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| 1 | CRISPR/Cas9-mediated gene editing in human tripronuclear zygotes显示文摘染色体编辑工具例如定期聚类短 palindromic 重复(CRISPR ) 联系了的 interspaced 系统(Cas ) 广泛地被用来包括动物接合子和人的房间在模型系统修改基因,并且为基本研究和临床的应用保持巨大的诺言。迄今为止,严肃的知识差距在人的早胚胎,并且在效率和在人的培植前胚胎使用象 CRISPR/Cas9 那样的技术的潜在的离开目标效果留在我们 DNA 修理机制的理解。在这份报告,我们使用了推进的接合子调查 CRISPR/Cas9-mediated 基因在人的房间编辑的 tripronuclear (3PN ) 。我们发现 CRISPR/Cas9 能有效地劈开内长的 -globin 基因(HBB ) 。然而,相应再结合的效率指导了 HBB 的修理(HDR ) 是低的,编辑胚胎是马赛克。离开目标劈开在由 T7E1 试金并且 whole-exome 定序揭示了的这些 3PN 接合子也是明显的。而且,内长的 delta-globin 基因(HBD ) 对 HBB 相应,与外长的施主 oligos 竞争了充当修理模板,导致倔强的变化。我们的数据也显示在这些胚胎的 HBB 地点的修理通过非转线路 HDR 小径优先地发生了。一起拿,我们的工作加亮紧迫的需要进一步改进 CRISPR/Cas9 平台的忠实和特性,为编辑的 CRSIPR/Cas9-mediated 的任何临床的应用程序的一个前提。 | Puping Liang Yanwen Xu Xiya Zhang Chenhui Ding Rui Huang Zhen Zhang Jie Lv Xiaowei Xie Yuxi Chen Yujing Li Ying Sun Yaofu Bai Zhou Songyang Wenbin Ma Canquan Zhou Junjiu Huang | 2015 | Protein & Cell2015,6,5: | 149 |
| 2 | AXL is a candidate receptor for SARS-CoV-2 that promotes infection of pulmonary and bronchial epithelial cells显示文摘The current coronavirus disease 2019(COVID-19)pandemic presents a global public health challenge.The viral pathogen responsible,severe acute respiratory syndrome coronavirus 2(SARS-CoV-2),binds to the host receptor ACE2 through its spike(S)glycoprotein,which mediates membrane fusion and viral entry.Although the role of ACE2 as a receptor for SARS-CoV-2 is clear,studies have shown that ACE2 expression is extremely low in various human tissues,especially in the respiratory tract.Thus,other host receptors and/or co-receptors that promote the entry of SARS-CoV-2 into cells of the respiratory system may exist.In this study,we found that the tyrosine-protein kinase receptor UFO(AXL)specifically interacts with the N-terminal domain of SARS-CoV-2 S.Using both a SARS-CoV-2 virus pseudotype and authentic SARS-CoV-2,we found that overexpression of AXL in HEK293T cells promotes SARS-CoV-2 entry as efficiently as overexpression of ACE2,while knocking out AXL significantly reduces SARS-CoV-2 infection in HI 299 pulmonary cells and in human primary lung epithelial cells.Soluble human recombinant AXL blocks SARS-CoV-2 infection in cells expressing high levels of AXL.The AXL expression level is well correlated with SARS-CoV-2 S level in bronchoalveolar lavage fluid cells from COVID-19 patients.Taken together,our findings suggest that AXL is a novel candidate receptor for SARS-CoV-2 which may play an important role in promoting viral infection of the human respiratory system and indicate that it is a potential target for future clinical intervention strategies. | Shuai Wang Zongyang Qiu Yingnan Hou Xiya Deng Wei Xu Tingting Zheng Peihan Wu Shaofang Xie Weixiang Bian Chong Zhang Zewei Sun Kunpeng Liu Chao Shan Aifu Lin Shibo Jiang Youhua Xie Qiang Zhou Lu Lu Jing Huang Xu Li | 2021 | Cell Research2021,31,2: | 39 |
| 3 | Correction of β-thalassemia mutant by base editor in human embryos显示文摘 | Puping Liang Chenhui Ding Hongwei Sun Xiaowei Xie Yanwen Xu Xiya Zhang Ying Sun Yuanyan Xiong Wenbin Ma Yongxiang Liu Yali Wang Jianpei Fang Dan Liu Zhou Songyang Canquan Zhou Junjiu Huang | 2017 | Protein & Cell2017,8,11: | 34 |
| 4 | Effective gene editing by high-fidelity base editor 2 in mouse zygotes显示文摘通过相应再结合的指向的点 mutagenesis 广泛地在基因研究被使用了并且为在病人修理引起疾病的变化保持可观的诺言。然而,象 mosaicism 那样的问题和低 mutagenesis 效率继续提出挑战到如此的途径的临床的申请。最近,一个基础编辑器() 在 cytidine (C) 脱氨基酶上造的系统和 CRISPR/Cas9 技术在植物,酵母,和人的房间为指向的点 mutagenesis 作为一个其他的方法被开发。然而,基础编辑器高效地在 deamination 窗口中把 C 变换成 thymidine (T) 是否指向了在鼠标胚胎的基础编辑,仍然保持不清楚是可行的。在这份报告,我们产生了基础编辑的一个修改高保真版本 2 (HF2-BE2 ) ,并且调查了它在老鼠胚胎编辑功效的底。我们发现 HF2-BE2 能高效地把 C 变换成 T,与直到在老鼠胚胎的 100% biallelic 变化效率。不同于 BE3, HF2-BE2 能在目标和非目标海滨上把 C 变换成 T,扩展基础编辑器的编辑范围。令人惊讶地,我们发现 HF2-BE2 能也使脱去氨基对 gRNA 有约束力的区域近似的 C。一起拿,我们的工作表明由基础编辑,和下划线在鼠标产生点变化的可行性小心地优化编辑系统以便消除近似地点的 deamination 的底的需要。 | Puping Liang Hongwei Sun Ying Sun Xiya Zhang Xiaowei Xie Jinran Zhang zhen Zhang Yuxi Chen Chenhui Ding Yuanyan Xiong Wenbin Ma Dan Liu Junjiu Huang Zhou Songyang | 2017 | Protein & Cell2017,8,8: | 17 |
| 5 | Pluripotency transcription factors and cancer stem cells:small genes make a big difference显示文摘Cancer stem cells(CSCs)are thought to drive uncontrolled tumor growth,and the existence of CSCs has recently been proven by direct experimental evidence,including tracing cell lineages within a growing tumor.However,CSCs must be analyzed in additional cancer types.Cancer stem cell-like cells(CSCLCs)are a good alternative system for the study of CSCs,which hold great promise for clinical applications.OCT4,NANOG,and SOX2 are three basic transcription factors that are expressed in both CSCLCs and embryonic stem cells(ESCs).These transcription factors play critical roles in maintaining the pluripotence and self-renewal characteristics of CSCLCs and ESCs.In this review,we discuss the aberrant expression,isoforms,and pseudogenes of OCT4,NANOG,and SOX2 in the CSCLC niche,which contribute to the major differences between CSCLCs and ESCs.We also highlight an anticancer therapy that involves killing specific cancer cells directly by repressing the expression of OCT4,NANOG,or SOX2.Importantly,OCT4,NANOG,and SOX2 provide great promise for clinical applications because reducing their expression or blocking the pathways in which they function may inhibit tumor growth and turn-off the cancer'switch.'In the future,a clear understanding of transcription factor regulation will be essential for elucidating the roles of OCT4,NANOG,and SOX2 in tumorigenesis,as well as exploring their use for diagnostic and therapeutic purposes. | Anfei Liu Xiya Yu Shanrong Liu | 2013 | Chinese Journal of Cancer2013,32,9: | 12 |
| 6 | m6A RNA modification controls autophagy through upregulating ULK1 protein abundance显示文摘 | Shouheng Jin Xiya Zhang Yanyan Miao Puping Liang Kaiyu Zhu Yuanchu She Yaoxing Wu Di-Ao Liu Junjiu Huang Jian Ren Jun Cui | 2018 | Cell Research2018,28,9: | 12 |
| 7 | Hot compression deformation behavior of the Mg-Al-Y-Zn magnesium alloy显示文摘Mg-Al-Y- Zn 镁合金的热变丑行为被在从 523 ~ 673 K ,紧张率从 0.001 ~ 1 s 变化的温度的在一个 Gleeble-1500 热模拟器上的热压缩测试调查 ? 1。在流动应力,紧张率,和变丑温度之中的关系被分析,并且变丑激活精力和压力代表是计算的。在不同条件下面的合金的微观结构进化被检验。结果显示流动压力的最大的价值与变丑温度的减少或紧张率的增加增加了。在现在的变丑条件下面,动态再结晶(DRX ) 发生在合金,它在在提高的温度的变丑期间是主要弄软机制。变丑温度和紧张在合金的微观结构上有重要效果。 | FANG Xiya YI Danqing WANG Bin WU Chunping ZHANG Hong | 2008 | Rare Metals2008,27,2: | 10 |
| 8 | Use of acupuncture to treat cerebral infarction in the last 10 years A Scopus-based literature analysis显示文摘OBJECTIVE: To identify global research trends in the use of acupuncture to treat cerebral infarction. DATA RETRIEVAL: We performed a bibliometric analysis of studies on the use of acupuncture to treat cerebral infarction published during 2002-2011, retrieved from Scopus, using the Key Words of acupuncture and cerebral infarction or ischemic stroke. SELECTION CRITERIA: Inclusion criteria: peer-reviewed articles on the use of acupuncture to treat cerebral infarction indexed in Scopus and published between 2002 and 2011; types of publications were original research articles, reviews, meeting abstracts, proceedings papers, book chapters, editorial material, and news items. Exclusion criteria: articles that required manual searching or telephone access; documents that were not published in the public domain; and corrected papers. MAIN OUTCOME MEASURES: (a) Annual publication output; (b) language of publication; (c) type of publication; (d) key words of publication; (e) publication by research field; (f) publication by journal; (g) publication by country and institution; (h) publication by author; (i) most-cited papers between 2002 and 2006; and (j) most-cited papers between 2007 and 2011. RESULTS: A total of 160 publications on the use of acupuncture to treat cerebral infarction from 2002-2011 were retrieved from Scopus. The number of publications increased gradually over the 10-year study period; most were written in Chinese or English. Articles and reviews constituted the major types. The most frequent key word used was acupuncture. The most prolific journals in this area were Zhongguo Zhen Jiu and the Chinese Journal of Clinical Rehabilitation. Of the 160 publications retrieved, half came from Chinese authors and institutions. Tianjin University of Traditional Chinese Medicine was the most prolific research institute. Two papers were cited 30 times; they were published in 2002 and 2009, respectively. CONCLUSION: In the field of neuroscience, there is little literature on acupuncture for cerebral infarction. The most-cited papers were cited 30 times in the past 3 years. We believe that, with advances in the study of mechanisms in neurobiology, research on acupuncture will also advance and will become the concern of more scholars. | Jiajun Chen Min Yao Yunhua Zhao Xiya Jin Yuanbing Li Lihong Huang | 2012 | Neural Regeneration Research2012,7,36: | 7 |
| 9 | First light of the 1.8-m solar telescope–CLST显示文摘Large-aperture solar telescopes play an important role in solar observations and research,and require high temporal and spatial resolution[1].To solve some fundamental problems such as the solar dynamo,coronal heating,and the triggering of major solar eruptions,the spatial resolution for solar-atmosphere observation should reach at least 0.1 arcsec[2]. | ChangHui Rao NaiTing Gu XueJun Rao Cheng Li LanQiang Zhang JinLong Huang Lin Kong Ming Zhang YunTao Cheng Yi Pu Hua Bao YouMing Guo YangYi Liu JinSheng Yang LiBo Zhong ChangJun Wang Kai Fang XiaoJun Zhang DongHong Chen Cheng Wang XinLong Fan ZhiWu Yan KeLe Chen XiYa Wei Lei Zhu Hong Liu YongJian Wan Hao Xian WenLi Ma | 2020 | Science China(Physics,Mechanics & Astronomy)2020,63,10: | 6 |
| 10 | Effective and precise adenine base editing n mouse zygotes显示文摘 | Puping Liang Hongwei Sun Xiya Zhang Xiaowei Xie Jinran Zhang Yaofu Bai Xueling Ouyang Shengyao Zhi Yuanyan Xiong Wenbin Ma Dan Liu Junjiu Huang Zhou Songyang | 2018 | Protein & Cell2018,9,9: | 4 |
| 11 | Autophagy and beyond:Unraveling the complexity of UNC-51-like kinase 1(ULK1)from biological functions to therapeutic implications显示文摘UNC-51-like kinase 1(ULK1),as a serine/threonine kinase,is an autophagic initiator in mammals and a homologous protein of autophagy related protein(Atg)1 in yeast and of UNC-51 in Caenorhabditis elegans.ULK1 is well-known for autophagy activation,which is evolutionarily conserved in protein transport and indispensable to maintain cell homeostasis.As the direct target of energy and nutrition-sensing kinase,ULK1 may contribute to the distribution and utilization of cellular resources in response to metabolism and is closely associated with multiple pathophysiological processes.Moreover,ULK1 has been widely reported to play a crucial role in human diseases,including cancer,neurodegenerative diseases,cardiovascular disease,and infections,and subsequently targeted small-molecule inhibitors or activators are also demonstrated.Interestingly,the non-autophagy function of ULK1 has been emerging,indicating that non-autophagy-relevant ULK1 signaling network is also linked with diseases under some specific contexts.Therefore,in this review,we summarized the structure and functions of ULK1 as an autophagic initiator,with a focus on some new approaches,and further elucidated the key roles of ULK1 in autophagy and non-autophagy.Additionally,we also discussed the relationships between ULK1 and human diseases,as well as illustrated a rapid progress for better understanding of the discovery of more candidate small-molecule drugs targeting ULK1,which will provide a clue on novel ULK1-targeted therapeutics in the future. | Ling Zou Minru Liao Yongqi Zhen Shiou Zhu Xiya Chen Jin Zhang Yue Hao Bo Liu | 2022 | Acta Pharmaceutica Sinica B2022,12,10: | 3 |
| 12 | Homology-based repair induced by CRISPR-Cas nucleases in mammalian embryo genome editing显示文摘Recent advances in genome editing,especially CRISPR-Cas nucleases,have revolutionized both laboratory research and clinical therapeutics.CRISPR-Cas nucleases,together with the DNA damage repair pathway in cells,enable both genetic diversification by classical non-homologous end joining(c-NHEJ)and precise genome modification by homology-based repair(HBR).Genome editing in zygotes is a convenient way to edit the germline,paving the way for animal disease model generation,as well as human embryo genome editing therapy for some life-threatening and incurable diseases.HBR efficiency is highly dependent on the DNA donor that is utilized as a repair template.Here,we review recent progress in improving CRISPR-Cas nuclease-induced HBR in mammalian embryos by designing a suitable DNA donor.Moreover,we want to provide a guide for producing animal disease models and correcting genetic mutations through CRISPR-Cas nuclease-induced HBR in mammalian embryos.Finally,we discuss recent developments in precise genome-modification technology based on the CRISPR-Cas system. | Xiya Zhang Tao Li Jianping Ou Junjiu Huang Puping Liang | 2022 | Protein & Cell2022,13,5: | 3 |
| 13 | Structural characterization and comparative analysis of the chloroplast genome of Ginkgo biloba and other gymnosperms显示文摘Ginkgo biloba is a famous living“fossil”and has played an important role in the evolution of the Plant Kingdom.Here,the complete chloroplast genome of G.biloba was sequenced and analysed.The chloroplast genome was 156,990 bp long and predicted to encode 134 genes including 85 protein-coding genes,41 tRNA genes and 8 rRNA genes.The chloroplast genome has a typical quadripartite structure with a pair of inverted repeat regions(IRa and IRb,17,732 bp),a large(LSC,99,259 bp)and small single(SSC,22,267 bp)copy region.After an extensive comparison to previously published gymnosperm plastomes,the gene content and organisation of G.biloba showed high divergence,although part was relatively conserved.The two typical IR regions in the G.biloba chloroplast genome were relatively shorter because it the ycf2 gene.In addition,it was obvious that the IR regions and gene loss were responsible for changes in chloroplast genome size and structure stability,which influenced plastome evolution in different gymnosperms.Phylogenetic analysis revealed that G.biloba is sister to cycads rather than to gnetophytes,cupressophytes,and Pinaceae.Overall,the study showed that the genomic characteristics of G.biloba would be of great help in the further research on the taxonomy,species identification and evolutionary history of gymnosperms,especially for their position in plant systematics and evolution. | Xiaoming Yang Tingting Zhou Xiya Su Guibin Wang Xuhui Zhang Qirong Guo Fuliang Cao | 2021 | Journal of Forestry Research2021,32,2: | 2 |
| 14 | Fabrication, adsorption and photocatalytic properties of ZnTi0.6Fe1.4O4/Carbon nanotubes composites显示文摘ZnTi_xFe_(2–x)O_4 and ZnTi_(0.6)Fe_(1.4)O_4/Carbon nanotubes(ZT_(0.6)F_(1.4)/CNTs) composites were prepared by chemical co-precipitation method. The composition, microstructure, magnetic property, adsorption and photocatalytic activity of the prepared samples were characterized by means of modern analytical techniques. The results indicated that ZT_(0.6)F_(1.4)/CNTs composites not only held the original special structure and excellent adsorption properties of CNTs, but also had suitable magnetic property and excellent photocatalytic activity. The removal rate of the samples on Rhodamine B(RhB) depended on the adsorption of CNTs and the photocatalytic degradation of ZT_(0.6)F_(1.4) in the composites. The maximum adsorption amount(q_m) of ZT_(0.6)F_(1.4)/CNTs with the mass ratios of ZT_(0.6)F_(1.4) to CNTs(mZ/C)=1 was up to 17.153 mg g^(–1) for RhB, its adsorption behavior was in accord with Langmuir model, and its photocatalytic degradation activity on RhB had a positive correlation with the content of ZT_(0.6)F_(1.4) in the sample. The experimental results indicate that the total removal rate of composite with mZ/C=1 on RhB was more than 95% and the composite had good decontamination capability on industrial dye wastewater. In addition, the samples can be recovered conveniently, activated easily and had good performance for recycling. | Jiantao Feng Yanhui Hou Yechen Wang Xiya Wang Haifeng Chen Liangchao Li | 2016 | Science China Chemistry2016,59,8: | 2 |
| 15 | Design Method of Curved-bar Refining Plates for Disc Refiner显示文摘Straight-and curved-bar refining plates are two important types of plates commonly used in disc refiners in the papermaking industry.Theoretically,the curved-bar refining plate has a relatively uniform bar interaction angle,which indicates uniform refining effects.The bar angle of the curved bar was proposed and two typical curved-bar plates,the three-stage radial curved-bar plate and isometric curved-bar plate,were designed in this paper.The arc equations of the curved-bar center line and curved-bar edges were established and finally,the specific edge load(SEL)of the curved-bar plate was derived.The determination of bar parameters was discussed,which provides a theoretical basis for the design of curved-bar plates. | Huan Liu JiXian Dong XiYa Guo RuiFan Yang Hui Jing XiaoJun Jiang | 2019 | Paper And Biomaterials2019,4,1: | 2 |
| 16 | Vacancy manipulating of molybdenum carbide MXenes to enhance Faraday reaction for high performance lithium-ion batteries显示文摘“Intrinsic”strategies for manipulating the local electronic structure and coordination environment of defect-regulated materials can optimize electrochemical storage performance.Nevertheless,the structure–activity relationship between defects and charge storage is ambiguous,which may be revealed by constructing highly ordered vacancy structures.Herein,we demonstrate molybdenum carbide MXene nanosheets with customized in-plane chemical ordered vacancies(Mo_(1.33)CT_(x)),by utilizing selective etching strategies.Synchrotron-based X-ray characterizations reveal that Mo atoms in Mo1.33CTx show increased average valence of+4.44 compared with the control Mo_(2)CT_(x).Benefited from the introduced atomic active sites and high valence of Mo,Mo_(1.33)CT_(x)achieves an outstanding capacity of 603 mAh·g^(−1)at 0.2 A·g^(−1),superior to most original MXenes.Li+storage kinetics analysis and density functional theory(DFT)simulations show that this optimized performance ensues from the more charge compensation during charge–discharge process,which enhances Faraday reaction compared with pure Mo_(2)CT_(x).This vacancy manipulation provides an efficient way to realize MXene’s potential as promising electrodes. | Xin Guo Changda Wang Wenjie Wang Quan Zhou Wenjie Xu Pengjun Zhang Shiqiang Wei Yuyang Cao Kefu Zhu Zhanfeng Liu Xiya Yang Yixiu Wang Xiaojun Wu Li Song Shuangming Chen Xiaosong Liu | 2022 | Nano Research Energy2022,1,3: | 2 |
| 17 | MicroRNA-135a contributes to the development of portal vein tumor thrombus by promoting metastasis in hepatocellular carcinoma显示文摘 | Shupeng Liu Weixing Guo Jie Shi Nan Li Xiya Yu Jie Xue Xiaohui Fu Kaijian Chu Chongde Lu Jiangsha Zhao Dong Xie Mengchao Wu Shuqun Cheng Shanrong Liu | 2011 | Journal of Hepatology2011,,2: | 2 |
| 18 | Expression of Intercellular Adhesion Molecule 1 by Hepatocellular Carcinoma Stem Cells and Circulating Tumor Cells显示文摘 | Shupeng Liu Nan Li Xiya Yu Xiao Xiao Kai Cheng Jingjing Hu Jiaqi Wang Dandan Zhang Shuqun Cheng Shanrong Liu | 2013 | Gastroenterology2013,,5: | 2 |
| 19 | Superhydrophobic and oleophilie calcium carbonate powder as a selective oil sorbent with potential use in oil spill clean-ups 显示文摘 | Tina Arbatan Xiya Fang Wei Shen | 2011 | Chemical Engineering Journal2011,166,2: | 1 |
| 20 | Tri-functionalized TiOxCl4-2x accessory layer to boost efficiency of hole-free, all-inorganic perovskite solar cells显示文摘Tin dioxide(SnO2) is generally regarded as a promising electron-transporting layer(ETL) for state-of-theart perovskite solar cells(PSCs), however, the ubiquitous oxygen-vacancy-related defects at SnO2 surface and the large energy difference between conduction band of SnO2 and perovskite layer undoubtedly cause severe charge carrier recombination, resulting in sluggish charge extraction efficiency and non-negligible open-circuit voltage(Voc) loss. Herein, a chlorine-containing TiOxCl4-2x accessory layer is fabricated by immersing SnO2 layer into the TiCl4 aqueous solution to passivate the surface oxygen-vacancy-related defects of SnO2 layer and to set an intermediate energy level at ETL/perovskite interface in all-inorganic cesium lead tri-bromine(CsPbBr3) PSCs. Furthermore, the TiOxCl4-2x layer also improves the infiltration of SnO2 layer surface toward perovskite precursor for high-quality perovskite film. Finally, the hole-free, allinorganic CsPbBr3PSC with a structure of FTO/SnO2/TiOxCl4-2x/Cs0.91Rb0.09PbBr3/carbon achieves a champion efficiency of 10.44% with a Vocas high as 1.629 V in comparison to 8.31% for control device. Moreover, the optimized solar cell presents good stability in 80% humidity in air. | Qingwei Zhou Jialong Duan Yudi Wang Xiya Yang Qunwei Tang | 2020 | Journal of Energy Chemistry2020,29,11: | 1 |