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951.
Li Y  Zou Y  Cai B  Yang B  Ying B  Shi Y  Wang L 《Gene》2012,491(2):251-255
Interleukin 18 (IL-18) is a potent proinflammatory cytokine, which promotes the secretions of TNF-α, IL-1β, IL-2 and IFN-γ. All those inflammatory cytokines can influence the CYP450 and MDR dependent drug disposition. On the other side, those cytokines can induce hepatic allograft dysfunction. We investigated the effects of serum IL-18 and IL-18 gene promoter polymorphisms on tacrolimus pharmacokinetics and hepatic allograft dysfunction in liver transplant recipients. A total of 155 liver transplant recipients were enrolled into this study (34 females and 121 males). The mean follow-up was 52 months (range 16-96 months).The total liver transplant recipients were divided into hepatic allograft dysfunction (N = 14) and no hepatic allograft dysfunction (N = 141). We studied two single-nucleotide polymorphisms in the promoter region of IL-18 gene at the position G-137C (rs187238) and A-607C (rs1946518) by HRM analysis (high-resolution melting curve analysis). Tacrolimus dosage, tacrolimus blood concentration, serum levels of IL-18 and IFN-γ were also investigated. We found the recipients with higher IL-18 and IFN-γ serum levels had lower tacrolimus concentration/dose (C/D) ratios (P < 0.05). In the mean time, after transplantation hepatic allograft dysfunction was more likely to happen to those recipients. However, there was no significant difference in the frequencies of A-607C and G-137C allelic distribution in recipients' tacrolimus concentration/dose (C/D) ratios. This study identifies IL-18 reduced tacrolimus concentration/dose (C/D) ratio through up regulation of P-glycoprotein (P-gp).  相似文献   
952.
953.
The WaaL-mediated ligation of O-antigen onto the core region of the lipid A-core block is an important step in the lipopolysaccharide (LPS) biosynthetic pathway. Although the LPS biosynthesis has been largely characterized, only a limited amount of in vitro biochemical evidence has been established for the ligation reaction. Such limitations have primarily resulted from the barriers in purifying WaaL homologues and obtaining chemically defined substrates. Accordingly, we describe herein a chemical biology approach that enabled the reconstitution of this ligation reaction. The O-antigen repeating unit (O-unit) of Escherichia coli O86 was first enzymatically assembled via sequential enzymatic glycosylation of a chemically synthesized GalNAc-pyrophosphate-undecaprenyl precursor. Subsequent expression of WaaL through use of a chaperone co-expression system then enabled the demonstration of the in vitro ligation between the synthesized donor (O-unit-pyrophosphate-undecaprenyl) and the isolated lipid A-core acceptor. The previously reported ATP and divalent metal cation dependence were not observed using this system. Further analyses of other donor substrates revealed that WaaL possesses a highly relaxed specificity toward both the lipid moiety and the glycan moiety of the donor. Lastly, three conserved amino acid residues identified by sequence alignment were found essential for the WaaL activity. Taken together, the present work represents an in vitro systematic investigation of the WaaL function using a chemical biology approach, providing a system that could facilitate the elucidation of the mechanism of WaaL-catalyzed ligation reaction.  相似文献   
954.
Peroxisome proliferator-activated receptor alpha (PPARα) has been implicated in the pathogenesis of cardiac hypertrophy, although its mechanism of action remains largely unknown. To determine the effect of PPARα activation on endothelin-1 (ET-1)-induced cardiomyocyte hypertrophy and explore its molecular mechanisms, we evaluated the interaction of PPARα with nuclear factor of activated T-cells c4 (NFATc4) in nuclei of cardiomyocytes from neonatal rats in primary culture. In ET-1-stimulated cardiomyocytes, data from electrophoretic mobility-shift assays (EMSA) and co-immunoprecipitation (co-IP) revealed that fenofibrate (Fen), a PPARα activator, in a concentration-dependent manner, enhanced the association of NFATc4 with PPARα and decreased its interaction with GATA-4, in promoter complexes involved in activation of the rat brain natriuretic peptide (rBNP) gene. Effects of PPARα overexpression were similar to those of its activation by Fen. PPARα depletion by small interfering RNA abolished inhibitory effects of Fen on NFATc4 binding to GATA-4 and the rBNP DNA. Quantitative RT-PCR and confocal microscopy confirmed inhibitory effects of PPARα activation on elevation of rBNP mRNA levels and ET-1-induced cardiomyocyte hypertrophy. Our results suggest that activated PPARα can compete with GATA-4 binding to NFATc4, thereby decreasing transactivation of NFATc4, and interfering with ET-1 induced cardiomyocyte hypertrophy.  相似文献   
955.
The present study investigated the effects of combined fucoxanthin (Fc) and conjugated linoleic acid (CLA) on high-fat diet-induced obese rats. Thirty five rats were divided into four groups, fed a high-fat diet (Control, 15% fat, wt/wt), supplemented with low Fc (FCL, 0.083 mg/kg/bw), high Fc (FCH, 0.167 mg/kg/bw) and FCL (0.083 mg/kg/bw) plus CLA (0.15 g/kg/bw) (FCL+CLA) for 52 d. Body weight and white adipose tissue (WAT) weight were significantly suppressed in FCL+CLA group than those in control group. WAT weight was also markedly attenuated in FCL and FCH groups. Accumulation of hepatic lipid droplets and the perirenal adipocyte size of FCL, FCH and FCL+CLA groups were diminished compared to control group. Serum total cholesterol level in FCH group, triacylglycerol and leptin levels in FCL, FCH and FCL+CLA groups, and glucose concentration in FCH and FCL+CLA groups were significantly decreased than those in control group. The mRNA expression of adiponectin, adipose triacylglycerol lipase, carnitine palmitoyltransferase 1A was remarkably up-regulated in FCL, FCH and FCL+CLA groups. These results suggest that Fc and FCL+CLA could reduce serum levels of triacylglycerol, glucose and leptin, and FCL+CLA could exert anti-obesity effects by regulating mRNA expression of enzymes related to lipid metabolism in WAT of diet-induced obesity rats.  相似文献   
956.
Cai Y  Geacintov NE  Broyde S 《Biochemistry》2012,51(7):1486-1499
The nucleotide excision repair (NER) machinery, the primary defense against cancer-causing bulky DNA lesions, is surprisingly inefficient in recognizing certain mutagenic DNA adducts and other forms of DNA damage. However, the biochemical basis of resistance to repair remains poorly understood. To address this problem, we have investigated a series of intercalated DNA-adenine lesions derived from carcinogenic polycyclic aromatic hydrocarbon (PAH) diol epoxide metabolites that differ in their response to the mammalian NER apparatus. These stereoisomeric PAH-derived adenine lesions represent ideal model systems for elucidating the effects of structural, dynamic, and thermodynamic properties that determine the recognition of these bulky DNA lesions by NER factors. The objective of this work was to gain a systematic understanding of the relation between aromatic ring topology and adduct stereochemistry with existing experimental NER efficiencies and known thermodynamic stabilities of the damaged DNA duplexes. For this purpose, we performed 100 ns molecular dynamics studies of the lesions embedded in identical double-stranded 11-mer sequences. Our studies show that, depending on topology and stereochemistry, stabilizing PAH-DNA base van der Waals stacking interactions can compensate for destabilizing distortions caused by these lesions that can, in turn, cause resistance to NER. The results suggest that the balance between helix stabilizing and destabilizing interactions between the adduct and nearby DNA residues can account for the variability of NER efficiencies observed in this class of PAH-DNA lesions.  相似文献   
957.
In this study, we report a function of myo-inositol-O-methyltransferase (Imt1) in response to low temperature stress using transgenic Arabidopsis thaliana. Imt1 gene was constructed identical to the Imt1 gene from a halophyte Mesembryanthemum crystallinum. After cold stress, the Imt1 transgenic plants exhibited stronger growth than the wild type plants. The elevated cold tolerance of the Imt1 over-expressing plants was confirmed by the lower electrolyte leakage and accumulation of malondialdehyde, but higher proline and soluble sugar contents in transgenic than wild type plants.  相似文献   
958.
A new member of the WD repeat protein family, named GhWD40, was cloned from a near-isogenic line for glands in cotton. It has 2629 bp cDNA and a complete opening reading frame (ORF) of 1239 bp, containing the initial code (ATG) and terminal code (TAG); there is a 1061 bp non-coding sequence at the 5??-end, and a 329 bp non-coding sequence at the 3??-end, including the poly(A) sequence (accession number: JN714279). The predicted protein of the complete ORF comprised 412 amino acids with a calculated molecular mass of 47.1 kDa and an isoelectric point of 8.88. Protein domain scanning showed that the novel protein has five wd40 motifs and belongs to the WD40 family. From a search for GhWD40 cDNA and amino acid sequences in the database, it has 77% sequence identity and was 90% sequence positive with the WD-40 repeat protein from Trifolium pratense (accession number BAE71307.1), and 80% sequence identity and 89% sequence positivity with the ribosome biogenesis protein bop1 from Ricinus communis (accession number XP 002529002.1). We propose that GhWD40 may play the same role as bop1. In addition, expression of GhWD40 in near-isogenic lines 11 and 3 (with and without glands, respectively) was studied by quantitative RT-polymerase chain reaction, and the level in near-isogenic line 11 was higher than that in near-isogenic line 3, suggesting that GhWD40 may be related to gland formation.  相似文献   
959.
Zheng Y  Cai T  Jin Y  Feng Z 《Biometrics》2012,68(2):388-396
To develop more targeted intervention strategies, an important research goal is to identify markers predictive of clinical events. A crucial step toward this goal is to characterize the clinical performance of a marker for predicting different types of events. In this article, we present statistical methods for evaluating the performance of a prognostic marker in predicting multiple competing events. To capture the potential time-varying predictive performance of the marker and incorporate competing risks, we define time- and cause-specific accuracy summaries by stratifying cases based on causes of failure. Such definition would allow one to evaluate the predictive accuracy of a marker for each type of event and compare its predictiveness across event types. Extending the nonparametric crude cause-specific receiver operating characteristics curve estimators by Saha and Heagerty (2010), we develop inference procedures for a range of cause-specific accuracy summaries. To estimate the accuracy measures and assess how covariates may affect the accuracy of a marker under the competing risk setting, we consider two forms of semiparametric models through the cause-specific hazard framework. These approaches enable a flexible modeling of the relationships between the marker and failure times for each cause, while efficiently accommodating additional covariates. We investigate the asymptotic property of the proposed accuracy estimators and demonstrate the finite sample performance of these estimators through simulation studies. The proposed procedures are illustrated with data from a prostate cancer prognostic study.  相似文献   
960.
Ding Y  Cai Y  Han Y  Zhao B  Zhu L 《Biopolymers》2012,97(11):864-872
Iron superoxide dismutase (Fe-SOD) is predominantly found in bacteria and mitochondria. The thermal stability of Fe-SOD from different sources can vary dramatically. We have studied the influence of structural parameters on Fe-SOD thermostability by principal component analysis (PCA). The results show that an increased α-helical and turn content, an increased α-helix and loop length, an increase in the number of main-main chains and charged-uncharged hydrogen bonds, a decrease in the 3(10) -helix content, and a decreased β-strand and loop length are all important factors for Fe-SOD thermostability. Interestingly, the use of charged residues to form salt bridges is tendentious in thermophilic Fe-SOD. Negatively charged Arg and positively charged Glu are efficiently used to form salt bridges. The cooperative action of the exposed area, the hydrogen bonds, and the secondary structure plays a crucial role in resisting high temperatures, which demonstrates that the increased stability of thermophilic Fe-SOD is provided by several structural factors acting together.  相似文献   
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