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981.
The rapid increase of obese population in the United States has made obesity into epidemic proportion. Obesity is a strong risk factor for metabolic syndrome, type 2 diabetes mellitus, cardiovascular diseases, cancer and other diseases. Compelling evidence has demonstrated that increased adipose tissue mass is not only the consequence of obesity, but also plays a central role in the development of obesity-associated diseases. Recent studies have profoundly changed the concept of adipose tissue from being an energy depot to an active endocrine organ. The development of obesity alters adipocyte-derived hormones or cytokines expression, which provide a link between obesity and impaired insulin sensitivity and metabolic defects in other tissues. This review summarizes the current knowledge on how major adipose-derived hormones or adipocytokines influence insulin sensitivity.  相似文献   
982.
Our previous work found that the monoclonal antibody 8C6, which recognized the epitope EVETPIRN on influenza A virus M2 protein, conferred protection against influenza virus challenge. In this study, 8C6 was used to screen the 7-mer phage peptide library in order to identify the crucial amino acid residues on the protective epitope EVETPIRN. Nine positive phage clones were selected by a test of dose-dependent binding activity to 8C6 after three rounds of panning. The phage clones exhibited a consensus motif (TXXR), which was found on the epitope EVETPIRN. Site-directed mutation analysis indicated that Thr and Arg on the epitope EVETPIRN played a key role in the recognition by 8C6. Furthermore, sequence alignment and analysis revealed that Thr and Arg on the epitope were highly conserved. Our results could provide useful information for influenza vaccine design based on M2 mimotope.  相似文献   
983.
Cells sense several kinds of stimuli and trigger corresponding responses through signaling pathways. As a result, cells must process and integrate multiple signals in parallel to maintain specificity and avoid erroneous cross-talk. In this study, we focus our theoretical effort on understanding specificity of a model network system in yeast, Saccharomyces cerevisiae, which contains three mitogen-activated protein kinase (MAPK) signal transduction cascades that share multiple signaling components. The cellular response to the pheromone, the filamentous growth and osmotic pressure stimuli in yeast is described and an integrative mathematical model for the three MAPK cascades is developed using available literature and experimental data. The theoretical framework for analyzing the specificity of signaling networks [Bardwell, L., Zou, X.F., Nie, Q., Komarova, N.L., 2007. Mathematical models of specificity in cell signaling. Biophys. J. 92, 3425-3441] is extended to include multiple interacting pathways with shared components. Simulations are also performed with any one stimulus, with any two simultaneous stimuli, and with the simultaneous application of the three stimuli. The interactions between the three pathways are systematically investigated. Moreover, the specificity and fidelity of this model system are calculated using our newly developed concept under different stimuli or with specific mutants. Our simulated and calculated results demonstrate that the yeast MAPK signaling network can achieve specificity and fidelity by filtering out spurious cross-talk between the relevant pathways through different mechanisms, such as scaffolding, cross-inhibiting, and feedback control. Proof that Pbs2 and Hog1 are essential for the maintenance of signaling specificity is presented. Our studies provide novel insights into integration of relevant signaling pathways in a biological system and the mechanisms conferring specificity in cellular signaling networks.  相似文献   
984.
Wei D  Qian W  Shi Y  Ding S  Xia Y 《Carbohydrate research》2008,343(3):512-520
A facile approach for the synthesis of chitosan-based Au nanostructures that have interesting absorptions in the near-infrared (NIR) region is presented. The effects of cooling treatment and the cross-linking agent glutaraldehyde on the formation of Au nanostructures based on chitosan were investigated. It has been demonstrated that the size and shape, and thus the optical properties of Au nanostructures, could be modulated via cooling treatment. The optical absorption extension of these Au nanostructures in the NIR region is promising in biomedical applications. The presence of a cross-linking agent, glutaraldehyde, during synthesis accelerated the reduction of the Au precursor and favored the growth of isotropic Au nanoparticles. A possible mechanism for the change in growth modality of Au nanostructures with and without glutaraldehyde was elucidated.  相似文献   
985.
旨在探究整合素αvβ3的单克隆抗体LM609在BSP不同表达水平的乳腺癌细胞中对AKT(蛋白激酶B)信号通路的影响。利用免疫细胞化学法检测BSP不同表达水平的乳腺癌细胞中整合素αvβ3的表达量。BSP基因沉默乳腺癌MDA-MB-231BO细胞,Western blotting在蛋白水平检测磷酸化AKT的表达,MTT试验和细胞划痕试验分别检测细胞增殖、迁移能力的变化。结果显示,与231BO-Scrambled细胞相比,231BO-BSP27细胞中BSP蛋白水平明显降低,抑制率达到(59.43±1.71)%;LM609分别处理两株细胞后,与对照组231BO-Scrambled细胞相比,BSP基因沉默组21BO-BSP27细胞中AKT磷酸化水平下调明显,为(33.78±1.51)%(P<0.01);231BO-BSP27细胞和对照组231BO-Scrambled中细胞的增殖和迁移能力均有不同程度的下降(P<0.05)。LM609能够抑制胞内整合素αvβ3功能的表达,进而对AKT信号通路进行调控,并影响细胞增殖和迁移的发生。  相似文献   
986.
Polymalic acid (PMA) is a water-soluble polyester with many attractive properties for biomedical application. Its monomer l-malic acid is widely used in the food industry and also a potential C4 platform chemical. Cofactor and CO2 donor involved in the reductive routes were investigated for PMA production by Aureobasidium pullulans. Biotin as the key cofactor of pyruvate carboxylase was favor for the PMA biosynthesis. Na2CO3 as CO2 donor can obviously improved PMA titer when compared with no CO2 supplier NaOH, and also exhibit more advantages than the other donor CaCO3 because of its water-soluble characteristic. A combinational process with addition of biotin 70 mg/L and Na2CO3 as the CO2 donor was scaled-up in 50 L fermentor, achieving the high product 34.3 g/L of PMA and productivity of 0.41 g/L h. This process provides an efficient and economical way for PMA and malic acid production, and is promising for industrial application.  相似文献   
987.
The outer membrane lipoprotein, Pal, plays a major role maintaining the integrity of outer membrane and cell morphology in Gram-negative bacteria. Here, we represent A novel role of AaPal in tolerance to salt and alkaline stresses. The cell density of Escherichia coli expressing AaPal was approx. three times as that of control strain when grown in the presence of 1 M NaCl or at pH 9.0 for 14 h, and transgenic Arabidopsis thaliana grew taller and stronger than wild-type plants when subjected to 200 mM NaCl or pH 9.0 stress. This tolerance was attributed to higher concentrations of K+ and lower concentrations of Na+ in the transgenic organism. Our study provides a potential use of AaPal in the improvement of salt and alkaline tolerance in bacteria and plants.  相似文献   
988.
989.
【目的】猪链球菌1、2、14和1/2型间存在单向或双向的交叉抗原性,这种交叉抗原性的产生原因至今未被揭示。【方法】采用Sephacryl S-300凝胶层析柱对猪链球菌14和1/2型荚膜多糖进行分离纯化,经苯酚-硫酸检测和dot-ELISA辅助鉴定,确定荚膜多糖成分。采用高效凝胶渗透色谱法测定14和1/2型猪链球菌荚膜多糖分子量分别为487.38 kDa和512.72 kDa。【结果】经柱前衍生高效液相色谱法、荧光标记液相色谱法和核磁共振测定14和1/2型猪链球菌荚膜多糖单糖组成分别为:Glc/Gal/GlcNAc/Rha/Neu5Ac(1∶2.94∶1.35∶0.24∶0.37)和Glc/Gal/GlcNAc/GalNAc/Rha/Neu5Ac(1∶1.67∶1.05∶0.93∶0.72∶0.7)。并与已知的猪链球菌1、2型荚膜多糖的单糖组成进行比较分析,发现4种血清型荚膜多糖都具有Glc、GlcNAc、Gal和Neu5Ac,但单糖组成和比列并无明显相似性,这种交叉抗原性可能是由于荚膜多糖的空间结构相似性和(或)细胞表面的其他成分引起的。  相似文献   
990.
Floating-Harbor syndrome (FHS) is a rare condition characterized by short stature, delayed osseous maturation, expressive-language deficits, and a distinctive facial appearance. Occurrence is generally sporadic, although parent-to-child transmission has been reported on occasion. Employing whole-exome sequencing, we identified heterozygous truncating mutations in SRCAP in five unrelated individuals with sporadic FHS. Sanger sequencing identified mutations in SRCAP in eight more affected persons. Mutations were de novo in all six instances in which parental DNA was available. SRCAP is an SNF2-related chromatin-remodeling factor that serves as a coactivator for CREB-binding protein (CREBBP, better known as CBP, the major cause of Rubinstein-Taybi syndrome [RTS]). Five SRCAP mutations, two of which are recurrent, were identified; all are tightly clustered within a small (111 codon) region of the final exon. These mutations are predicted to abolish three C-terminal AT-hook DNA-binding motifs while leaving the CBP-binding and ATPase domains intact. Our findings show that SRCAP mutations are the major cause of FHS and offer an explanation for the clinical overlap between FHS and RTS.  相似文献   
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