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951.
Timothy A. Stammers René Coulombe Martin Duplessis Gulrez Fazal Alexandre Gagnon Michel Garneau Sylvie Goulet Araz Jakalian Steven LaPlante Jean Rancourt Bounkham Thavonekham Dominik Wernic George Kukolj Pierre L. Beaulieu 《Bioorganic & medicinal chemistry letters》2013,23(24):6879-6885
Optimization efforts on the anthranilic acid-based Thumb Pocket 2 HCV NS5B polymerase inhibitors 1 and 2 resulted in the identification of multiple structural elements that contributed to improved cell culture potency. The additive effect of these elements resulted in compound 46, an inhibitor with enzymatic (IC50) and cell culture (EC50) potencies of less than 100 nanomolar. 相似文献
952.
Mika Zagrobelny Mohammed Saddik Motawia Carl Erik Olsen Søren Bak Birger Lindberg Møller 《Insect biochemistry and molecular biology》2013,43(11):1037-1044
Zygaena filipendulae accumulates the cyanogenic glucosides linamarin and lotaustralin by larval sequestration from the food plant or de novo biosynthesis. We have previously demonstrated that the Z. filipendulae male transfers linamarin and lotaustralin to the female in the course of mating. In this study we report the additional transfer of 5-hydroxytryptophan glucoside (5-(β-d-glucopyranosyloxy)-l-Tryptophan) from the Z. filipendulae male internal genitalia to the female spermatophore around 5 h into the mating process. 5-Hydroxytryptophan glucoside is present in the virgin male internal genitalia, and production continues during the early phase of mating. Following initiation of 5-hydroxytryptophan glucoside transfer to the female, the amount in male internal genitalia is drastically reduced until after mating where it is slowly replenished. For unambiguous structural identification, 5-hydroxytryptophan glucoside was chemically synthesized and used as an authentic standard. The biological function of 5-hydroxytryptophan glucoside remains to be established, although we have indications that it may be involved in inducing the female to stay in copula and delay egg-laying to prevent re-mating of the female. To our knowledge 5-hydroxytryptophan glucoside has not previously been reported present in animal tissues. 相似文献
953.
Glutamate-l-semialdehyde (GSA) aminotransferase catalyses the final step in the C5 pathway converting glutamate to the tetrapyrrole precursor δ-aminolaevulinic acid. This enzyme is sensitive to gabaculine (2,3-dihydro-3-amino benzoic acid) and to 4-amino-5-fluoropentanoic acid (AFPA), which are irreversible, mechanism-based inhibitors of pyridoxal phosphatedependent enzymes. Spontaneous mutants of Synechococcus PCC6301 resistant to these inhibitors contain altered enzyme that displays corresponding resistance to high concentrations of the inhibitor. The enzyme from strain GR6, resistant to both inhibitors, contains a three-amino-acid deletion at positions 5–7 and a Met248 → Ile substitution. The enzyme from strain K40 resistant to AFPA but not to gabaculine, contains a Ser163 → Thr substitution. GSA aminotransferases containing either the deletion or the substitution that are characteristic of the GR6 mutant were produced in Escherichia coli using the expression vector pMalc2. These engineered mutant enzymes were characterized in terms of their catalytic parameters and sensitivities to gabaculine and AFPA. Furthermore, maltose binding protein/aminotransferase fusion proteins were characterized spectrophotometrically to monitor the interaction of bound cofactor with diamino- and dioxocompounds related to the substrate and both inhibitors. Results were compared with those for similarly produced recombinant wild-type, K40 and GR6 GSA aminotransferases. The engineered products with either the N-terminal deletion or the Met248 → Ile substitution displayed catalytic efficiencies that were intermediate between the wild-type and GR6 or K40 enzymes. However, with respect to their absorption spectra, sensitivity to inhibitors and the reactivity of bound cofactor, they were essentially wild-type. These in vitro studies demonstrate that both changes in enzyme structure are necessary to obtain the distinctive properties of the GR6 aminotransferase, including resistance to high concentrations of gabaculine and AFPA. 相似文献
954.
Jonathan M. Rawson Richard H. Heineman Lauren B. Beach Jessica L. Martin Erica K. Schnettler Michael J. Dapp Steven E. Patterson Louis M. Mansky 《Bioorganic & medicinal chemistry》2013,21(22):7222-7228
The nucleoside analog 5,6-dihydro-5-aza-2′-deoxycytidine (KP-1212) has been investigated as a first-in-class lethal mutagen of human immunodeficiency virus type-1 (HIV-1). Since a prodrug monotherapy did not reduce viral loads in Phase II clinical trials, we tested if ribonucleotide reductase inhibitors (RNRIs) combined with KP-1212 would improve antiviral activity. KP-1212 potentiated the activity of gemcitabine and resveratrol and simultaneously increased the viral mutant frequency. G-to-C mutations predominated with the KP-1212-resveratrol combination. These observations represent the first demonstration of a mild anti-HIV-1 mutagen potentiating the antiretroviral activity of RNRIs and encourage the clinical translation of enhanced viral mutagenesis in treating HIV-1 infection. 相似文献
955.
956.
Naeimeh Safavizadeh Seyed Ali Rahmani Mohamad Zaefizadeh 《Indian journal of human genetics》2013,19(1):18-25
INTRODUCTION:
Multiple sclerosis (MS) is an autoimmune inflamatory disease, which affects the (Central Nervous System) and leads to the destruction of myelin and atrophy of the axons. Genetic factors, in addition to environmental ones, seem to play a role in MS. Numerous studies have reported mitochondrial defects including a reduction in cytochrome c oxidase (COX) complex function related to the reduction of mitochondrial genes expression in the cortex tissue of patients with MS have been reported.MATERIALS AND METHODS:
This study aimed to assess COX5B and COX2 genes expression in MS patients and compare it with normal subjects. We determine expression levels of genes COX5B and COX2, and also gene reference ß-actine using real–time polymerase chain reaction (RT-PCR) method. Data were obtained and obtained and standardized with the gene reference and were analyzed using independent sample t-test with SPSS and Excel programs.RESULT AND DISCUSSION:
The resultshowed COX5B gene expression reduced significant in MS patients compared to normal subjects (P < −0.05) whereas, there was no significant difference in the COX2 gene expression between normal subjects and patients. Thus, it can be claimed that down-regulation of mitochondrial electron transport chain genes supported the hypothesis that hypoxia-like tissue injury in MS may be due to mitochondrial genes, different expression impairment. 相似文献957.
5-氨基乙酰丙酸 (ALA) 是生物体内四吡咯类化合物的合成前体,在农业及医药领域应用广泛,是极具开发价值的高附加值生物基化学品。目前利用外源C4途径的重组大肠杆菌发酵生产ALA的研究主要利用LB培养基并添加葡萄糖和琥珀酸、甘氨酸等合成前体,成本较高。琥珀酸在C4途径中以琥珀酰辅酶A的形式直接参与ALA的合成。文中在以葡萄糖为主要碳源的无机盐培养基中研究了琥珀酰辅酶A下游代谢途径琥珀酸脱氢酶编码基因sdhAB和琥珀酰辅酶A合成酶编码基因sucCD缺失对ALA积累的影响。与仅表达异源ALA合成酶的对照菌株相比,sdhAB和sucCD缺失菌株ALA的产量分别提高了25.59%和12.40%,且ALA的积累不依赖于琥珀酸的添加和LB培养基的使用,从而大幅降低了生产成本,显示出良好的工业应用前景。 相似文献
958.
锌指蛋白185(ZNF185)属于LIM结构域蛋白,参与细胞的增殖和分化,在多种肿瘤细胞中具有抑癌基因的功能.ZNF185在正常人血液系统细胞中高表达,但目前对白血病细胞的作用未见研究.采用Western blot检测人外周血中性粒细胞、急性粒细胞白血病细胞系HL-60和慢性粒细胞白血病细胞系K562细胞中ZNF185的表达,发现ZNF185在HL-60和K562细胞中的表达水平显著低于外周血中性粒细胞.为了阐明ZNF185对慢性粒细胞白血病细胞增殖的影响,从人外周血中性粒细胞克隆ZNF185编码序列,转染K562细胞,MTT检测细胞增殖,发现过表达ZNF185显著抑制K562细胞的增殖.甲基化特异PCR分析表明:ZNF185启动子在HL-60和K562细胞中高甲基化,用5-氮杂-2′-脱氧胞苷处理K562细胞,促进ZNF185的表达,显著抑制细胞增殖.研究结果表明,ZNF185启动子高甲基化导致其在K562细胞中的表达降低和细胞增殖抑制作用减弱.可能是慢性粒细胞白血病发生或发展的原因之一. 相似文献
959.
对高致病性禽流感病毒感染最为有效的治疗应采用抗病毒和抗炎症的联合治疗.本试验用流感病毒H5N1感染不同细胞株(A549细胞和MDCK细胞),采用不同浓度格尔德霉素对病毒感染细胞培养物作用不同时长,检测流感病毒滴度;ELISA检测格尔德霉素作用于流感病毒H5N1感染A549细胞12 h、24 h促炎性细胞因子IFN-α、TNF-α和IL-6水平.结果显示,流感病毒H5N1感染A549细胞和MDCK细胞,格尔德霉素极显著地抑制了流感病毒H5N1在细胞培养物的增殖(P < 0.01),而在病毒感染36 h和48 h,格尔德霉素并没有显著抑制流感病毒在MDCK细胞上的增殖(P > 0.05).促炎性细胞因子分析结果显示,格尔德霉素在流感病毒感染A549细胞12 h和24 h均显著降低了促炎性细胞因子IFN-α、TNF-α和IL-6的分泌(P < 0.05).上述实验结果显示,格尔德霉素具有抑制流感病毒H5N1增殖及其所介导的炎性反应的双重效应,为格尔德霉素成为应对流感病毒流行的备选药物提供基础科学依据. 相似文献
960.
为了研究元宝草(Hypericum sampsonii Hance)全草的化学成分,利用硅胶柱层析、Sephadex LH-20等色谱技术对元宝草三氯甲烷部位进行分离和纯化,共得到6个化合物,通过1H NMR、13C NMR、HMQC、HMBC等波谱技术分别鉴定为2,6-二羟基-4,3’,5’-三甲氧基二苯甲酮(1)、1,3,6-三羟基-2-甲基蒽醌(2)、山奈酚(3)、木犀草素(4)、3,4-二羟基苯甲酸乙酯(5)、β-谷甾醇(6),其中化合物1为新化合物,化合物2和5首次从该植物中分离得到。 相似文献