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221.
Versha Rai Antresh Kumar Sneha Sudha Komath Rajendra Prasad 《生物化学与生物物理学报:生物膜》2008,1778(10):2143-2153
Although essentially conserved, the N-terminal nucleotide-binding domain (NBD) of Cdr1p and other fungal transporters has some unique substitutions of amino acids which appear to have functional significance for the drug transporters. We have previously shown that the typical Cys193 in Walker A as well as Trp326 and Asp327 in the Walker B of N-terminal NBD (NBD-512) of Cdr1p has acquired unique roles in ATP binding and hydrolysis. In the present study, we show that due to spatial proximity, fluorescence resonance energy transfer (FRET) takes place between Trp326 of Walker B and MIANS [2-(4-maleimidoanilino) naphthalene-6-sulfonic acid] on Cys193 of Walker A motif. By exploiting FRET, we demonstrate how these critical amino acids are positioned within the nucleotide-binding pocket of NBD-512 to bind and hydrolyze ATP. Our results show that both Mg2+ coordination and nucleotide binding contribute to the formation of the active site. The entry of Mg2+ into the active site causes the first large conformational change that brings Trp326 and Cys193 in close proximity to each other. We also show that besides Trp326, typical Glu238 in the Q-loop also participates in coordination of Mg2+ by NBD-512. A second conformational change is induced when ATP, but not ADP, docks into the pocket. Asn328 does sensing of the γ-phosphate of the substrate in the extended Walker B motif, which is essential for the second conformational change that must necessarily precede ATP hydrolysis. Taken together our results imply that the uniquely placed residues in NBD-512 have acquired critical roles in ATP catalysis, which drives drug extrusion. 相似文献
222.
百合不定芽的快速诱导 总被引:1,自引:0,他引:1
为获得麝香百合组织培养最优外植体及探讨蔗糖、6-BA和NAA的最佳用量,本文以MS固体培养基为基础培养基,通过4因素3水平(L9 (34)) 3次重复正交试验,研究不同花器官及不同浓度的蔗糖、6-BA (6 苄基嘌呤)和NAA (α-萘乙酸)对麝香百合组织培养诱导不定芽的影响.结果表明,花托为诱导不定芽最优外植体,诱导不定芽最佳培养基为MS+6-BA 1.0 mg/L+NAA 0.3 mg/L+蔗糖90 g/L.同时经过分析,可以判断本试验中设计的4个试验因素对百合组培的影响程度依次为外植体>蔗糖>奈乙酸和6-苄氨基嘌呤.本研究结果将为百合优良品种的生产提供重要的技术支撑和资源保证. 相似文献
223.
224.
Walter G. Gonzalez Jaroslava Miksovska 《Biochimica et Biophysica Acta - Proteins and Proteomics》2014,1844(9):1472-1480
DREAM (calsenilin or KChIP-3) is a calcium sensor involved in regulation of diverse physiological processes by interactions with multiple intracellular partners including DNA, Kv4 channels, and presenilin, however the detailed mechanism of the recognition of the intracellular partners remains unclear. To identify the surface hydrophobic surfaces on apo and Ca2 +DREAM as a possible interaction sites for target proteins and/or specific regulators of DREAM function the binding interactions of 1,8-ANS and 2,6-ANS with DREAM were characterized by fluorescence and docking studies. Emission intensity of ANS–DREAM complexes increases upon Ca2 + association which is consistent with an overall decrease in surface polarity. The dissociation constants for ANS binding to apoDREAM and Ca2 +DREAM were determined to be 195 ± 20 μM and 62 ± 4 μM, respectively. Fluorescence lifetime measurements indicate that two ANS molecules bind in two independent binding sites on DREAM monomer. One site is near the exiting helix of EF-4 and the second site is located in the hydrophobic crevice between EF-3 and EF-4. 1,8-ANS displacement studies using arachidonic acid demonstrate that the hydrophobic crevice between EF-3 and EF-4 serves as a binding site for fatty acids that modulate functional properties of Kv4 channel:KChIP complexes. Thus, the C-terminal hydrophobic crevice may be involved in DREAM interactions with small hydrophobic ligands as well as other intracellular proteins. 相似文献
225.
226.
Masuda K Tamagake K Okuda Y Torigoe F Tsuzuki D Isobe T Hichiya H Hanioka N Yamamoto S Narimatsu S 《Chirality》2005,17(1):37-43
The functional roles of phenylalanine at position 120 in drug oxidation by cytochrome P450 2D6 (CYP2D6) were examined using a yeast cell expression system and bufuralol (BF) enantiomers as a chiral substrate. Two mutated cDNAs, one encoding a CYP2D6 mutant having alanine instead of Phe-120 (F120A) and another encoding a mutant having alanine instead of Glu-222 (E222A), were prepared by site-directed mutagenesis and transformed into yeast cells via pGYRI vectors. The enantiomeric BF 1'-hydroxylase activities of the mutants were compared with those of the wild type. When enantiomeric BF 1'-hydroxylase activities at a substrate concentration of 100 microM were compared, the CYP2D6 wild type showed substrate enantioselectivity of (R-BF > S-BF) and the F120A mutant exhibited substrate enantioselectivity of (R-BF < or = S-BF), whereas the product diastereoselectivity of (1'R-OH-BF < 1'-S-OH-BF) was similar between the wild type and the mutant. The activities of the other mutant (E222A) were much lower than those of the wild type and the F120A mutant, while its substrate enantioselectivity and product diastereoselectivity were the same as those of the wild type. The kinetics demonstrated that apparent K(m) values were similar among the recombinant enzymes, and V(max) values clearly reflected the selectivity described above. These results indicate that Phe-120 has a key role in the enantioselective BF 1'-hydroxylation by CYP2D6. 相似文献
227.
The study of aging is critical for a better understanding of many age-related diseases. The free radical theory of aging, one of the prominent aging hypotheses, holds that during aging, increasing reactive oxygen species in mitochondria causes mutations in the mitochondrial DNA and damages mitochondrial components, resulting in senescence. Understanding a mitochondrial gene expression profile and its relationship to mitochondrial function becomes an important step in understanding aging. The objective of the present study was to determine mRNA expression of mitochondrial-encoded genes in brain slices from C57BL6 mice at four ages (2, 12, 18, and 24 months) and to determine how these altered mitochondrial genes influence age-related changes, including oxidative damage and cytochrome c in apoptosis. Using northern blot analysis, in situ hybridization, and immunofluorescence analyses, we analyzed changes in the expression of mitochondrial RNA encoding the mitochondrial genes, oxidative damage marker, 8-hydroxyguanosine (8-OHG), and cytochrome c in brain slices from the cortex of C57BL6 mice at each of the four ages. Our northern blot analysis revealed an increased expression of mitochondrial-encoded genes in complexes I, III, IV, and V of the respiratory chain in 12- and 18-month-old C57BL6 mice compared to 2-month-old mice, suggesting a compensatory mechanism that allows the production of proteins involved in the electron transport chain. In contrast to the up-regulation of mitochondrial genes in 12- and 18-month-old C57BL6 mice, mRNA expression in 24-month-old C57BL6 mice was decreased, suggesting that compensation maintained by the up-regulated genes cannot be sustained and that the down-regulation of expression results in the later stage of aging. Our in situ hybridization analyses of mitochondrial genes from the hippocampus and the cortex revealed that mitochondrial genes were over-expressed, suggesting that these brain areas are critical for mitochondrial functions. Our immunofluorescence analysis of 8-OHG and cytochrome c revealed increased 8-OHG and cytochrome c in 12-month-old C57BL6 mice, suggesting that age-related mitochondrial oxidative damage and apoptosis are associated with mitochondrial dysfunction. Our double-labeling analysis of in situ hybridization of ATPase 6 and our immunofluorescence analysis of 8-OHG suggest that specific neuronal populations undergo oxidative damage. Further, double-labeling analysis of in situ hybridization of ATPase 6 and immunofluorescence analysis of cytochrome c suggest cytochrome c release is related to mitochondrial dysfunction in the aging C57BL6 mouse brain. This study also suggests that these mitochondrial gene expression changes may relate to the role of mitochondrial dysfunction, oxidative damage, and cytochrome c in aging and in age-related diseases such as Alzheimer's disease and Parkinson's disease. 相似文献
228.
猪轮状病毒JL94中国分离株衣壳蛋白基因的分析 总被引:1,自引:0,他引:1
根据GenBank发表的猪轮状病毒衣壳蛋白vp4基因、vp6基因和vp7基因保守序列,设计合成3对引物,分别扩增猪轮状病毒中国分离株JL94株的此3段基因并进行序列分析。结果表明,JL94株vp4基因与国外分离株CRW-8株、OSU株、Gottfried株、4F株和4S株的VP4氨基酸同源性分别为97.16%、95%、71.88%、73.45%和70.88%;JL94株vp6与CRW-8株、OSU株、Gottfried株、4F株和4S株的VP6氨基酸同源性分别为96.98%、97.48%、93.20%、97.48%和93%;JL94株vp7基因与CRW-8株、OSU株、Gottfried株、4F株和4S株的VP7氨基酸同源性分别为98%、99.90%、75.40%、84.66%和80%。可见JL94株同CRW-8株、OSU株同源性更高些;vp4和vp7基因在同型间高度保守而不同型间差距较大,vp6基因在同群和非同群间差别不是很明显。同时可以判定JL94属于A群Ⅰ亚群G5P7血清型PRV。研究猪轮状病毒中国分离株JL94株衣壳蛋白基因的特征,为研制高效抗病毒疫苗奠定基础。 相似文献
229.
Temperature regulates tuber-inducing lipoxygenase-derived metabolites in potato (Solanum tuberosum) 总被引:1,自引:0,他引:1
Nam KH Kong F Matsuura H Takahashi K Nabeta K Yoshihara T 《Journal of plant physiology》2008,165(2):233-238
Temperature is one of the major environmental factors affecting potato tuberization. It has been suggested that lipoxygenase (LOX) mediates between temperature and tuber induction. In this study, the contents of the LOX-derived metabolites hydroperoxylinolenic acid (HPOT), jasmonic acid (JA), tuberonic acid (TA) and tuberonic acid glucoside (TAG) were analyzed in leaves of potatoes growing at different temperatures. At low, tuber-inducing temperature, endogenous levels of JA, TA and TAG rise, indicating their crucial role in tuber induction. The concentration of 13(S)-HPOT seems not to be directly affected by temperature. Instead, the molecule has only a short half-life in leaves and is readily metabolized. 相似文献
230.
本文报道人疱疹病豢-6型(HHV-6)pSTY28DNA片段的序列测定。应用分子克隆、缺损突变体(Dcletionmutant)制备和序列测定等技术,完成了3.9kbHHV-6pSTY28DNA片段的全序列测定。经DNASIS核酸蛋白软件分析,该片段含有两个开读框架(ORF)核糖核苷酸还原酶(RIR)ORF有2414个核苷酸,可编码805个氨基酸;P41蛋白由1100个核苷酸组成。与其他疱疹病毒作氨基酸同源性比较,HHV-6RiR与人巨细胞病毒(HCMV)有高度同源性,最适记分(Optimizedscore)达459。实验结果支持Esftathiou提出的论点,HHV-6属于β-疱疹病毒。 相似文献