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Exposure of endothelial cells (ECs) to agents such as oxidized glycerophospholipids (oxGPs) and cytokines, known to accumulate in atherosclerotic lesions, perturbs the expression of hundreds of genes in ECs involved in inflammatory and other biological processes. We hypothesized that microRNAs (miRNAs) are involved in regulating the inflammatory response in human aortic endothelial cells (HAECs) in response to oxGPs and interleukin 1β (IL-1β). Using next-generation sequencing and RT-quantitative PCR, we characterized the profile of expressed miRNAs in HAECs pre- and postexposure to oxGPs. Using this data, we identified miR-21-3p and miR-27a-5p to be induced 3- to 4-fold in response to oxGP and IL-1β treatment compared with control treatment. Transient overexpression of miR-21-3p and miR-27a-5p resulted in the downregulation of 1,253 genes with 922 genes overlapping between the two miRNAs. Gene Ontology functional enrichment analysis predicted that the two miRNAs were involved in the regulation of nuclear factor κB (NF-κB) signaling. Overexpression of these two miRNAs leads to changes in p65 nuclear translocation. Using 3′ untranslated region luciferase assay, we identified 20 genes within the NF-κB signaling cascade as putative targets of miRs-21-3p and -27a-5p, implicating these two miRNAs as modulators of NF-κB signaling in ECs.  相似文献   
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Signal peptides are short peptides located at the N-terminus of secreted proteins. They characteristically have three domains; a basic region at the N-terminus (n-region), a central hydrophobic core (h-region) and a carboxy-terminal cleavage region (c-region). Although hundreds of different signal peptides have been identified, it has not been completely understood how their features enable signal peptides to influence protein expression. Antibody-derived signal peptides are often used to prepare recombinant antibodies expressed by eukaryotic cells, especially Chinese hamster ovary (CHO) cells. However, when prokaryotic Escherichia coli (E. coli) are utilized in drug discovery processes, such as for phage display selection or antibody humanization, signal peptides have been selected separately due to the differences in the expression systems between the species. In this study, we successfully established a signal peptide that enables a functional antibody to be expressed in both prokaryotic and eukaryotic cells by focusing on the importance of having an Ala residue in the c-region of the signal sequence. We found that changing Ser to Ala at only two positions significantly augmented the anti-HER2 antigen binding fragment (Fab) expression in E. coli. In addition, this altered signal peptide also retained the ability to express functional anti-HER2 antibody in CHO cells. Taken together, the present findings indicate that the signal peptide can promote functional antibody expression in both prokaryotic E. coli and eukaryotic CHO cells. This finding will contribute to the understanding of signal peptides and accelerate therapeutic antibody research.  相似文献   
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目的:构建s TACI-Fc-Myc重组质粒,并进行原核表达和纯化具有生物活性的融合蛋白。方法:通过PCR法获得s TACI-Fc-Myc重组片段,然后把融合基因片段与原核载体p ET28a连接在一起,并构建p ET28a-s TACI-Fc-Myc重组子,并转入BL21(DE3)中进行表达,用蛋白A凝胶亲和层析柱进行纯化及酶联免疫吸附剂(ELISA)法测定其生物学活性。结果:获得了s TACI-Fc-Myc重组质粒,且该质粒可以在BL21(DE3)中表达,亲和层析柱纯化后纯度可达到95%以上,与BAFF的结合活性具有剂量依赖性,浓度达到5 ng/μL时,两者的吸附达到饱和。结论:成功构建了s TACI-Fc-Myc原核表达载体,并使有生物学活性的融合蛋白在BL21(DE3)上获得了稳定表达,为进一步研究并筛选高活性BAFF拮抗肽奠定了基础。  相似文献   
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目的:静脉血栓是一种高复发风险和高致死率的疾病,其形成和复发的分子机制尚不明确。基于人类信号网络和基因表达谱数据可针对静脉血栓经华法令抗凝治疗后的复发机制进行研究。方法:结合表达谱数据和人类信号网络,设计差异模块筛选策略,通过功能分析、差异表达分析和已知血栓相关基因及药物靶基因的互作关联研究,获得与静脉血栓复发相关的显著差异模块。结果:最终获得8个与静脉血栓复发密切相关的显著差异模块,评估了华法令治疗静脉血栓的效能,提出了联合用药的3种可能途径。结论:应用本文提出的整合筛选策略,能识别与静脉血栓复发相关的模块,探究静脉血栓复发的分子机制和评估华法令的治疗效能。还提供了潜在的联合用药途径,这对治愈血栓、防治血栓复发及复发机制的研究具有重要意义。  相似文献   
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Cyclin D2 is involved in the pathology of vascular complications of type 2 diabetes mellitus (T2DM). This study investigated the role of cyclin‐D2‐regulated miRNAs in endothelial cell proliferation of T2DM. Results showed that higher glucose concentration (4.5 g/l) significantly promoted the proliferation of rat aortic endothelial cells (RAOECs), and significantly increased the expression of cyclin D2 and phosphorylation of retinoblastoma 1 (p‐RB1) in RAOECs compared with those under low glucose concentration. The cyclin D2‐3′ untranslated region is targeted by miR‐98, as demonstrated by miRNA analysis software. Western blot also confirmed that cyclin D2 and p‐RB1 expression was regulated by miR‐98. The results indicated that miR‐98 treatment can induce RAOEC apoptosis. The suppression of RAOEC growth by miR‐98 might be related to regulation of Bcl‐2, Bax and Caspase 9 expression. Furthermore, the expression levels of miR‐98 decreased in 4.5 g/l glucose‐treated cells compared with those treated by low glucose concentration. Similarly, the expression of miR‐98 significantly decreased in aortas of established streptozotocin (STZ)‐induced diabetic rat model compared with that in control rats; but cyclin D2 and p‐RB1 levels remarkably increased in aortas of STZ‐induced diabetic rats compared with those in healthy control rats. In conclusion, this study demonstrated that high glucose concentration induces cyclin D2 up‐regulation and miR‐98 down‐regulation in the RAOECs. By regulating cyclin D2, miR‐98 can inhibit human endothelial cell growth, thereby providing novel therapeutic targets for vascular complication of T2DM.  相似文献   
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