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| 1 | The deubiquitinase OTUD1 inhibits colonic inflammation by suppressing RIPK1-mediated NF-κB signaling显示文摘The E3 ubiquitin ligase(E3)-mediated ubiquitination and deubiquitinase(DUB)-mediated deubiquitination processes are closely associated with the occurrence and development of colonic inflammation.Ovarian tumor deubiquitinase 1(OTUD1)is involved in immunoregulatory functions linked to infectious diseases.However,the effect of OTUD1 on intestinal immune responses during colonic inflammatory disorders such as inflammatory bowel disease(IBD)remains unclear.Here,we show that loss of OTUD1 in mice contributes to the pathogenesis of dextran sulfate sodium(DSS)-induced colitis via excessive release of proinflammatory cytokines.In addition,bone marrow transplantation experiments revealed that OTUD1 in hematopoietic cells plays a dominant role in protection against colitis.Mechanistically,OTUD1 physically interacts with receptor-interacting serine/threonine-protein kinase 1(RIPK1)and selectively cleaves K63-linked polyubiquitin chains from RIPK1 to inhibit the recruitment of NF-κB essential modulator(NEMO).Moreover,the expression of OTUD1 in mucosa samples from ulcerative colitis(UC)patients was lower than that in mucosa samples from healthy controls.Furthermore,we demonstrate that the UC-associated OTUD1 G430V mutation abolishes the ability of OTUD1 to inhibit RIPK1-mediated NF-κB activation and intestinal inflammation.Taken together,our study unveils a previously unexplored role of OTUD1 in moderating intestinal inflammation by inhibiting RIPK1-mediated NF-κB activation,suggesting that the OTUD1-RIPK1 axis could be a potential target for the treatment of IBD. | Bo Wu Lihua Qiang Yong Zhang Yesheng Fu Mengyuan Zhao Zehui Lei Zhe Lu Yan-Ge Wei Hongmiao Dai Yingwei Ge Mingqiu Liu Xuemei Zhou Zhiqiang Peng Hongchang Li Chun-Ping Cui Jing Wang Hui Zheng Cui Hua Liu Lingqiang Zhang | 2022 | Cellular & Molecular Immunology2022,19,2: | 3 |
| 2 | Grain production space reconstruction and land system function tradeoffs in China显示文摘Grain production space reconstruction referred to the changes in the quantity,quality and pattern of grain produc-tion space caused by functional tradeoffs and conflicts between grain production space,urban-rural development space,and ecological service space.Exploring tradeoffs between land system functions caused by grain produc-tion space reconstruction was particularly important for ensuring food security,promoting the construction of ecological civilization,and achieving sustainable development.Therefore,this study identified four relationships of land system functions during the process of grain production space reconstruction(1980-2018)in China by using Set Pair Analysis.Research results showed that the reconstruction of grain production space was achieved mainly through three pathways:Grain for Green,deforestation and reclamation,and urban expansion.Generally,ecological service had spatial negative correlation with grain production,economic development and population carrying capacity(P<0.01),but grain production,economic development and population carrying capacity were positively correlated with each other(P<0.01).In the process of grain production space reconstruction,eco-logical services and economic development,ecological services and population carrying capacity had all shown inverse synergies;there was a tradeoffbetween grain production and ecological services,a codirectional tradeoffbetween grain production and economic development,but a strong synergy between economic development and population carrying capacity.However,the functions of land systems only appeared as synergies or tradeoffs,and there were no inverse synergies and codirectional tradeoffs in the separate processes of Grain for Green,deforestation and reclamation,and urban expansion.It can be concluded that the relationships between land system functions were relatively simple in a single process,but it became complex and diverse when multiple processes were integrated for system analysis. | Fei Li Zhangxuan Qin Xiaolin Liu Zehui Chen Xiaoli Wei Qiumeng Zhang Min Lei | 2021 | Geography and Sustainability2021,2,1: | 2 |
| 3 | 6G-Enabled Edge AI for Metaverse:Challenges, Methods,and Future Research Directions显示文摘Sixth generation(6G)enabled edge intelligence opens up a new era of Internet of everything and makes it possible to interconnect people-devices-cloud anytime,anywhere.More and more next-generation wireless network smart service applications are changing our way of life and improving our quality of life.As the hottest new form of next-generation Internet applications,Metaverse is striving to connect billions of users and create a shared world where virtual and reality merge.However,limited by resources,computing power,and sensory devices,Metaverse is still far from realizing its full vision of immersion,materialization,and interoperability.To this end,this survey aims to realize this vision through the organic integration of 6G-enabled edge artificial intelligence(AI)and Metaverse.Specifically,we first introduce three new types of edge-Metaverse architectures that use 6G-enabled edge AI to solve resource and computing constraints in Metaverse.Then we summarize technical challenges that these architectures face in Metaverse and the existing solutions.Furthermore,we explore how the edge-Metaverse architecture technology helps Metaverse to interact and share digital data.Finally,we discuss future research directions to realize the true vision of Metaverse with 6G-enabled edge AI. | Luyi Chang Zhe Zhang Pei Li Shan Xi Wei Guo Yukang Shen Zehui Xiong Jiawen Kang Dusit Niyato Xiuquan Qiao Yi Wu | 2022 | Journal of Communications and Information Networks2022,7,2: | 2 |
| 4 | TRIM27 maintains gut homeostasis by promoting intestinal stem cell self-renewal显示文摘Dysregulation of gut homeostasis is associated with irritable bowel syndrome(IBS),a chronic functional gastrointestinal disorder affecting approximately 11.2%of the global population.The poorly understood pathogenesis of IBS has impeded its treatment.Here,we report that the E3 ubiquitin ligase tripartite motif-containing 27(TRIM27)is weakly expressed in IBS but highly expressed in inflammatory bowel disease(IBD),a frequent chronic organic gastrointestinal disorder.Accordingly,knockout of Trim27 in mice causes spontaneously occurring IBS-like symptoms,including increased visceral hyperalgesia and abnormal stool features,as observed in IBS patients.Mechanistically,TRIM27 stabilizesβ-catenin and thus activates Wnt/β-catenin signaling to promote intestinal stem cell(ISC)self-renewal.Consistent with these findings,Trim27 deficiency disrupts organoid formation,which is rescued by reintroducing TRIM27 orβ-catenin.Furthermore,Wnt/β-catenin signaling activator treatment ameliorates IBS symptoms by promoting ISC self-renewal.Taken together,these data indicate that TRIM27 is critical for maintaining gut homeostasis,suggesting that targeting the TRIM27/Wnt/β-catenin axis could be a potential treatment strategy for IBS.Our study also indicates that TRIM27 might serve as a potential biomarker for differentiating IBS from IBD. | Jing Wang Dongdong Zhao Zehui Lei Pupu Ge Zhe Lu Qiyao Chai Yong Zhang Lihua Qiang Yang Yu Xinwen Zhang Bingxi Li Shu Zhu Lingqiang Zhang Cui Hua Liu | 2023 | Cellular & Molecular Immunology2023,20,2: | 2 |
| 5 | Federated transfer learning for disaster classification in social computing networks显示文摘Social media analytics have played an important role in disaster identification.Recent advances in deep learning(DL)technologies have been applied to design disaster classification models.However,the DL-based models are hindered by insufficient training samples,because data collection and labeling are very expensive and time-consuming.To solve this issue,a privacy-preserving federated transfer learning approach for disaster classification(FedTL)is proposed,which can allow distributed social computing nodes to collaboratively train a comprehensive model.In the FedTL,Paillier homomorphic encryption method is used to protect the social computing nodes’data privacy.In particular,the transfer learning technology is adopted as a novel application to reduce the computation and communication costs in the federated learning system.The FedTL is verified by a real disaster image dataset collected from social networks.Theoretical analyses and experiment results show that the FedTL is effective,secure,efficient.In addition,the FedTL is highly extensible and can be easily applied in other transfer learning models. | Zehui Zhang Ningxin He Dongyu Li Hang Gao Tiegang Gao Chuan Zhou | 2022 | Journal of Safety Science and Resilience2022,3,1: | 1 |
| 6 | Direct conversion of glucose and cellulose to 5-hydroxymethylfurfural in ionic liquid un- der microwave irradiation 显示文摘 | Li Changzhi Zhang Zehui Zhao Zongbao K | 2009 | Tetrahedron Letters2009,50,38: | 1 |
| 7 | Rice FLOURY ENDOSPERM22, encoding a pentatricopeptide repeat protein, is involved in both mitochondrial RNA splicing and editing and is crucial for endosperm development显示文摘Most of the reported P-type pentatricopeptide repeat(PPR) proteins play roles in organelle RNA stabilization and splicing. However, P-type PPRs involved in both RNA splicing and editing have rarely been reported, and their underlying mechanism remains largely unknown. Here, we report a rice floury endosperm22(flo22) mutant with delayed amyloplast development in endosperm cells. Map-based cloning and complementation tests demonstrated that FLO22 encodes a mitochondrion-localized P-type PPR protein.Mutation of FLO22 resulting in defective transsplicing of mitochondrial nad1 intron 1 and perhaps causing instability of mature transcripts affected assembly and activity of complex Ⅰ, and mitochondrial morphology and function. RNA-seq analysis showed that expression levels of many genes involved in starch and sucrose metabolism were significantly down-regulated in the flo22mutant compared with the wild type, whereas genes related to oxidative phosphorylation and the tricarboxylic acid cycle were significantly upregulated. In addition to involvement in splicing as a P-type PPR protein, we found that FLO22 interacted with DYW3, a DYW-type PPR protein, and they may function synergistically in mitochondrial RNA editing. The present work indicated that FLO22 plays an important role in endosperm development and plant growth by participating in nad1 maturation and multi-site editing of mitochondrial messager RNA. | Hang Yang Yunlong Wang Yunlu Tian Xuan Teng Zehui Lv Jie Lei Erchao Duan Hui Dong Xue Yang Yuanyan Zhang Yinglun Sun Xiaoli Chen Xiuhao Bao Rongbo Chen Chuanwei Gu Yipeng Zhang Xiaokang Jiang Wenyu Ma Pengcheng Zhang Yi Ji Yu Zhang Yihua Wang Jianmin Wan | 2023 | Journal of Integrative Plant Biology2023,65,3: | 1 |
| 8 | Regulatory Polymorphisms in the Promoter of CXCL10 Gene and Disease Progression in Male Hepatitis B Virus Carriers显示文摘 | Guohong Deng Gangqiao Zhou Rong Zhang Yun Zhai Wenli Zhao Zehui Yan Chunqing Deng Xiaoyan Yuan Baoyan Xu Xiaojia Dong Xiumei Zhang Xuqing Zhang Zhijian Yao Yan Shen Boqing Qiang Yuming Wang Fuchu He | 2008 | Gastroenterology2008,,3: | 1 |
| 9 | Insight into the effects of electrochemical factors on host-guest interaction induced signature events in a biological nanopore显示文摘The signature events caused by host-guest interactions in the nanopore system can be used as a novel and characteristic signal in quantitative detection and analysis of various molecules.However,the effect of several electrochemical factors on the host-guest interactions in nanopore still remains unknown.Here,we systematically studied host-guest interactions,especially oscillation of DNA-azide adamantane@cucurbit[6]inα-Hemolysin nanopore under varying pH,concentration of electrolytes and counterions(Li+,Na+,K+).Our results indicate correlations between the change of pH and the duration of the oscillation signal.In addition,the asymmetric electrolyte concentration and the charge of the counterions affects the frequency of signature events in oscillation signals,and even the integrity of the protein nanopore.This study provides insight into the design of a future biosensing platform based on signature oscillation signals of the host-guest interaction within a nanopore. | XiaojunWei Zehui Zhang XiaoqinWang Brian Lenhart Roberto Gambarini Jonathan Gray Chang Liu | 2020 | Nanotechnology and Precision Engineering2020,3,1: | 1 |
| 10 | Understanding the pattern and mechanism of spatial concentration of urban land use, population and economic activities: a case study in Wuhan, China显示文摘Quantifying the aggregation patterns of urban population, economic activities, and land use are essential for understanding compact development, but little is known about the difference among the distribution characteristics and how the built environment influences urban aggre-gation. In this study, five elements are collected in Wuhan, China, namely population density, floor area ratio, business POIs, road network and built-up area as the representative of urban population, economic activities and land use. An inverse S-shape function is employed to fit the elements’ macro distribution. An aggregation degree index is proposed to measure the aggregation level of urban elements. The kernel density estimation is used to identify the aggregation patterns. The spatial regression model is used to identify the built environment factors influencing the spatial distribution of urban elements. Results indicates that all urban elements decay outward from the city center in an inverse S-shape manner. The business Pointof- Interest (POI) density and population density are highly aggregated;floor area ratio and road density are moderately aggregated, whereas the built-up density is poorly aggregated. Three types of spatial aggregation patterns are identified: a point-shaped pattern, an axial pattern and a planar pattern. The spatial regression modeling shows that the built environment is associated with the distribution of the urban population, economic activities and land use. Destination accessibility factors, transit accessibility factors and land use diversity factors shape the distribution of the business POI density, floor area ratio and road density. Design factors are positively associated with population density, floor area ratio and built-up density. Future planning should consider the varying spatial concentration of urban population, economic activities and land use as well as their relationships with built environment attributes. Results of this study will provide a systematic understanding of aggregation of urban land use, popula-tion, and economic activities in megacities as well as some suggestions for planning and compact development. | Zehui Li Limin Jiao Boen Zhang Gang Xu Jiafeng Liu | 2021 | Geo-Spatial Information Science2021,24,4: | 1 |
| 11 | DDR1 promotes LoVo cell proliferation by regulating energy metabolism显示文摘Cellular energy metabolism dysregulation is associated with colorectal cancer(CRC)development and progression.Discoidin domain receptor 1a(DDR1a),one of the five DDR1 isoforms,is closely related to cell proliferation,invasion,and apoptosis in various tumors.Whether it participates in cellular metabolic reprogramming and regulates CRC initiation and progression remains unclear.In this study,we compared the expression of DDR1 in CRC tissues and adjacent tissues from 126 postoperative CRC samples.Moreover,lentivirus-mediated DDR1a overexpression and knockdown were performed in LoVo cells,and cell viability and proliferation were determined by CCK-8 and BrdU assays,respectively.Oxygen consumption rate,extracellular acidification rate,and lactate production were used to determine the effect of DDR1a on metabolic reprogramming.Clinically,CRC patients with high DDR1 expression had poor differentiation and were at an advanced TNM stage.DDR1a promoted LoVo cell proliferation,mitochondrial function,and extracellular acidification.Moreover,DDR1a knockdown inhibited intracellular lactic acid production in LoVo cells,while a pyruvate kinase inhibitor(diamide,200μM)significantly reversed this progression.Taken together,our results reveal that DDR1 plays a crucial role in maintaining intracellular environment homeostasis through metabolic reprogramming. | Bin Xiong Zehui Xie Feixue Song Huiling Chen Xiaojuan Wang Zhengxu Jin Tiyun Han Yi Li Dekui Zhang | 2022 | Acta Biochimica et Biophysica Sinica2022,54,5: | 1 |
| 12 | Study on the Bonding Performance of the Moso Bamboo Dowel Welded to a Poplar Substrate Joint by High-Speed Rotation显示文摘The wood friction welding technique with its high bonding strength,low cost,high efficiency,and without any adhesive has been increasing concern in China.Moso bamboo(Phyllostachys pubescens)and poplar(Populus sp.)are widely planted and used in the furniture industry,interior decoration,and wood structure construction in China.The aim of this work was to investigate the bonding performance of moso bamboo dowel rotation welded joints with different dowel/receiving hole diameter ratios.The results indicated that the ratio of dowel/receiving hole diameter was an important parameter that influenced the welding performance.The bonding strength of the bamboo-to-poplar welded joints at the optimal ratio of 10/7 was as high as 7.50 MPa,which was higher than that of the beech(Fagus sylvatica,L.),schima(Schima superba)dowels and PVAc glued joints.The temperature measurement results showed a peak temperature of bamboo dowel welding as high as 350–360°C.Some differences in the temperature curves between each dowel/hole diameter ratio group were observed at the three different hole depths,such as the friction time,peak temperatures,and stabilization time at the maximum temperature,which could explain the differences in welding strengths between different ratios.The SEM results showed the temperature-induced softening,melting and flowing of cell-interconnected polymer material in the wood and bamboo structure.In addition,the bamboo fibers(mainly vascular bundles)were wrapped to form a dense continuous bonding layer,similar to the reinforced concrete,thus producing a good bonding effect.The Fourier transform-infrared spectroscopy(FT-IR)analyses showed that the high temperature resulted in the increase of the lignin relative content due to the degradation reaction of cellulose in the welding zone,which improved the bonding properties. | Suxia Li Haiyang Zhang Biqing Shu Liangsong Cheng Zehui Ju Xiaoning Lu | 2021 | Journal of Renewable Materials2021,9,7: | 1 |
| 13 | Regulatory Polymorphisms in the Promoter of CXCL10 Gene and Disease Progression in Male Hepatitis B Virus Carriers显示文摘 | Guohong Deng Gangqiao Zhou Rong Zhang Yun Zhai Wenli Zhao Zehui Yan Chunqing Deng Xiaoyan Yuan Baoyan Xu Xiaojia Dong Xiumei Zhang Xuqing Zhang Zhijian Yao Yan Shen Boqing Qiang Yuming Wang Fuchu He | 2008 | Gastroenterology2008,,3: | 1 |
| 14 | Enhanced chemical trapping and catalytic conversion of polysulfides by diatomite/MXene hybrid interlayer for stable Li-S batteries显示文摘Lithium-Sulfur (Li-S) batteries with high theoretical energy density are promising energy storage systems in the next decades, while the lithium polysulfides (LiPSs) shuttling caused by the sluggish sulfur redox reaction severely lowers the practical performance. The use of interlayer between the cathode and separator has been widely investigated to physically or chemically block the LiPSs, while the introduction of catalytic materials is a more effective strategy to accelerate the conversion of LiPSs. MXene with rich surface chemistry has shown its potential for facilitating the catalytic conversion, however, the aggregation of MXene sheets usually leads to the loss of the catalytic active sites. Herein, we report a diatomite/MXene (DE/MX) hybrid material as the bifunctional interlayer for improving the adsorption/conversion of LiPSs in Li-S batteries. The diatomite with porous structure and rich silica-hydroxyl functional groups could trap LiPSs effectively, while prevent the aggregation of MXene. The DE/MX based interlayer showed bifunctions of enhancing the chemical adsorption and promoting the conversion of LiPSs. The Li-S batteries with the DE/MX interlayer delivered an improved cycling stability with a low capacity decay of 0.059% per cycle over 1000 cycles at 1.0 C. Moreover, stable 200 cycles can be realized with a high sulfur loading electrode up to 6.0 mg cm^(−2). This work provides an effective strategy to construct bifunctional interlayers for hindering the shuttling of LiPSs and boosting the practical application of Li-S batteries. | Zehui Fan Chen Zhang Wuxing Hua Huan Li Yan Jiao Jingyi Xia Chuan-Nan Geng Rongwei Meng Yingxin Liu Quanjun Tang Ziyang Lu Tongxin Shang Guowei Ling Quan-Hong Yang | 2021 | Journal of Energy Chemistry2021,30,11: | 1 |
| 15 | Direct conversion of glucose and cellulose to 5-hydromethylfurfural in ionic liquid under microwave irradiation 显示文摘 | Changzhi Li Zehui Zhang Zongbao K Zhao | 2009 | Tetrahedron Letters2009,50,: | 1 |
| 16 | Preparation of Magnetic TS-1 and Its Catalytic Activity显示文摘 | LI Yu XUE Zehui ZHANG Qi SUN Cuitao LI Junping LIU Laishuan | 2015 | Chemical Research in Chinese Universities2015,31,3: | 1 |
| 17 | Photocatalytic oxidative degradation of organic pollutant with molecular oxygen activated by a novel biomimetic catalyst ZnPz(dtn-COOH)4显示文摘 | ZHANG Zehui ZHANG Mingjian DEND Jia | 2012 | Appl Catal2012,13,: | 1 |
| 18 | Direct conversion of glucose and cellulose to 5-hydroxymethylfurfural in ionic liquid under microwave irradiation显示文摘 | LI Changzhi ZHANG Zehui ZHAO Zongbao K | | 0,,38: | 1 |
| 19 | Defects boost graphitization for highly conductive graphene films显示文摘Fabricating highly crystalline macroscopic films with extraordinary electrical and thermal conductivities from graphene sheets is essential for applications in electronics,telecommunications and thermal management.High-temperature graphitization is the only method known to date for the crystallization of all types of carbon materials,where defects are gradually removed with increasing temperature.However,when using graphene materials as precursors,including graphene oxide,reduced graphene oxide and pristine graphene,even lengthy graphitization at 3000℃can only produce graphene films with small grain sizes and abundant structural disorders,which limit their conductivities.Here,we show that high-temperature defects substantially accelerate the grain growth and ordering of graphene films during graphitization,enabling ideal AB stacking as well as a 100-fold,64-fold and 28-fold improvement in grain size,electrical conductivity and thermal conductivity,respectively,between 2000℃and 3000℃.This process is realized by nitrogen doping,which retards the lattice restoration of defective graphene,retaining abundant defects such as vacancies,dislocations and grain boundaries in graphene films at a high temperature.With this approach,a highly ordered crystalline graphene film similar to highly oriented pyrolytic graphite is fabricated,with electrical and thermal conductivities(~2.0×10~4 S cm~(-1);~1.7×10~3 W m~(-1)K~(-1))that are improved by about 6-and 2-fold,respectively,compared to those of the graphene films fabricated by graphene oxide.Such graphene film also exhibits a superhigh electromagnetic interference shielding effectiveness of~90 dB at a thickness of 10μm,outperforming all the synthetic materials of comparable thickness including MXene films.This work not only paves the way for the te chnological application of highly conductive graphene films but also provides a general strategy to efficiently improve the synthesis and properties of other carbon materials such as graphene fibers,carbon nanotube fibers,carbon fibers,polymer-derived graphite and highly oriented pyrolytic graphite. | Qing Zhang Qinwei Wei Kun Huang Zhibo Liu WeiMa Zehui Zhang Yanfeng Zhang Hui-Ming Cheng Wencai Ren | 2023 | National Science Review2023,10,7: | 1 |
| 20 | Allylic Oxidation of Cyclohexene with Molecular Oxygen Using Cobalt Resinate as Catalyst显示文摘 | Caixia Yin Zehui Yang Bin Li Fengmei Zhang Jiaqiang Wang Encai Ou | 2009 | Catalysis Letters (-)2009,,3: | 1 |