin and heparan sulfate. To date, all chemokines tested bind to immobilized heparin in vitro, as well as cell surface heparan sulfate in vitro and in vivo. These interactions play an important role in modulating the action of chemokines by facilitating the formation of stable chemokine gradients within the vascular endothelium and directing leukocyte migration, by protecting chemokines from proteolysis, by inducing chemokine oligomerization, and by facilitating transcytosis. Despite the importance of eotaxin in eosinophil differentiation and recruitment being well established, little is known about the interaction between eotaxin and GAGs and the functional consequences of such an interaction. Here we report that eotaxin binds selectively to immobilized heparin with high affinity (K(d) = 1.23 x 10(-8) M), but not to heparan sulfate or a range of other GAGs. The interaction of eotaxin with heparin does not promote eotaxin oligomerization but protects eotaxin from proteolysis directly by plasmin and indirectly by cathepsin G and elastase. In vivo, co-administration of eotaxin and heparin is able to significantly enhance eotaxin-mediated eosinophil recruitment in a mouse air-pouch model. Furthermore, when heparin is co-administered with eotaxin at a concentration that does not normally result in eosinophil infiltration, eosinophil recruitment occurs. In contrast, heparin does not enhance eotaxin-mediated eosinophil chemotaxis in vitro, suggesting protease protection or haptotactic gradient formation as the mechanism by which heparin enhances eotaxin action in vivo. These results suggest a role for mast cell-derived heparin in the recruitment of eosinophils, reinforcing Th2 polarization of inflammatory responses.  相似文献   
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The role of the immune system in the surveillance of transformed cells has seen a resurgence of interest in the last 10 years, with a substantial body of data in mice and humans supporting a role for the immune system in host protection from tumor development and in shaping tumor immunogenicity. A number of earlier studies have demonstrated that eosinophils, when recruited into tumors, can very effectively eradicate transplantable tumors. In this study, we investigated whether eosinophils also play a role in tumor immune surveillance by determining the incidence of methylcholanthrene (MCA)-induced fibrosarcomas in IL-5 transgenic mice that have greatly enhanced levels of circulating eosinophils, CCL11 (eotaxin-1)-deficient mice that lack a key chemokine that recruits eosinophils into tissues, and the eosinophil-deficient mouse strains, IL-5/CCL11(-/-) and DeltadblGATA. It was found that MCA-induced tumor incidence and growth were significantly attenuated in IL-5 transgenic mice of both the BALB/c and C57BL/6 backgrounds. Histological examination revealed that the protective effect of IL-5 was associated with massively enhanced numbers of eosinophils within and surrounding tumors. Conversely, there was a higher tumor incidence in CCL11(-/-) BALB/c mice, which was associated with a reduced eosinophil influx into tumors. This correlation was confirmed in the eosinophil-deficient IL-5/CCL11(-/-) and DeltadblGATA mouse strains, where tumor incidence was greatly increased in the total absence of eosinophils. In addition, subsequent in vitro studies found that eosinophils could directly kill MCA-induced fibrosarcoma cells. Collectively, our data support a potential role for the eosinophil as an effector cell in tumor immune surveillance.  相似文献   
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The frequencies of polymorphisms of CYP1A1 (2455A/G, 3801T/C) and CYP1A2 (?2464T/delT, ?163C/A) were determined in healthy residents of Bashkortostan (Russians, Tatars, and Bashkirs) and tested for association with chronic obstructive pulmonary disease (COPD). Interethnic differences in the frequency distribution of the CYP1A1 and CYP1A2 polymorphisms were significant. In Tatars and Russians, the CYP1A1 and CYP1A2 haplotype frequencies were similar (χ2 = 0.973, df = 3, P = 1.00 and χ2 = 1.546, df = 3, P = 0.92, respectively). In Bashkirs, the CYP1A1 haplotype frequencies significantly differed from those in Russians and Tatars (χ2 = 12.328, df = 3, P = 0.008 and χ2 = 9.218, df = 3, P = 0.034, respectively) owing to a high frequency of CYP1A1*2B (10.17%). Similarly, Bashkirs differed from Russians and Tatars in the CYP1A2 haplotype frequencies (χ2 = 18.779, df = 3, P = 0.0001 and χ2 = 14.326, df = 3, P = 0.003, respectively). The frequency of the CYP1A2*1D haplotype in Bashkirs was 11.02% in contrast to 2.36% in Tatars and 1.61% in Russians. Allele *D of the CYP1A2 ?2467delT polymorphism was associated with COPD in Tatars (OR = 1.83, 95%CI 1.24–2.71, χ2 = 9.48, P = 0.003). CYP1A2*1D was associated with an increased risk of COPD (8.65% vs. 2.36% in controls, χ2 = 9.733, P = 0.0027, P cor = 0.008, OR = 3.908, 95%CI 1.56–10.19). Haplotype CYP1A2*1A was significantly less frequent in patients with COPD (21.05% vs. 30.74%, χ2 = 6.319, P = 0.0127, P cor = 0.038, OR = 0.6012, 95%CI 0.402–0.898). The CYP1A1 polymorphisms were not associated with COPD in residents of Bashkortostan.  相似文献   
10.
Abstract

Dioxolane derivatives of dNTP were prepared and their substrate properties were investigated in DNA synthesis reactions.  相似文献   
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