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| 1 | A complete sequence and comparative analysis of a SARS-associated virus(Isolate BJ01)显示文摘The genome sequence of the Severe Acute Respiratory Syndrome (SARS)-associated virus provides essential information for the identification of pathogen(s), exploration of etiology and evolution, interpretation of transmission and pathogenesis, development of diagnostics, prevention by future vaccination, and treatment by developing new drugs. We report the complete genome sequence and comparative analysis of an isolate (BJ01) of the coronavirus that has been recognized as a pathogen for SARS. The genome is 29725 nt in size and has 11 ORFs (Open Reading Frames). It is composed of a stable region encoding an RNA-dependent RNA polymerase (composed of 2 ORFs) and a variable region representing 4 CDSs (coding sequences) for viral structural genes (the S, E, M, N proteins) and 5 PUPs (putative uncharacterized proteins). Its gene order is identical to that of other known coronaviruses. The sequence alignment with all known RNA viruses places this virus as a member in the family of Coronaviridae. Thirty putative substitutions have been identified by comparative analysis of the 5 SARS- associated virus genome sequences in GenBank. Fifteen of them lead to possible amino acid changes (non-synonymous mutations) in the proteins. Three amino acid changes, with predicted alteration of physical and chemical features, have been detected in the S protein that is postulated to beinvolved in the immunoreactions between the virus and its host. Two amino acid changes have been detected in the Mprotein, which could be related to viral envelope formation. Phylogenetic analysis suggests the possibility of non-human origin of the SARS-associated viruses but provides noevidence that they are man-made. Further efforts should focus on identifying the etiology of the SARS-associated virus and ruling out conclusively the existence of otherpossible SARS-related pathogen(s). | QIN E'de ZHU Qingyu YU Man FAN Baochang CHANG Guohui SI Bingyin YANG Bao PENG Wenming JIANG Tao LIU Bohua DENG Yongqiang LIU Hong ZHANG Yu WANG Cui LI Yuquan GAN Yonghua LI Xiaoyu L Fushuang TAN Gang CAO Wuchun, YANG Ruifu Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, Beijing 100071, China WANG Jian, LI Wei, XU Zuyuan, LI Yan, WU Qingfa, LIN Wei, CHEN Weijun, TANG Lin, DENG Yajun, HAN Yujun, LI Changfeng, LEI Meng, LI Guoqing, LI Wenjie, L Hong, SHI Jianping, TONG Zongzhong, ZHANG Feng, LI Songgang, LIU Bin, LIU Siqi, DONG Wei, WANG Jun, Gane K-S Wong, YU Jun & YANG Huanming* Beijing Genomics Institute, Chinese Academy of Sciences, Beijing 101300 National Center for Genome Information, Beijing 101300, China | 2003 | Chinese Science Bulletin2003,48,10: | 121 |
| 2 | Synthesis of Porous NiO Nanocrystals with Controllable Surface Area and Their Application as Supercapacitor Electrodes显示文摘We report a facile way to grow various porous NiO nanostructures including nanoslices,nanoplates,and nanocolumns,which show a structure-dependence in their specific charge capacitances.The formation of controllable porosity is due to the dehydration and re-crystallization of β-Ni(OH)_(2) nanoplates synthesized by a hydrothermal process.Thermogravimetric analysis shows that the decomposition temperature of the β-Ni(OH)_(2) nanostructures is related to their morphology.In electrochemical tests,the porous NiO nanostructures show stable cycling performance with retention of specific capacitance over 1000 cycles.Interestingly,the formation of nanocolumns by the stacking of β-Ni(OH)_(2) nanoslices/plates favors the creation of small pores in the NiO nanocrystals obtained after annealing,and the surface area is over five times larger than that of NiO nanoslices and nanoplates.Consequently,the specific capacitance of the porous NiO nanocolumns(390 F/g)is significantly higher than that of the nanoslices(176 F/g)or nanoplates(285 F/g)at a discharge current of 5 A/g.This approach provides a clear illustration of the process-structure-property relationship in nanocrystal synthesis and potentially offers strategies to enhance the performance of supercapacitor electrodes. | Xiaojun Zhang Wenhui Shi Jixin Zhu Weiyun Zhao Jan Ma Subodh Mhaisalkar Tuti Lim Maria Yanhui Yang Hua Zhang Huey Hoon Hng Qingyu Yan | 2010 | Nano Research2010,3,9: | 24 |
| 3 | The construction of a genetic linkage map of non-heading Chinese cabbage (Brassica campestris ssp.chinensis Makino)显示文摘Non-heading Chinese cabbage(Brassica campestris ssp.chinensis Makino) is one of the most important vegetables in eastern China.A genetic linkage map was constructed using 127 doubled haploid(DH) lines,and the DH population was derived from a commercial hybrid 'Hanxiao'(lines SW-13 × L-118).Out of the 614 polymorphic markers,43.49% were not assigned to any of the linkage groups(LGs).Chi-square tests showed that 42.67% markers were distorted from expected Mendelian segregation ratios,and the direction of distorted segregation was mainly toward the paternal parent L-118.After sequentially removing the markers that had an interval distance smaller than 1 cM from the upper marker,the overall quality of the linkage map was increased.Two hundred and sixty-eight molecular markers were mapped into 10 LGs,which were anchored to the corresponding chromosome of the B.rapa reference map based on common simple sequence repeat(SSR) markers.The map covers 973.38 cM of the genome and the average interval distance between markers was 3.63 cM.The number of markers on each LG ranged from 18(R08) to 64(R07),with an average interval distance within a single LG from 1.70 cM(R07) to 6.71 cM(R06).Among these mapped markers,169 were sequence-related amplified polymorphism(SRAP) mo-lecular markers,50 were SSR markers and 49 were random amplification polymorphic DNA(RAPD) markers.With further saturation to the LG,the current map offers a genetic tool for loci analysis for important agronomic traits. | Yan Cheng Jianfeng Geng Jingyi Zhang Qian Wang Qingyu Ban Xilin Hou | 2009 | Journal of Genetics and Genomics2009,36,8: | 9 |
| 4 | High thermal conductivity of suspended few-layer hexagonal boron nitride sheets显示文摘推迟的很少层的热传导六角形的硼氮化物(h-BN ) 表试验性地用一个 noncontact micro-Raman 光谱学方法被调查。为单层(1L ) 的一阶的温度系数, bilayer (2L ) 并且九层(9L ) h-BN 表被测量是(当时, electrospinning 准备的 3.41 xide nanofibers 被期望减少了热电导率与体积样品相比。自从它包含复杂样品准备方法,热电导率正在质问的 nanofibers 的大小。在这个工作,我们在场对单个 nanofiber 的热电导率的大小合适的一个新奇方法。一 microelectro 机械(MEMS ) 设备被设计了并且制作了在单个 nanofiber 上执行热传导性大小。一个特殊 Si 模板被设计收集并且转单个 nanofibers 到 MEMS 设备名上吗? | Haiqing Zhou Jixin Zhu Zheng Liu Zheng Yan Xiujun Fan Jian Lin Gunuk Wang Qingyu Yan Ting Yu Pulickel M. Ajayan James M. Tour | 2014 | Nano Research2014,7,8: | 9 |
| 5 | Graphene and cobalt phosphide nanowire composite as an anode material for high performance lithium-ion batteries显示文摘合成一经由一个灵巧的热水的方法的磷化物 nanowires 和减少的 graphene 氧化物(表示 CoP/RGO ) 与随后的退火步相结合的钴合成被报导。结果合成介绍大特定的表面区域和提高的电导率,它能有效地便于充电运输并且在 lithiation/de-lithiation 过程期间在体积提供变化。作为结果, CoP/RGO nanocomposite 表明 960 | Jun Yang Yu Zhang Chencheng Sun Hongzheng Liu Laiquan Li Weili Si Wei Huang Qingyu Yan Xiaochen Dong | 2016 | Nano Research2016,9,3: | 8 |
| 6 | Inverse opal manganese dioxide constructed by few-layered ultrathin nanosheets as high-performance cathodes for aqueous zinc-ion batteries显示文摘Considering the high safety,low-cost and high capacity,aqueous zinc ion batteries have been a potential candidate for energy storage ensuring smooth electricity supply.Herein,we have synthesized inverse opal manganese dioxide constructed by few-layered ultrathin nanosheets by a solution template method at mild temperature.The ultrathin nanosheets with the thickness as small as 1 nm are well separated without obvious aggregation.Used as cathode material for aqueous zinc ion batteries,the few-layered ultrathin nanosheets combined with the inverse opal structure guarantee excellent performance.A high specific discharge capacity of 262.9 mAh·g^-1 is retained for the 100th cycle at a current density of 300 mA·g^-1 with a high capacity retention of 95.6%.A high specific discharge capacity of 121 mAh·g^-1 at a high current density of 2,000 mA·g^-1 is achieved even after 5,000 long-term cycles.The ex-situ X-ray diffraction (XRD) patterns,selected-area electron diffraction (SAED) patterns and high-resolution transmission electron microscopy (HRTEM) results demonstrate that the discharge/charge processes involve the reversible formation of zinc sulfate hydroxide hydrate on the cathode while in-plane crystal structure of the layered bimessite MnO2 could be maintained.This unique structured MnO2 is a promising candidate as cathode material for high capacity,high rate capability and long-term aqueous zinc-ion batteries. | Hao Ren Jin Zhao Lan Yang Qinghua Liang Srinivasan Madhavi Qingyu Yan | 2019 | Nano Research2019,12,6: | 8 |
| 7 | V4C3Tx MXene:A promising active substrate for reactive surface modification and the enhanced electrocatalytic oxygen evolution activity显示文摘Presented are the synthesis,characterizations,and reactive surface modification(RSM)of a novel nine atomic layered V4C3Tx MXene.With the advantages of the multilayered V4C3Tx MXene that can simultaneously support the RSM reaction and keep the inner skeleton stable,a series of amorphous Ni/Fe/Vternary oxide hydroxides thin layer can be successfully modified on the surface of the V4C3Tx MXene(denoted as MOOH@V4C3Tx,M=Ni,Fe,and V)without disrupting its original structure.Attributed to the in situ reconstruction of highly active oxide hydroxide layer,the nanohybrids exhibited an enhanced oxygen evolution reaction(OER)activity and excellent long-time stability over 70 hours.In particular,a current density of 10 mA cm−2 can be reached by the nanohybrid with the optimized Ni/Fe ratio at an overpotential(η)as low as 275.2 mV,which is comparable to most of the state-of-the-art OER catalysts and better than other MXene-based derivatives.Demonstrated by the tunable physicochemical properties and excellent structural stability of these nanohybrids,we may envision the promising role of the M4X3-based MXenes as substrates for a wide range of energy conversion and storage materials. | Cheng-Feng Du Xiaoli Sun Hong Yu Wei Fang Yao Jing Yonghui Wang Shuiqing Li Xianhu Liu Qingyu Yan | 2020 | InfoMat2020,2,5: | 8 |
| 8 | Highly Efficient and Stable Hydrogen Production in All pH Range by Two-Dimensional Structured Metal-Doped Tungsten Semicarbides显示文摘Transition-metal-doped tungsten semicarbide nanosheets(M-doped W_(2)C NSs,M=Fe,Co,and Ni)have been synthesized through carburization of the mixture of tungsten trioxide,polyvinylpyrrolidone,and metal dopant.Te nanosheets grow directly on the W mesh and have the lateral dimension of several hundreds of nm to a few�m with a thickness of few tens nm.It is demonstrated that the M-doped W_(2)C NSs exhibit superior electrocatalytic activity for hydrogen evolution reaction(HER).Impressively,the Nidoped W_(2)C NSs(2 at%Ni)with the optimized HER activity show extremely low onset overpotentials of 4,9,and 19 mV and modest Tafel slopes of 39,51,and 87 mV dec−1 in acidic(pH=0),neutral(pH=7.2),and basic(pH=14)solutions,respectively,which is close to the commercial Pt/C catalyst.Density functional theory(DFT)calculations also demonstrate that the Gibbs free energy for H adsorption of Ni-W_(2)C is much closer to the optimal valueG_(H∗)=-0.073 eV as compared to-0.16 eV of W_(2)C.Furthermore,nearly 100%Faradaic efciency and long-term stability are obtained in those environments.Tis realization of highly tolerant metal semicarbide catalyst performing on par with commercial Pt/C in all range of pH ofers a key step towards industrially electrochemical water splitting. | Edison H.Ang Khang N.Dinh Xiaoli Sun Ying Huang Jun Yang Zhili Dong Xiaochen Dong Wei Huang Zhiguo Wang Hua Zhang Qingyu Yan | 2019 | Research2019,,1: | 7 |
| 9 | Present Situation of Eutrophication of Landscape Water Body and Its Prevention and Control Measures显示文摘At present,all kinds of pollutants are discharged into the landscape water body,and the landscape water body is mostly static or slow flow state. This leads to the deepening of water pollution,eutrophication,blackening of water body,and stench and flood disasters occur frequently. This makes the urban landscape water lose its ornamental value,affects the effective operation of ecological function,and will also endanger the health of residents. Reclaimed water is one of the common methods of modern landscape water,but reclaimed water contains a lot of nitrogen and phosphorus,which will make the eutrophication of water body increase,and easily lead to ' algal blooms',water quality deterioration,and loss of landscape function. Therefore,understanding the current situation of landscape water eutrophication and effective prevention and control measures has become one of the water environment problems to be solved. | Qingyu LU Wei XIN Jiangli NIE Yan ZHANG Yi PEI | 2019 | Asian Agricultural Research2019,11,3: | 7 |
| 10 | Rational development of a human antibody cocktail that deploys multiple functions to confer Pan-SARS-CoVs protection显示文摘Structural principles underlying the composition and synergistic mechanisms of protective monoclonal antibody cocktails are poorly defined.Here,we exploited antibody cooperativity to develop a therapeutic antibody cocktail against SARS-CoV-2.On the basis of our previously identified humanized cross-neutralizing antibody H014,we systematically an a lyzed a fully human n aive antibody library and rationally identified a potent neutralizing antibody partner,P17,which confers effective protection in animal model.Cryo-EM studies dissected the nature of the P17 epitope,which is SARS-CoV-2 specific and distinctly different from that of HOI4.High-resolution structure of the SARS-CoV-2 spike in complex with HOM and P17,together with functional investigations revealed that in a two-antibody cocktail,synergistic neutralization was achieved by S1 shielding and conformational locking,thereby blocking receptor attachment and viral membrane fusion,conferring high potency as well as robustness against viral mutation escape.Furthermore,cluster analysis identified a hypothetical 3rd antibody partner for further reinforcing the cocktail as pan-SARS-CoVs therapeutics. | Hangping Yao Yao Sun Yong-Qiang Deng Nan Wang Yongcong Tan Na-Na Zhang Xiao-Feng Li Chao Kong Yan-Peng Xuc Qi Chen Tian-Shu Cao Hui Zhao Xintian Yan Lei Cao Zhe Lv Dandan Zhu Rui Feng Nanping Wu Wenhai Zhang Yuhao Hu Keda Chen Rong-Rong Zhang Qingyu Lv Shihui Sun Yunhua Zhou Run Yan Guan Yang Xinglu Chanjuan Liu Xiangyun Lu Linfang Cheng Hongying Qiu Xing-Yao Huang Tianhao Weng Danrong Shi Weidong Jiang Junbin Shao Lei Wang Jie Zhang Tao Jiang Guojun Lang Cheng-Feng Qinc Lanjuan Li Xiangxi Wang | 2021 | Cell Research2021,31,1: | 5 |
| 11 | Targeting PFKL with penfluridol inhibits glycolysis and suppresses esophageal cancer tumorigenesis in an AMPK/FOXO3a/BIM-dependent manner显示文摘As one of the hallmarks of cancer,metabolic reprogramming leads to cancer progression,and targeting glycolytic enzymes could be useful strategies for cancer therapy.By screening a small molecule library consisting of 1320 FDA-approved drugs,we found that penfluridol,an antipsychotic drug used to treat schizophrenia,could inhibit glycolysis and induce apoptosis in esophageal squamous cell carcinoma(ESCC).Gene profiling and Ingenuity Pathway Analysis suggested the important role of AMPK in action mechanism of penfluridol.By using drug affinity responsive target stability(DARTS)technology and proteomics,we identified phosphofructokinase,liver type(PFKL),a key enzyme in glycolysis,as a direct target of penfluridol.Penfluridol could not exhibit its anticancer property in PFKL-deficient cancer cells,illustrating that PFKL is essential for the bioactivity of penfluridol.High PFKL expression is correlated with advanced stages and poor survival of ESCC patients,and silencing of PFKL significantly suppressed tumor growth.Mechanistically,direct binding of penfluridol and PFKL inhibits glucose consumption,lactate and ATP production,leads to nuclear translocation of FOXO3a and subsequent transcriptional activation of BIM in an AMPK-dependent manner.Taken together,PFKL is a potential prognostic biomarker and therapeutic target in ESCC,and penfluridol may be a new therapeutic option for management of this lethal disease. | Cancan Zheng Xiaomei Yu Yiyao Liang Yidong Zhu Yan He Long Liao Dingkang Wang Yanming Yang Xingfeng Yin Ang Li Qingyu He Bin Li | 2022 | Acta Pharmaceutica Sinica B2022,12,3: | 4 |
| 12 | Vanadium-based metal-organic frameworks and their derivatives for electrochemical energy conversion and storage显示文摘With the excessive consumption of nonrenewable resources,the exploration of effective and durable materials is highly sought after in the field of sustainable energy conversion and storage system.In this aspect,metalorganic frameworks(MOFs)are a new class of crystalline porous organicinorganic hybrid materials.MOFs have recently been gaining traction in energy-related fields.Owing to the coordination flexibility and multiple accessible oxidation states of vanadium ions or clusters,vanadium-MOFs(V-MOFs)possess unique structural characteristics and satisfactory electrochemical properties.Furthermore,V-MOFs-derived materials also exhibit superior electrical conductivity and stability when used as electrocatalysts and electrode materials.This review summarizes the research progress of V-MOFs(inclusive of pristine V-MOFs,V/M-MOFs,and POVbased MOFs)and their derivatives(vanadium oxides,carbon-coated vanadium oxide,vanadium phosphate,vanadate,and other vanadium doped nanomaterials)in electrochemical energy conversion(water splitting,oxygen reduction reaction)and energy storage(supercapacitor,rechargeable battery).Future possibilities and challenges for V-MOFs and their derivatives in terms of design and synthesis are discussed.Lastly,their applications in energy-related fields are also highlighted. | Jing Zhu Xiaoyu Chen Ai Qin Thang Fei‐Long Li Dong Chen Hongbo Geng Xianhong Rui Qingyu Yan | 2022 | SmartMat2022,3,3: | 2 |
| 13 | A Red-Emissive Sextuple Hydrogen-Bonding Self-Assembly Molecular Duplex Bearing Perylene Diimide Fluorophores for Warm-White Organic Light-Emitting Diode Application显示文摘一篇小说六倍结合氢(HB ) 自己组装分子的双适用的红射出的 perylene diimide (PDI ) fluorophores,也就是 PDIHB,被综合,并且它的分子的结构被 1 H NMR, 13 C NMR, TOFMS 和 2D NMR。与小分子的参考混合物 PDI 相比, PDIHB 处于稳固的状态(4.1% 对 2.1%) 显示出提高的荧光效率一次。更重要地,在 PDIHB 的笨重 HB oligoamide 海滨的存在能在薄稳固的电影触发在客人和主人 fluorophores 之间的有效空间分离州的、因此低效的精力转移在 2 wt% 发生在蓝射出的主人 2TPhNIHB 和红客人 PDIHB 之间客人 / 主人相配电影。作为结果,有 ITO/PEDOT 的相当简单的设备结构的一根处理答案的器官的轻射出的二极管(OLED ): PSS (40 nm )/PVK (40 nm )/PDIHB (2 wt%) :2TPhNIHB (50 nm )/Al (100 nm ) 能射出的 /LiF (0.8 nm ) 有稳定的委员会共产国际歌 de LEclairage 坐标的偏爱无关的温暖白人的 electroluminescence (0.42, 0.33 ) ,并且最大的亮度和这台设备的当前的效率分别地是 260 cd·m −2 和 0.49 cd·A −1, 。所有这些结果显示了那 HB 自己组装超分子的 fluorophores 能为白 OLED 申请充当未来的材料。 | Hui Zeng Qingyu Huang Jingjing Liu Yan Huang Jie Zhou Suling Zhao Zhiyun Lu | 2016 | Chinese Journal of Chemistry2016,34,4: | 2 |
| 14 | Hydrogenated vanadium oxides as an advanced anode material in lithium ion batteries显示文摘 | Yufei Zhang Huanwen Wang Jun Yang Haosen Fan Yu Zhang Zhengfei Dai Yun Zheng Wei Huang Xiaochen Dong Qingyu Yan | 2017 | Nano Research2017,10,12: | 2 |
| 15 | Origin of air pollution during a weekly heavy haze episode in Hang- zhou, China ]显示文摘 | YU Shaocai ZHANG Qingyu YAN Renchang | 2014 | Environmental Chemistry Letters2014,12,4: | 1 |
| 16 | Talanta显示文摘 | Wei Qin Yan Liangguo Chang Guohua Ou Qingyu | 2003 | 59(2):2532003,59,2: | 1 |
| 17 | Three-dimensional regulation of transcription显示文摘房间能适应环境,没有改变内在的 DNA,他们的 transcriptional 联网调整多样的细胞的进程的由重建的开发定序。这些改变,也就是, epigenetic 变化,发生在房间分割,区别和房间死亡期间。众多的证据证明 epigenetic 变化被决定因素的各种各样的类型管理,包括 DNA methylation 模式, histone posttranslational 修正签名, histone 变体,改变的染色质,和最近发现的染色体符合构造特征和非编码的 RNA (ncRNAs ) 。这里,我们加亮二个后者 epigenetic 因素怎么参予复杂 transcriptional 过程并且描述允许我们揭开并且获得卓见进迷人的 genomic 规定的新兴的技术的最近的努力。 | Jun Cao Zhengyu Luo Qingyu Cheng Qianlan Xu Yan Zhang Fei Wang Yan Wu Xiaoyuan Song | 2015 | Protein & Cell2015,6,4: | 1 |
| 18 | Layered Trichalcogenidophosphate:A New Catalyst Family for Water Splitting显示文摘Due to the rapidly increasing demand for energy and environmental sustainability, stable and economical hydrogen production has received increasing attention in the past decades. In this regard, hydrogen production through photo-or electrocatalytic water splitting has continued to gain ever-growing interest. However, the existing catalysts are still unable to fulfill the demands of highefficiency, low-cost, and sustainable hydrogen production.Layered metal trichalcogenidophosphate(MPQ_3) is a newly developed two-dimensional material with tunable composition and electronic structure. Recently, MPQ_3 has been considered a promising candidate for clean energy generation and related water splitting applications. In this minireview, we firstly introduce the structure and methods for the synthesis of MPQ_3 materials. In the following sections, recent developments of MPQ_3 materials for photo-and electrocatalytic water splitting are briefly summarized. The roles of MPQ_3 materials in different reaction systems are also discussed. Finally, the challenges related to and prospects of MPQ_3 materials are presented on the basis of the current developments. | Cheng-Feng Du Qinghua Liang Raksha Dangol Jin Zhao Hao Ren Srinivasan Madhavi Qingyu Yan | 2018 | Nano-Micro Letters2018,10,4: | 1 |
| 19 | Origin of air pollution during a weekly heavy haze episode in Hangzhou, China 显示文摘 | YU Shaocai ZHANG Qingyu YAN Renghang | 2014 | Environmental Chemistry Letters2014,12,4: | 1 |
| 20 | An Effective Method for the Fabrication of Few‐Layer‐Thick Inorganic Nanosheets显示文摘 | Zhiyuan Zeng Ting Sun Jixin Zhu Xiao Huang Zongyou Yin Gang Lu Zhanxi Fan Qingyu Yan Huey Hoon Hng Hua Zhang | 2012 | Angew. Chem. Int. Ed2012,,36: | 1 |