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61.
Long-term use of antibiotics has engendered a large number of resistant pathogens, which pose a serious threat to human health. Here, we investigated the mechanism of fusaricidin antibacterial activity toward Bacillus subtilis and characterized the pathways responsible for drug resistance. We found that σw, an extracytoplasmic function sigma factor, plays an important role in the resistance to fusaricidins during the initial 5 minutes of drug addition. Approximately 18 genes were induced more than 3-fold, of which 66.7% are known to be regulated by σw. Over the following 3 h, fusaricidins induced 194 genes more than three-fold, and most were associated with classes of antibiotic-responsive stimulons. Moreover, the fusaricidin treatment increased the catabolism of fatty and amino acids but strongly repressed glucose decomposition and gluconeogenesis. In summary, our data provide insight into the mechanism of fusaricidin activity, on which we based our suggested strategies for the development of novel antibiotic agents.  相似文献   
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Transition metal layered oxides have been the dominant cathodes in lithium‐ion batteries, and among them, high‐Ni ones (LiNixMnyCozO2; x ≥ 0.7) with greatly boosted capacity and reduced cost are of particular interest for large‐scale applications. The high Ni loading, on the other hand, raises the critical issues of surface instability and poor rate performance. The rational design of synthesis leading to layered LiNi0.7Mn0.15Co0.15O2 with greatly enhanced rate capability is demonstrated, by implementing a quenching process alternative to the general slow cooling. In situ synchrotron X‐ray diffraction, coupled with surface analysis, is applied to studies of the synthesis process, revealing cooling‐induced surface reconstruction involving Li2CO3 accumulation, formation of a Li‐deficient layer and Ni reduction at the particle surface. The reconstruction process occurs predominantly at high temperatures (above 350 °C) and is highly cooling‐rate dependent, implying that surface reconstruction can be suppressed through synthetic control, i.e., quenching to improve the surface stability and rate performance of the synthesized materials. These findings may provide guidance to rational synthesis of high‐Ni cathode materials.  相似文献   
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Odoroside A (OA) is an active ingredient extracted from the leaves of Nerium oleander Linn. (Apocynaceae). This study aims to examine the anticancer bioactivity of OA against CRC cells and to investigate the action mechanisms involved. As a result, OA can significantly inhibit cellular ability and induce apoptosis of CRC cells in a concentration‐dependent manner without any obvious cytotoxicity in normal colorectal epithelial cells. Then, quantitative proteomics combined with bioinformatics is adopted to investigate the alterations of proteins and signaling pathways in response to OA treatment. As suggested by the proteomic analysis, flow cytometry and Western blotting analyses validate that exposure of CRC cells to OA causes cell cycle arrest and apoptosis, accompanied with the activation of the ROS/p53 signaling pathway. This observation demonstrates that OA, as a natural product, can induce oxidative stress to suppress tumor cell growth, implicating a novel therapeutic agent against CRC without obvious side effects.  相似文献   
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目的:探讨口腔鳞癌组织中免疫共刺激分子PD-L1与细胞外基质蛋白酶诱导因子CD147的表达、两者的相关性及临床意义。方法:应用免疫组化技术检测66例口腔鳞癌组织及36例正常口腔黏膜组织中PD-L1和CD147的表达,分析PD-L1、CD147表达的相关性及二者与口腔鳞癌临床病理参数的关系。结果:PD-L1在口腔鳞癌组织中表达阳性率为68.18%(45/66),正常口腔黏膜组织中表达阳性率仅为16.67%(6/36);CD147在口腔鳞癌组织中表达阳性率为74.24%(49/66),明显高于其在正常口腔黏膜组织中的表达13.88%(5/36)。PD-L1和CD147两者在口腔鳞癌组织中阳性表达率与口腔黏膜组织相比均明显升高(P0.01)。统计学分析显示,PD-L1和CD147在口腔鳞癌组织中的高表达与患者的性别年龄、吸烟史及肿瘤的体积等因素无明显相关,但与TNM分期及鳞癌的组织分化程度紧密相关。口腔鳞癌组织中PD-L1与CD147两者相关性分析r=0.342,P值小于0.01,说明二者的表达呈显著正相关。结论:口腔鳞癌组织中PD-L1与CD147均呈高表达,并且二者的过度表达可能与口腔鳞癌的发生、发展关系密切,合并检测二者可能为OSCC的诊疗及预后指明新的方向,为口腔鳞癌的靶向治疗提供新的靶点。  相似文献   
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