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2789篇 您的检索式:作者名="Deng D"
    题名 作者 年代 出处 被引量
1Existing drugs as broad-spectrum and potent inhibitors for Zika virus by targeting NS2B-NS3 interaction显示文摘Zika 病毒(ZIKV ) 的最近的爆发为治疗学加亮迫切需要。朊酶建筑群 NS2B-NS3 在 flaviviral polyprotein 处理期间起必要作用,并且因此代表一个吸引人的药目标。这里,我们开发了裂口酶识别直接指向 flavivirus NS2B-NS3 相互作用的 orthosteric 禁止者的基于互补的高产量的屏蔽试金。由屏蔽一个总数 2 816 同意了并且 investigational 药,我们识别了三个有势力候选人, temoporfin, niclosamide,和 nitazoxanide,,有 nanomolar 力量的 flavivirus NS2B-NS3 相互作用禁止者。显著地,在老鼠的在人的胎盘、神经的祖先房间的大多数有势力化合物, temoporfin,不是仅仅禁止的 ZIKV 复制,而且阻止的导致 ZIKV 的 viremia 和死亡当模特儿。结构的停靠建议 temoporfin 潜在地绑保持批评 NS2B 残余的 NS3 衣袋,因此禁止以一种非竞争的方式处理的 flaviviral polyprotein。当这些药已经在 USA 或另外的国家在另外的指示任何一个为临床的使用被同意了,他们由 ZIKV 和另外的 flaviviruses 为感染的管理代表有希望、容易开发的治疗。Zhong Li Matthew Brecher Yong-Qiang Deng Jing Zhang Srilatha Sakamuru Binbin Liu Ruili Huang Cheri A Koetzner Christina A Allen Susan A Jones Haiying Chen Na-Na Zhang Min Tian Fengshan Gao Qishan Lin Nilesh Banavali Jia Zhou Nathan Boles Menghang Xia Laura D Kramer Cheng-Feng Qin Hongmin Li 2017Cell Research2017,27,8:11
2A draft sequence of the rice (Oryza sativa ssp. indica) genome显示文摘The sequence of the rice genome holds fundamental information for its biology, including physiology, genetics, development, and evolution, as well as information on many beneficial phenotypes of economic significance. Using a 'whole genome shotgun' approach, we have pro-duced a draft rice genome sequence of Oryza sativa ssp. in-dica, the major crop rice subspecies in China and many other regions of Asia. The draft genome sequence is constructed from over 4.3 million successful sequencing traces with an accumulative total length of 2214.9 Mb. The initial assembly of the non-redundant sequences reached 409.76 Mb in length, based on 3.30 million successful sequencing traces with a total length of 1797.4 Mb from an indica variant cultivar 93-11, giving an estimated coverage of 95.29% of the rice genome with an average base accuracy of higher than 99%. The coverage of the draft sequence, the randomness of the sequence distribution, and the consistency of BIG-ASSEM-BLER, a custom-designed software packageYU Jun, HU Songnian, WANG Jun,LI Songgang WONG Ka-Shu Gane, LIU Bin,DENG Yajun, DAI Li, ZHOU Yan,ZHANG Xiuqing, CAO Mengliang, LIU Jing,SUN Jiandong , TANG Jiabin, CHEN Yanjiong,HUANG Xiaobing, LIN Wei, YE Chen, TONG Wei,CONG Lijuan, GENG Jianing, HAN Yujun, LI Lin,LI Wei, HU Guangqiang, HUANG Xiangang,LI Wenjie, LI Jian, LIU Zhanwei, LI Long,LIU Jianping, Ql Qiuhui, LIU Jinsong, LI Li,WANG Xuegang, LU Hong, WU Tingling,ZHU Miao, Nl Peixiang, HAN Hua, DONG Wei,REN Xiaoyu, FENG Xiaoli, GUI Peng,LI Xianran, WANG Hao, XU Xin, ZHAI Wenxue,XU Zhao, ZHANG Jinsong, HE Sijie,ZHANG Jianguo, XU Jichen, ZHANG Kunlin,ZHENG Xianwu, DONG Jianhai, ZENG Wanyong,TAO Lin, CHEN Xuewei, HE Jun, LIU Daofeng,TIAN Wei, TIAN Chaoguang, XIA Hongai,LI Gang, GAO Hui, LI Ping, CHEN Wei ,WANG Xudong, ZHANG Yong, HU Jianfei,WANG Jing, LIU Song, YANG Jian,ZHANG Guangyu, XIONG Yuqing, LI Zhijie,MAO Long, ZHOU Chengshu, ZHU Zhen,CHEN Runsheng, HAO Bailin,ZHENG Weimou, CHEN Shouyi, QUO Wei,LI Guojie, LIU Siqi, HUANG Guyang,TAO Ming, WANG Jian, ZHU Lihuang,YUAN Longping& YANG HuanmingBeijing Genomics Institute/Center of Genomics & Bioinformatics, Chinese Academy of Sciences, Beijing 101300, China Hangzhou Genomics Institute/Institute of Bioinformatics of Zhejiang University/Key Laboratory of Bioinformatics of Zhejiang Province, Hangzhou 310007, China Institute of Genetics, Chinese Academy of Sciences, Beijing 100101, China National Hybrid Rice R & D Center, Changsha 410125, China Laboratory of Bioinformatics, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China College of Life Sciences, Peking University, Beijing 100871, China Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 1Q0080, China Digital China Ltd., Beijing 100080, China Institute of Computing Technology, Chinese Academy of Sciences, Beijing 100080, China Medical College, Xi’an Jiaotong University, Xi’an 710061, ChinaThese authors contributed equally to this work.Corresponding author.Corresponden 2001Chinese Science Bulletin2001,46,23:6
3Genome resequencing and transcriptome profiling reveal structural diversity and expression patterns of constitutive disease resistance genes in Huanglongbing-tolerant Poncirus trifoliata and its hybrids显示文摘Huanglongbing(HLB)is the most destructive bacterial disease of citrus worldwide.While most citrus varieties are susceptible to HLB,Poncirus trifoliata,a close relative of Citrus,and some of its hybrids with Citrus are tolerant to HLB.No specific HLB tolerance genes have been identified in P.trifoliata but recent studies have shown that constitutive disease resistance(CDR)genes were expressed at much higher levels in HLB-tolerant Poncirus hybrids and the expression of CDR genes was modulated by Candidatus Liberibacter asiaticus(CLas),the pathogen of HLB.The current study was undertaken to mine and characterize the CDR gene family in Citrus and Poncirus and to understand its association with HLB tolerance in Poncirus.We identified 17 CDR genes in two citrus genomes,deduced their structures,and investigated their phylogenetic relationships.We revealed that the expansion of the CDR family in Citrus seems to be due to segmental and tandem duplication events.Through genome resequencing and transcriptome sequencing,we identified eight CDR genes in the Poncirus genome(PtCDR1-PtCDR8).The number of SNPs was the highest in PtCDR2 and the lowest in PtCDR7.Most of the deletion and insertion events were observed in the UTR regions of Citrus and Poncirus CDR genes.PtCDR2 and PtCDR8 were in abundance in the leaf transcriptomes of two HLB-tolerant Poncirus genotypes and were also upregulated in HLB-tolerant,Poncirus hybrids as revealed by real-time PCR analysis.These two CDR genes seem to be good candidate genes for future studies of their role in citrus-CLas interactions.Nidhi Rawat Brajendra Kumar Ute Albrecht Dongliang Du Ming Huang Qibin Yu Yi Zhang Yong-Ping Duan Kim D Bowman Fred G Gmitter Jr Zhanao Deng 2017Horticulture Research2017,4,1:5
4Agent-oriented Aid-modeling for the Distributed Activity NetworkDENG Gui\|shi\+1,\ LI Wen\|lei\+1,\ O. Moeschlin\+2 1.Institute of Systems Engineering, Dalian University of Technology Dalian 116024, China 2.Department of Mathematics, Fern University in Hagen, D 58084 Germany 2000Systems Science and Systems Engineering2000,10,1:4
5鱼、蛋、牛奶、坚果、蔬菜和水果摄入量大,以及低盐膳食模式与高血压的患病率和控制率相关显示文摘食物对高血压患病率和控制率的影响尚不清晰。本文旨在中国人群中调查鱼、蛋、牛奶、坚果、蔬菜和水果摄入量大以及低盐膳食模式是否与高血压有关。方法:从2012年9月到2014年12月共招募15303名受试者进行病例对照研究,分为高血压组(n=1604)和正常血压组(n=13660),其中高血压组又分为血压控制亚组(n=397)和血压未控制亚组(n=1207)。收集过去1 年里每周平均鱼、蛋、牛奶、坚果、蔬菜、水果和盐摄入量数据。鱼、蛋、牛奶、坚果、蔬菜、水果和盐的平均摄入量分别为117、150、35、20、2100、300和58g/周。Yu G Fu H Huang W Zhang N Deng D Li G Lei H 2019中华高血压杂志2019,27,5:2
6The most appropriate category of metastatic lymph nodes to evaluate overall survival of gastric cancer following curative resection显示文摘Deng JY Liang H Sun D 0,,05:2
7Selective detection of aroma compontents by acoustic wave sensors coated with conducting polymers films显示文摘Deng Z P Stone D C Thompson M Analyst0,121,:2
8Treatment of landfill leachate by the Fenton process显示文摘Deng Y Englehardt J D 2006Water Research2006,40,:1
9A 2940 nm factional photothermolysis laser in the treatment of acne scarring:a pilot study in China显示文摘DENG H YUAN D YAN C 2009J Drugs Dermatol2009,8,11:1
10Modest inflammation enhances diclofenac hepatotoxicity in rats: role of neutrophils and bacterial translocation显示文摘Deng X Stachlewitz RF Liguori M J et d 2006J Pharmacol Exp Ther2006,319,3:1
11Electrical triggering of metal-insulator transition in nanoscale vanadium oxide junctions显示文摘Ruzmeto 1 D Gnpalakrisbnan G Deng J D 2009Journal of Applied Physics2009,106,08:1
12Design of amphiphilic ABC triblock copolymer for templating synthesis of large-pore ordered mesoporous carbons with tunable pore wall thickness显示文摘Zhao D Y Zhang J Y Deng Y H 2009Chem Mater2009,21,39:1
13Hypermethylation of metallothionein-3 CpG island in gastric carcinoma 显示文摘Deng D EI-Rifai W Ji J 2003Carcinogenesis2003,24,1:1
14Electrokinetic remediation of a Cu contaminated red soil by conditioning catholyte pH with different enhancing chemical reagents显示文摘Zhou D M Deng C F Cang L 2005Chemosphere2005,56,33:1
15Electrokinetic remediation of a Cu contaminated red soil by conditioning catholyte pH with different enhancing chemical reagents显示文摘Zhou D M Deng C F Cang L 2004Chemosphere2004,56,:1
16Investigations on welding residual stresses in penetration nozzles by means of 3D thermal elastic plastic FEM and experiment 显示文摘Kiyoshima S Deng D Ogawa K 2009Comput Mater Sci2009,46,:1
17Numerical simulation of tem- perature field and residual stress in multi-pass welds in stainless steel pipe and comparison with experimental measurements 显示文摘Deng D Murakawa H 2006Computational Materials Science2006,37,3:1
18Realization of high efficiency microcavity top-emitting organic light-emitting diodes with highly saturated colors and negligible angular dependence 显示文摘WANG Q DENG Z Q MA D G 2009Applied Physics Letters2009,94,23:1
19Surface morphologies and properties of pure and antimony- doped tin oxide films derived by sol-gel dip-coating processing显示文摘Zhang D L Liang T Deng Z B 2006Materials Chemistry and Physics2006,34,100:1
20Finite-differencetime-domain analysis of optical bistability with low thresholdin one-dimensional nonlinear photonic crystal with Kerrmedium显示文摘CHEN L X DENG X X DING W Q d al 2002Optics Communications >2002,209,4:1
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