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Mechanism of erythromycin-induced ermC mRNA stability in Bacillus subtilis. 总被引:10,自引:5,他引:5
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In Bacillus subtilis, the ermC gene encodes an mRNA that is unusually stable (40-min half-life) in the presence of erythromycin, an inducer of ermC gene expression. A requirement for this induced mRNA stability is a ribosome stalled in the ermC leader region. This property of ermC mRNA was used to study the decay of mRNA in B. subtilis. Using constructs in which the ribosome stall site was internal rather than at the 5' end of the message, we show that ribosome stalling provides stability to sequences downstream but not upstream of the ribosome stall site. Our results indicate that ermC mRNA is degraded by a ribonucleolytic activity that begins at the 5' end and degrades the message in a 5'-to-3' direction. 相似文献
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胀果甘草化学成分的研究(Ⅲ) 总被引:5,自引:0,他引:5
继前文工作,本文报道从胀果甘草(Glycyrrhiza inflata Bat)根及根茎用95%乙醇渗滤后的提取部分中获得的另外五个化合物的结构鉴定。经理化性质及波谱分析,分别鉴定为胡萝卜甙(Daucosterol)、甘草查尔酮甲(Licochalcone A)、β-谷甾醇(β-Sitosterol),异芒柄花甙(Isoononin)和4',7一二羟基黄酮(4',7-Dihydroxy-flavone)。其中胡萝卜甙和异芒柄花甙为首次从该植物中获得。药理实验表明,甘草查尔酮甲对H_2O_2诱异的溶血有极好的抑制作用(97.3%),但甘草甙在三个体外氧化体系中都没有明显的活性。 相似文献
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Yunhong Tian Yunming Tian Yinuo Tu Guoqian Zhang Xing Zeng Jie Lin Meiling Ai Zixu Mao Ronghui Zheng Yawei Yuan 《Journal of cellular and molecular medicine》2020,24(17):9533-9544
Cancer stem cells (CSCs) are a source of tumour recurrence in patients with nasopharyngeal carcinoma (NPC); however, the function of microRNA‐124 (miR‐124) in NPC CSCs has not been clearly defined. In this study, we investigated the role of miR‐124 in NPC CSCs. qRT‐PCR was performed to measure miR‐124 expression in NPC tissues and cell lines and the effects of miR‐124 on stem‐like properties and radiosensitivity of NPC cells measured. Luciferase reporter assays and rescue experiments were used to investigate the interaction of miR‐124 with the 3′UTR of junctional adhesion molecule A (JAMA). Finally, we examined the effects of miR‐124 in an animal model and clinical samples. Down‐regulation of miR‐124 was detected in cancer tissues and was inversely associated with tumour stage and lymph node metastasis. Overexpression of miR‐124 inhibited stemness properties and enhanced radiosensitivity of NPC cells in vitro and in vivo via targeting JAMA. Up‐regulation of miR‐124 was correlated with superior overall survival of patients with NPC. Our study demonstrates that miR‐124 can inhibit stem‐like properties and enhance radiosensitivity by directly targeting JAMA in NPC. These findings provide novel insights into the molecular mechanisms underlying therapy failure in NPC. 相似文献
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Yawei Chen Jianming Li Zhanwu Lei Yakun Huo Lanlan Yang Suyuan Zeng Honghe Ding Yi Qin Yulin Jie Fanyang Huang Qi Li Junfa Zhu Ruiguo Cao Genqiang Zhang Shuhong Jiao Dongsheng Xu 《Liver Transplantation》2020,10(7)
Transition metal sulfides hold promising potentials as Li‐free conversion‐type cathode materials for high energy density lithium metal batteries. However, the practical deployment of these materials is hampered by their poor rate capability and short cycling life. In this work, the authors take the advantage of hollow structure of CuS nanoboxes to accommodate the volume expansion and facilitate the ion diffusion during discharge–charge processes. As a result, the hollow CuS nanoboxes achieve excellent rate performance (≈371 mAh g?1 at 20 C) and ultra‐long cycle life (>1000 cycles). The structure and valence evolution of the CuS nanobox cathode are identified by scanning electron microscopy, transmission electron microscopy, and X‐ray photoelectron spectroscopy. Furthermore, the lithium storage mechanism is revealed by galvanostatic intermittent titration technique and operando Raman spectroscopy for the initial charge–discharge process and the following reversible processes. These results suggest that the hollow CuS nanobox material is a promising candidate as a low‐cost Li‐free cathode material for high‐rate and long‐life lithium metal batteries. 相似文献
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Tao Jiang Hao Pang Jie An Pinjing Lu Yawei Feng Xi Liang Wei Zhong Zhong Lin Wang 《Liver Transplantation》2020,10(23)
Ocean wave energy is a promising renewable energy source, but harvesting such irregular, “random,” and mostly ultra‐low frequency energies is rather challenging due to technological limitations. Triboelectric nanogenerators (TENGs) provide a potential efficient technology for scavenging ocean wave energy. Here, a robust swing‐structured triboelectric nanogenerator (SS‐TENG) with high energy conversion efficiency for ultra‐low frequency water wave energy harvesting is reported. The swing structure inside the cylindrical TENG greatly elongates its operation time, accompanied with multiplied output frequency. The design of the air gap and flexible dielectric brushes enable mininized frictional resistance and sustainable triboelectric charges, leading to enhanced robustness and durability. The TENG performance is controlled by external triggering conditions, with a long swing time of 88 s and a high energy conversion efficiency, as well as undiminished performance after continuous triggering for 4 00 000 cycles. Furthermore, the SS‐TENG is demonstrated to effectively harvest water wave energy. Portable electronic devices are successfully powered for self‐powered sensing and environment monitoring. Due to the excellent performance of the distinctive mechanism and structure, the SS‐TENG in this work provides a good candidate for harvesting blue energy on a large scale. 相似文献
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目的探讨痛泻要方对"肝气乘脾"泄泻小鼠肠道酶活性的影响。方法采用"番泻叶-离心管束缚夹尾法"进行"肝气乘脾"泄泻造模,造模成功后以痛泻要方治疗,造模和治疗后分别分析小鼠肠道酶活性。结果造模后,模型组小鼠肠道内容物的淀粉酶活性显著降低(t=4.007,P=0.015),纤维素酶、蛋白酶、蔗糖酶活性下降不显著。模型组小鼠肠黏膜蛋白酶、淀粉酶、蔗糖酶活性显著下降(t_蛋=5.652,P=0.005;Z_淀=-1.964,P=0.050;t_蔗=4.737,P=0.009)。痛泻要方治疗后,中药干预组小鼠肠道内容物蛋白酶、纤维素酶、乳糖酶和蔗糖酶活性变化不显著;自然恢复组的淀粉酶活性显著高于正常组(t=-7.497,P=0.002)。中药干预组小鼠肠道前段黏膜蛋白酶、乳糖酶、淀粉酶、蔗糖酶活性恢复不显著;中药干预组小鼠肠道黏膜中段乳糖酶、蔗糖酶活性显著低于自然恢复组(t_乳=4.074,P=0.013;t_蔗=8.072,P0.001),而蛋白酶、淀粉酶及纤维素酶活性均高于自然恢复组;中药干预组小鼠肠道后段黏膜乳糖酶、蔗糖酶及淀粉酶活性显著高于正常组(t_乳=-7.962,P0.001;t_蔗=-15.921,P0.001;Z_淀=6.489,P=0.034),蛋白酶与纤维素酶活性均有所升高。结论 "肝气乘脾"泄泻肠道内容物及黏膜淀粉酶活性显著降低,痛泻要方对"肝气乘脾"泄泻小鼠肠黏膜乳糖酶、蔗糖酶及淀粉酶活性作用显著。 相似文献
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