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| 1 | One-step high-efficiency CRISPR/Cas9-mediated genome editing in Streptomyces显示文摘编辑技术 CRISPR 的指导 RNA 的 DNA 定期聚类 interspaced 短 palindromic repeats/Cas9 被用来介绍双 stranded 闯入染色体并且在细菌指导随后的地点特定的插入 / 删除或基因材料的代替例如 Escherichia coli,链球菌肺病,和乳杆菌 reuteri。在这研究,我们建立了在 Streptomyces 基因操作为使用编辑 plasmid pKCcas9dO 的一个高效率的 CRISPR/Cas9 染色体,它包括目标特定的指南 RNA,优化 codon 的 cas9,和二个指导相同的修理模板。由交付编辑 plasmids 进模型紧张 Streptomyces coelicolor M145 的 pKCcas9dO 系列,通过一步舞 intergeneric 转移,我们完成了与60%100%的高效率在不同层次编辑的染色体,包括单个基因删除,例如 actII-orf4 ,整顿,和 glnR ,并且单个大尺寸的基因簇删除,扮演 21.3 kb , undecylprodigiosin 红 31.6 kb ,和 Ca 2+-dependent 抗菌素例如 actinorhodin 的抗菌素 biosynthetic 簇 82.8 kb 。而且,我们也分别地与 54% 和 45% 的高效率认识到 actII-orf4 和整顿,并且 ACT 和红 biosynthetic 基因簇的同时的删除。最后,我们使用了这个系统介绍核苷酸点变化进 rpsL 基因,它与抵抗授与异种到链球菌。用这个系统,显著地,为一个轮染色体修正要求的时间被三分之一个减少或为常规方法的那些的一个一半。这些结果清楚地显示实质地编辑系统的确定的 CRISPR/Cas9 染色体改进与当前存在的方法相比编辑效率在的染色体 Streptomyces,和它在另外的放线菌种类为申请有诺言到染色体修正。 | He Huang Guosong Zheng Weihong Jiang Haifeng Hu Yinhua Lu | 2015 | Acta Biochimica et Biophysica Sinica2015,47,4: | 37 |
| 2 | Activation of the PI3K/AKT pathway mediates FSH-stimulated VEGF expression in ovarian serous cystadenocarclnoma显示文摘有证据建议那刺激滤泡的荷尔蒙(FSH ) 能由在癌症细胞增加脉管的 endothelial 生长因素(VEGF ) 表示便于卵巢的癌症的 neovascularization,尽管这个过程的内在的分子的机制不是众所周知的。因此,我们在卵巢的癌症房间线 SKOV-3 和 ES-2 在 VEGF 表示上调查了 FSH 的效果。有 FSH 的治疗显著地在一个剂量依赖者和时间依赖者举止增加了 VEGF 表示。另外, FSH 治疗提高了 survivin 和组织缺氧可诱导的 factor-1 (HIF-1 ) 的表示。survivin 或 HIF-1 击倒压制的 VEGF 表示,但是 survivin 仅仅击倒禁止的刺激 FSH 的 VEGF 表示。有 LY294002 的预告的处理,一个 phosphoinositide 3-kinase (PI3K )/AKT 禁止者,抵销 FSH,而是治疗与 U0126 导致的 survivin 的提高的表示,激活 mitogen 的蛋白质 kinase/extracellular 调整信号的 kinase 禁止者,没有如此的效果。我们进一步证明卵巢的浆液的 cystadenocarcinoma 样品有积极 AKT 和比的染色的 phosphorylated AKT (pAKT ) 蛋白质的许多更高的发生良性的卵巢的 cystadenoma 取样了(p < 0.01 ) 。5 年的幸存率仅仅在有卵巢的浆液的 cystadenocarcinoma 的病人是大约 15% 有 AKT 和 pAKT 表示,而它在没有 AKT 或 pAKT 表示的那些是大约 80% 。一起拿,这些结果显示 FSH 由 upregulating 增加 VEGF 的表示 survivin 的表示,它被发信号的 PI3K/AKT 激活小径。在 survivin 和 VEGF 的刺激 FSH 的表示理解 PI3K/AKT 小径的角色将为与卵巢的浆液的 cystadenocarcinoma 为病人评估预后并且为对这疾病追求有效治疗是有益的。 | Yan Huang Keqin Hua Xianrong Zhou Hongyan Jin Xiaojun Chen Xin Lu Yinhua Yu Xiliang Zha Youji Feng | 2008 | Cell Research2008,18,7: | 17 |
| 3 | Improvement of pristinamycin I(PI)production in Streptomyces pristinaespiralis by metabolic engineering approaches显示文摘Pristinamycin,produced by Streptomyces pristinaespiralis,which is a streptogramin-like antibiotic consisting of two chemically unrelated components:pristinamycin I(PI)and pristinamycin II(PII),shows potent activity against many antibiotic-resistant pathogens.However,so far pristinamycin production titers are still quite low,particularly those of PI.In this study,we constructed a PI single component producing strain by deleting the PII biosynthetic genes(snaE1 and snaE2).Then,two metabolic engineering approaches,including deletion of the repressor gene papR3 and chromosomal integration of an extra copy of the PI biosynthetic gene cluster(BGC),were employed to improve PI production.The final engineered strain DPIIDpapR3/PI produced a maximum PI level of 132 mg/L,with an approximately 2.4-fold higher than that of the parental strain S.pristinaespiralis HCCB10218.Considering that the PI biosynthetic genes are clustered in two main regions in the 210 kb“supercluster”containing the PI and PII biosynthetic genes as well as a cryptic polyketide BGC,these two regions were cloned separately and then were successfully assembled into the PI BGC by the transformation-associated recombination(TAR)system.Collectively,the metabolic engineering approaches employed is very efficient for strain improvement in order to enhance PI titer. | Jiali Meng Rongrong Feng Guosong Zheng Mei Ge Yvonne Mast Wolfgang Wohlleben Jufang Gao Weihong Jiang Yinhua Lu | 2017 | Synthetic and Systems Biotechnology2017,2,2: | 7 |
| 4 | Metabolic engineering of Streptomyces coelicolor for enhanced prodigiosins (RED) production显示文摘Bacterial prodigiosins are red-colored secondary metabolites with multiple activities,such as anticancer,antimalarial and immunosuppressive,which hold great potential for medical applications.In this study,dramatically enhanced prodigiosins(RED) production in Streptomyces coelicolor was achieved by combinatorial metabolic engineering,including inactivation of the repressor gene ohkA,deletion of the actinorhodin(ACT) and calcium-dependent antibiotic(CDA) biosynthetic gene clusters(BGCs) and multi-copy chromosomal integration of the RED BGC.The results showed that ohkA deletion led to a 1-fold increase of RED production over the wild-type strain M145.Then,the ACT and CDA BGCs were deleted successively based on the AohkA mutant(SBJ101).To achieve multi-copy RED BGC integration,artificial ΦC31 attB site(s) were inserted simultaneously at the position where the ACT and CDA BGCs were deleted.The resulting strains SBJ102(with a single deletion of the ACT BGC and insertion of one artificial attB site) and SBJ103(with the deletion of both BGCs and insertion of two artificial attB sites) produced 1.9-and 6-fold higher RED titers than M145,respectively.Finally,the entire RED BGC was introduced into mutants from SBJ101 to SBJ103,generating three mutants(from SBJ104 to SBJ106) with chromosomal integration of one to three copies of the RED BGC.The highest RED yield was from SBJ106,which produced a maximum level of 96.8 mg g^(-1) cell dry weight,showing a 12-fold increase relative to M145.Collectively,the metabolic engineering strategies employed in this study are very efficient for the construction of high prodigiosin-producing strains. | Panpan Liu Hong Zhu Guosong Zheng Weihong Jiang Yinhua Lu | 2017 | Science China(Life Sciences)2017,60,9: | 7 |
| 5 | Printable Zinc‑Ion Hybrid Micro‑Capacitors for Flexible Self‑Powered Integrated Units显示文摘Wearable self-powered systems integrated with energy conversion and storage devices such as solar-charging power units arouse widespread concerns in scientific and industrial realms.However,their applications are hampered by the restrictions of unbefitting size matching between integrated modules,limited tolerance to the variation of input current,reliability,and safety issues.Herein,flexible solar-charging self-powered units based on printed Zn-ion hybrid micro-capacitor as the energy storage module is developed.Unique 3D micro-/nano-architecture of the biomass kelp-carbon combined with multivalent ion(Zn2+)storage endows the aqueous Zn-ion hybrid capacitor with high specific capacity(196.7 mAh g^−1 at 0.1 A g^−1).By employing an in-plane asymmetric printing technique,the fabricated quasi-solid-state Zn-ion hybrid microcapacitors exhibit high rate,long life and energy density up to 8.2μWh cm^−2.After integrating the micro-capacitor with organic solar cells,the derived self-powered system presents outstanding energy conversion/storage efficiency(ηoverall=17.8%),solar-charging cyclic stability(95%after 100 cycles),wide current tolerance,and good mechanical flexibility.Such portable,wearable,and green integrated units offer new insights into design of advanced self-powered systems toward the goal of developing highly safe,economic,stable,and long-life smart wearable electronics. | Juan Zeng Liubing Dong Lulu Sun Wen Wang Yinhua Zhou Lu Wei Xin Guo | 2021 | Nano-Micro Letters2021,13,1: | 2 |
| 6 | Overexpression of the diguanylate cyclase CdgD blocks developmental transitions and antibiotic biosynthesis in Streptomyces coelicolor显示文摘Cyclic dimeric GMP(c-di-GMP)has emerged as the nucleotide second messenger regulating both development and antibiotic production in high-GC,Gram-positive streptomycetes.Here,a diguanylate cyclase(DGC),CdgD,encoded by SCO5345 from the model strain Streptomyces coelicolor,was functionally identified and characterized to be involved in c-di-GMP synthesis through genetic and biochemical analysis.cdgD overexpression resulted in significantly reduced production of actinorhodin and undecylprodigiosin,as well as completely blocked sporulation or aerial mycelium formation on two different solid media.In the cdgD-overexpression strain,intracellular c-di-GMP levels were 13-27-fold higher than those in the wild-type strain.In vitro enzymatic assay demonstrated that CdgD acts as a DGC,which could efficiently catalyze the synthesis of c-di-GMP from two GTP molecules.Heterologous overproduction of cdgD in two industrial Streptomyces strains could similarly impair developmental transitions as well as antibiotic biosynthesis.Collectively,our results combined with previously reported data clearly demonstrated that c-di-GMP-mediated signalling pathway plays a central and universal role in the life cycle as well as secondary metabolism in streptomycetes. | Xiaocao Liu Guosong Zheng Gang Wang Weihong Jiang Lei Li Yinhua Lu | 2019 | Science China(Life Sciences)2019,62,11: | 2 |
| 7 | Multiplex genome editing using a dCas9-cytidine deaminase fusion in Streptomyces显示文摘CRISPR/Cas-mediated genome editing has greatly facilitated the study of gene function in Streptomyces. However, it could not be efficiently employed in streptomycetes with low homologous recombination(HR) ability. Here, a deaminase-assisted base editor d Cas9-CDA-ULstr was developed in Streptomyces, which comprises the nuclease-deficient Cas9(dCas9), the cytidine deaminase from Petromyzon marinus(PmCDA1), the uracil DNA glycosylase inhibitor(UGI) and the protein degradation tag(LVA tag). Using d Cas9-CDA-ULstr , we achieved single-, double-and triple-point mutations(cytosine-to-thymine substitutions)at target sites in Streptomyces coelicolor with efficiency up to 100%, 60% and 20%, respectively. This base editor was also demonstrated to be highly efficient for base editing in the industrial strain, Streptomyces rapamycinicus, which produces the immunosuppressive agent rapamycin. Compared with base editors derived from the cytidine deaminase rAPOBEC1, the PmCDA1-assisted base editor dCas9-CDA-ULstr could edit cytosines preceded by guanosines with high efficiency, which is a great advantage for editing Streptomyces genomes(with high GC content). Collectively, the base editor dCas9-CDA-ULstr could be employed for efficient multiplex genome editing in Streptomyces. Since the d Cas9-CDA-ULstr -based genome editing is independent of HR-mediated DNA repair, we believe this technology will greatly facilitate functional genome research and metabolic engineering in Streptomyces strains with weak HR ability. | Yawei Zhao Jinzhong Tian Guosong Zheng Jun Chen Chuanwen Sun Zhongyi Yang Andrei A.Zimin Weihong Jiang Zixin Deng Zhijun Wang Yinhua Lu | 2020 | Science China(Life Sciences)2020,63,7: | 2 |
| 8 | Leaf Area Measurement Based on Image Processing 显示文摘 | Chaohui Lu Hui Ren Yinhua Shen | 2010 | IEEE2010,14,: | 1 |
| 9 | Low-temperature CO oxidation of gold catalysts loaded on mesoporous TiO2 whisker derived from potassium dititanate 显示文摘 | Zhu Yinhua Li Wei Zhou Yaxin Lu Xiaohua Feng Xin Yang Zhuhong | 2009 | Catalysis Letters2009,127,34: | 1 |
| 10 | Separation of lysozyme from chicken egg white using ultrafiltration显示文摘 | WAN Yinhua LU Junren CUI Zhanfeng | 2006 | Separation and Purification Technology2006,48,2: | 1 |
| 11 | Leaf area meas- urement based on image processing 显示文摘 | Chaohui Lu Hui Ren Yinhua Shen | 2010 | IEEE2010,14,: | 1 |
| 12 | Effective treatment of SARS-CoV-2-infected rhesus macaques by attenuating inflammation显示文摘Dear Editor,The COVID-19 pandemic caused by the SARS-CoV-2 virus has caused a significant public health crisis worldwide.Recent studies show that excessive inflammatory response is critical for SARS-CoV-2 pathogenesis and COVID-19 severity,'which can lead to acute lung injury(ALI)and acute respiratory distress syndrome(ARDS).2 One major factor for acute inflammation in SARS-CoV-2 infection is the inflammatory macrophages,which has been considered important for the production of large amounts of proinflammatory cytokines.'Autopsy identifhed an intense infltra-tion of macrophages in the lung tissues of fatal COVID-19 patients. | Shuaiyao Lu Jingjing Zhao Jiebin Dong Hongqi Liu Yinhua Zhu Honggang Li Liping Liu Yun Yang Shicheng Sun Yifan Song Yuan Zhao Ruiping She Tuoping Luo Hongkui Deng Xiaozhong Peng | 2021 | Cell Research2021,31,2: | 1 |
| 13 | Identification of two‐component system AfsQ1/Q2 regulon and its cross‐regulation with GlnR in S treptomyces coelicolor显示文摘 | Rui Wang Yvonne Mast Jin Wang Weiwen Zhang Guoping Zhao Wolfgang Wohlleben Yinhua Lu Weihong Jiang | 2012 | Molecular Microbiology2012,,1: | 1 |
| 14 | Separation of lysozyme from chicken egg white using ultrafiltration显示文摘 | Wan Yinhua Lu Junren Cui Zhanfeng | 2006 | Separationand Purification Technology2006,48,2: | 1 |
| 15 | Strategy to separate lysozyme and ovalbumin from CEW using UF显示文摘 | Lu Junren Wan Yinhua Cui Zhanfeng | 2006 | Desalination2006,200,13: | 1 |
| 16 | STUDY OF DIELECTRIC PROPERTIES OF HUMANRED BLOOD CELL SUSPENSION FROM 243HEALTHY PERSONS AT RADIO FREQUENCIES显示文摘STUDYOFDIELECTRICPROPERTIESOFHUMANREDBLOODCELLSUSPENSIONFROM243HEALTHYPERSONSATRADIOFREQUENCIESLuYongjun,YuJue,RenYinhua(Dept... | Lu Yongjun,Yu Jue,Ren Yinhua(Dept. BME, Institute of Basic Medical Sciences, Beijing, 100005,China)Zhang Zhixin,Sun Yanmei,Zhi Hong,Yuan Qinzhen(Blood Center of Beijing Red Cross Society,Beijing, 100086,China) | 1994 | Chinese Journal of Biomedical Engineering(English Edition)1994,3,1: | 0 |
| 17 | Prelithiation design for suppressing delamination in lithium-ion battery electrodes显示文摘Prelithiation has been intensively investigated in high-capacity lithiumion batteries(LIBs).However,the optimization of prelithiation degrees for long service life of LIBs still remains a challenge.The positive effect of prelithiation on suppressing degradation of LIBs,besides directly pursuing the high first Coulomb efficiency which has been widely reported in the literature,is revealed and discussed based on an analytical model focusing on the interfacial delamination in electrodes.For full charge-discharge cycling,well-designed prelithiation can effectively suppress the delamination and reduce the debonding size by approximately 25%,compared with the case without prelithiation.For the strategy combining partial charge-discharge cycling and prelithiation,the largest reversible capacity without debonding can be significantly improved by approximately100%with well-designed prelithiation.This work is expected to provide a prelithiation design principle and further improve the mechanical stability of LIB electrodes. | Yifei QIAN Bo LU Yinhua BAO Yanfei ZHAO Yicheng SONG Junqian ZHANG | 2021 | Applied Mathematics and Mechanics(English Edition)2021,42,12: | 0 |
| 18 | Elevated Kir2.1/nuclear N2ICD defines a highly malignant subtype of non-WNT/SHH medulloblastomas显示文摘Medulloblastoma(MB)is one of the most common childhood malignant brain tumors(WHO grade IV),traditionally divided into WNT,SHH,Group 3,and Group 4 subgroups based on the transcription profiles,somatic DNA alterations,and clinical outcomes.Unlike WNT and SHH subgroup MBs,Group 3 and Group 4 MBs have similar transcriptomes and lack clearly specific drivers and targeted therapeutic options.The recently revised WHO Classification of CNS Tumors has assigned Group 3 and 4 to a provisional non-WNT/SHH entity.In the present study,we demonstrate that Kir2.1,an inwardly-rectifying potassium channel,is highly expressed in non-WNT/SHH MBs,which promotes tumor cell invasion and metastasis by recruiting Adam10 to enhance S2 cleavage of Notch2 thereby activating the Notch2 signaling pathway.Disruption of the Notch2 pathway markedly inhibited the growth and metastasis of Kir2.1-overexpressing MB cell-derived xenograft tumors in mice.Moreover,Kir2.1^(high)/nuclear N2ICD^(high)MBs are associated with the significantly shorter lifespan of the patients.Thus,Kir2.1^(high)/nuclear N2ICD^(high)can be used as a biomarker to define a novel subtype of non-WNT/SHH MBs.Our findings are important for the modification of treatment regimens and the development of novel-targeted therapies for non-WNT/SHH MBs. | Yan-Xia Wang Haibo Wu Yong Ren Shengqing Lv Chengdong Ji Dongfang Xiang Mengsi Zhang Huimin Lu Wenjuan Fu Qing Liu Zexuan Yan Qinghua Ma Jingya Miao Ruili Cai Xi Lan Bin Wu Wenying Wang Yinhua Liu Dai-Zhong Wang Mianfu Cao Zhicheng He Yu Shi Yifang Ping Xiaohong Yao Xia Zhang Peng Zhang Ji Ming Wang Yan Wang Youhong Cui Xiu-Wu Bian | 2022 | Signal Transduction and Targeted Therapy2022,7,4: | 0 |
| 19 | Advances in the Application of Perovskite Materials显示文摘Nowadays, the soar of photovoltaic performance of perovskite solar cells has set off a fever in the study of metal halide perovskite materials. The excellent optoelectronic properties and defect tolerance feature allow metal halide perovskite to be employed in a wide variety of applications. This article provides a holistic review over the current progress and future prospects of metal halide perovskite materials in representative promising applications, including traditional optoelectronic devices(solar cells, light-emitting diodes, photodetectors, lasers), and cutting-edge technologies in terms of neuromorphic devices(artificial synapses and memristors) and pressure-induced emission. This review highlights the fundamentals, the current progress and the remaining challenges for each application, aiming to provide a comprehensive overview of the development status and a navigation of future research for metal halide perovskite materials and devices. | Lixiu Zhang Luyao Mei Kaiyang Wang Yinhua Lv Shuai Zhang Yaxiao Lian Xiaoke Liu Zhiwei Ma Guanjun Xiao Qiang Liu Shuaibo Zhai Shengli Zhang Gengling Liu Ligang Yuan Bingbing Guo Ziming Chen Keyu Wei Aqiang Liu Shizhong Yue Guangda Niu Xiyan Pan Jie Sun Yong Hua Wu‑Qiang Wu Dawei Di Baodan Zhao Jianjun Tian Zhijie Wang Yang Yang Liang Chu Mingjian Yuan Haibo Zeng Hin‑Lap Yip Keyou Yan Wentao Xu Lu Zhu Wenhua Zhang Guichuan Xing Feng Gao Liming Ding | 2023 | Nano-Micro Letters2023,15,10: | 0 |
| 20 | Microstructure and mechanical properties of the SiC/Zr4 joints brazed with TiZrNiCu filler for nuclear application显示文摘Si C ceramic has been successfully joined to Zr4 alloy using Ti Zr Ni Cu filler within the temperature range1173 K–1263 K and 15 min holding time. The morphology of the Si C/Zr4 joints was investigated by SEM, and the phases in the joints were characterized by XRD and TEM. The results indicated that part of the Zr4 substrate dissolved into the molten filler during the brazing process, contributed to the increasing Zr content and the formation of Zr[Ti] solid solution in the joints. In addition, β-Ti phase was discovered in the brazing seam. This might be attributed to the existence of β-Ti stable elements, Cu and Ni. The interface characterization showed that Si C reacted with filler alloy during the brazing process, formed a(Zr, Ti)C reaction layer on Si C surface and Zr2 Si compound near Si C substrate. Finally, the mechanical properties of the joints, evaluated by a shear strength test, reached a maximum of 95 MPa at the brazing temperature of 1203 K. | Qin Qia Jie Zhang Chengjie Lu Qiang Zhang Yinhua Xuan Mingxu Liu | 2018 | Progress in Natural Science:Materials International2018,28,3: | 0 |