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21.
Shuming Dou Jie Xu Xiaoya Cui Weidi Liu Zhicheng Zhang Yida Deng Wenbin Hu Yanan Chen 《Liver Transplantation》2020,10(33)
Functional nanomaterials are playing a crucial role in the emerging field of energy‐related devices. Recently, as a novel synthesis method, high‐temperature shock (HTS), which is rapid, low cost, eco‐friendly, universal, scalable, and controllable, has provided a promising option for the rational design and synthesis of various high‐quality nanomaterials. In this report, the HTS technique, including the equipment setup and operating principle, is systematically introduced, and recent progress in the synthesis of nanomaterials for energy storage and conversion applications using this HTS method is summarized. The growth mechanisms of nanoparticles and carbonaceous nanomaterials are thoroughly discussed, followed by the summary of the characteristic advantages of the HTS strategy. A series of nanomaterials prepared by the HTS method, including carbon‐based films, metal nanoparticles and compound nanoparticles, show high performance in the diverse applications of storage energy batteries, highly active catalysts, and smart energy devices. Finally, the future perspectives and directions of HTS in nanomanufacturing for broader applications are presented. 相似文献
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Jingchao Wang Danrui Cui Shanshan Gu Xiaoyu Chen Yanli Bi Xiufang Xiong Yongchao Zhao 《Biochimica et Biophysica Acta (BBA)/Molecular Cell Research》2018,1865(8):1105-1113
Apoptosis and autophagy mutually regulate various cellular physiological and pathological processes. The crosstalk between autophagy and apoptosis is multifaceted and complicated. Elucidating the molecular mechanism of their crosstalk will advance the therapeutic applications of autophagy for treating cancer and other diseases. NOXA, a BH3-only member of the BCL-2 family, was reported to induce apoptosis and promote autophagy. Here, we report that autophagy regulates apoptosis by targeting NOXA for degradation. Inhibiting autophagy increases NOXA protein levels by extending the protein half-life. NOXA accumulation effectively suppresses tumor cell growth by inducing apoptosis, which is further enhanced when p53 is present. Mechanistically, NOXA is hijacked by p62 as autophagic cargo, and its three lysine residues at the C-terminus are necessary for NOXA degradation in lysosomes. Taken together, our study demonstrates that NOXA serves as a bridge in the crosstalk between autophagy and apoptosis and implies that autophagy inhibitors could be an effective therapy for cancer, especially wild-type p53-containing cancer. 相似文献
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Tao Bing Tianjun Chang Cui Qi Nan Zhang Xiangjun Liu Dihua Shangguan 《Bioorganic & medicinal chemistry letters》2012,22(23):7052-7055
The screening of ligands against proteins plays important role in drug discovery and biological research. Using a dye labelled Streptavidin binding aptamer (SBA) as a competitive reporter probe, we found that adenosine bound to streptavidin specifically. Fluorescence spectral analysis showed that adenosine bound to both avidin and streptavidin with the Kds in the range of 0.1–0.2 mM, and these bindings can be blocked by biotin. Although streptavidin and avidin are well-known and widely used in bioanalysis, their biological role is still a riddle so far. Since adenosine is a ubiquitous physiological regulator present in cells, our finding provides new clues for the understanding of the functions of both proteins. 相似文献
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Yinghao Z Jun W Yuanbo C Jiachang Y Xiaohong F 《Biochemical and biophysical research communications》2005,331(1):370-374
We have attempted direct observation of the light-driven rotation of a FoF(1)-ATP motor. The FoF(1)-ATP motor was co-reconstituted by the deletion-delta subunit of FoF(1)-ATP synthase with bacteriorhodopsins (BRs) into a liposome. The BR converts radiation energy into electrochemical gradient of proton to drive the FoF(1)-ATP motor. Therefore, the light-driven rotation of FoF(1)-ATP motor has been directly observed by a fluorescence microscopy using a fluorescent actin filament connected to beta-subunit as a marker of its orientation. The rotational torque value of the Fo motor was calculated as 27.93+/-1.88pNnm. The ATP motor is expected to be a promising rotary molecular motor in the development of nanodevices. 相似文献
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Genetic variation and population structure in Portunus trituberculatus along the coast of China were revealed according to 617 bp of mitochondrial DNA control region. 90 polymorphic sites defined
53 distinct haplotypes, showing a moderately high diversity among 72 individuals sampled from eight localities. Neighbor-joining
tree, statistics analyses of gene flow and genetic differentiation index indicated two populations from Beihai and Laizhou
had differentiated. The population from Yingkou, Dandong, Laizhou and Beihai had smaller genetic diversity compared to that
from Ningbo, Lianyungang, Qingdao and Japan according to the genetic distance. And mantel test showed significant positive
correlation between genetic distance and geographic distance for P.
trituberculatus. TCS parsimony network suggested that all the animals sampled were probably the result of recent divergence from a common
ancestral haplotype but for Laizhou population. Moreover, the haplotype distribution appeared to correlate with a recent colonization
followed by localized genetic differentiation. Mismatch distribution results suggested that Ningbo, Yingkou, Qingdao, Lianyungang
and Japan populations, particularly Dandong population had experienced a sudden demographic or spatial expansion. The Pleistocene
glaciations might contribute to this process. 相似文献
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摘要:【目的】GX0101是一株插入了禽网状内皮组织增生症病毒(REV)-LTR片段的马立克氏病毒(MDV)重组野毒株,本文将其致病性、致肿瘤性和横向传播能力与超强毒参考株(vvMd5)进行比较。【方法】利用MDV特异性核酸探针对同罩饲养的对照鸡的羽毛囊DNA进行检测。【结果】在经抗MDV疫苗免疫的SPF鸡攻毒试验中表明,GX0101株的致死率28.6%和致肿瘤率7.1%均低于超强毒参考株Md5的致死率63.1%和致肿瘤率19.0%。但是,利用MDV特异性核酸探针对同罩饲养的对照鸡的羽毛囊DNA检测表明, 相似文献