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| 1 | Structural insights of phosphorylated into the recognition FUNDC1 by LC3B in mitophagy显示文摘 | Mengqi Lv Chongyuan Wang Fudong Li Junhui Peng Bin Wen Qingguo Gong Yunyu Shi Yajun-Tang | 2017 | Protein & Cell2017,8,1: | 21 |
| 2 | Mitosis-specific acetylation tunes Ran effector binding for chromosome segregation显示文摘在房间期间,分割要求忠诚有丝分裂的锭子汇编和染色体分离的基因信息的稳定的传播。运用了 GTPase 戏在有丝分裂的锭子汇编的一个关键角色。然而,在锭子的 Ran-GTP 的一个化学坡度的产生怎么被联合到有丝分裂的 translational 以后修正,从来没被描绘过。这里,我们解决了复杂结构与核苷酸版本因素 Mog1 跑了并且描出一个新奇有丝分裂特定的调整 acetylation 的 Ran-Mog1 相互作用在染色体分离期间。我们的指导结构的功能的分析表明那 Mog1 与 RCC1 竞争为以一种 GTP/GDP-dependent 方式变有约束力。生物化学的描述表明了那 Mog1 固定跑阻止 RCC1 有约束力、随后的 GTP 装载。令人惊讶地,跑了是 TIP60 的真正的底层,并且由 TIP60 的 Lys134 的 acetylation 解放 Mog1 从在有丝分裂期间变有约束力。重要地,这个得到 acetylation 的开关对 RCC1 变有约束力支持 Ran-GTP 的高水平,它为染色体排列是必要的。这些结果建立一以前 TIP60 由调节在提供 Ran-GTP 水平的 homeostatic 控制的规章的机制运用了的 uncharacterized 为在有丝分裂的染色体分离的受动器绑定。 | Xiaoling Bao Heng Liu Xing Liu Ke Ruan Yonshui Zhang Zhiyong Zhang Qi Hu Ying Liu Saima Akram Jiahai Zhang Qingguo Gong Wenwen wang Xiao Yuan Jian-Li Lingli Zhao Zhen Dou Ruijun Tian Xuebiao Yao Jihui Wu Yunyu Shi | 2018 | Journal of Molecular Cell Biology2018,10,1: | 8 |
| 3 | Towards suppressing dielectric loss of GO/PVDF nanocomposites with TA-Fe coordination complexes as an interface layer显示文摘In this work, graphene oxide(GO) nanosheets with surface modification by Tannic and Fe coordination complexes(TA-Fe) were incorporated into poly(vinylidene fluoride)(PVDF) to prepare high constant but low loss polymer nanocomposites, and the effect of TA-Fe interlayer on dielectric properties of the GO@TA-Fe/PVDF nanocomposites was investigated. The results indicate that the dosage, mixing ratio, and reaction time of TA-Fe complexes have obvious influences on the dielectric properties of the nanocomposites. Furthermore, the TA-Fe interlayer significantly influences the electrical properties of GO@TA-Fe nanoparticles and their PVDF composites, and the GO@TA-Fe/PVDF composites exhibit superior dielectric properties compared with raw GO/PVDF. Dielectric losses of the GO@TA-Fe/PVDF are significantly suppressed to a rather low level owing to the presence of TA-Fe layer, which serves as an interlayer between the GO sheets, thus preventing them from direct contacting with each other. Additionally, the dynamic dielectric relaxation of the GO/PVDF and GO@TA-Fe/PVDF nanocomposites was investigated in terms of temperature. | Ying Gong Wenying Zhou Zijun Wang Li Xu Yujia Kou Huiwu Cai Xiangrong Liu Qingguo Chen Zhi-Min Dang | 2018 | Journal of Materials Science & Technology2018,34,12: | 2 |
| 4 | Removal efficiency of heavy oil by free and immobilised microorganisms on laboratory‐scale显示文摘 | Mutai Bao Qingguo Chen Yuanjiao Gong Yiming Li Haifeng Wang Guancheng Jiang | 2011 | Can. J. Chem. Eng2011,,1: | 1 |
| 5 | Highly fluorescent TPA-PBPV nanofibers with amplified sensory response to TNT 显示文摘 | Deng Changmin Gong Pei He Qingguo | 2009 | Chemical Physics Letters2009,483,: | 1 |
| 6 | Crystal structure of human BS69 Bromo-ZnF-PWWP reveals its role in H3K36me3 nucleosome binding显示文摘 | Juncheng Wang Su Qin Fudong Li Sai Li Wei Zhang Junhui Peng Zhiyong Zhang Qingguo Gong Jihui Wu Yunyu Shi | 2014 | Cell Research2014,24,7: | 0 |
| 7 | 二聚体RNA解旋酶CsdA的结构生物学研究及其C端区域的重要功能显示文摘文章简介RNA解旋酶Csd A在大肠杆菌50S核糖体的生物合成和低温下rpos的基因表达调控过程中发挥重要作用,然而一直以来人们并不清楚Csd A的结构和长片段C端区域的功能。 | Ling Xu Lijun Wang Junhui Peng Fudong Li Lijie Wu Beibei Zhang Mengqi Lv Jiahai Zhang Qingguo Gong Rongguang Zhang Xiaobing Zuo Zhiyong Zhang Jihui Wu 唐雅珺 施蕴渝 | 2018 | 科学新闻2018,0,4: | 0 |
| 8 | Nitrogen supply affects ion homeostasis by modifying root Casparian strip formation through the miR528-LAC3 module in maize显示文摘Although nitrogen(N)is known to affect mineral element homeostasis in plants,the molecular mechanisms of interactions between N and other nutrients remain largely unclear.Wereport here that N supply affects ion homeostasis inmaize.Berberine hemisulfate staining and a propidiumiodide penetration assay showed that N luxury significantly delayed Casparian strip(CS)formation in maize roots.We further demonstrated that N-mediated CS formation in maize was independent of RBOHF-activated H2O2 production.N luxury induced the expression of ZmmiR528 inwhole roots and root tips.Knockdown and loss-of-function ofZmmiR528 promoted CS formation under both N-luxury and N-deficient conditions.Both ZmMIR528a and ZmMIR528b contribute to early CS formation under different N conditions.RNA-seq and real-time RT-PCR analysis demonstrated that ZmLAC3,but not ZmLAC5,responded to N treatments.Consistent with results obtained with ZmmiR528 TM transgenic maize and mir528a/b loss-of-function mutants,transgenic maize overexpressing ZmLAC3 displayed early CS formation under different N conditions.Under field conditions,K,Ca,Mn,Cu,Mg,and Zn concentrations were greater in the ear leaf of ZmLAC3-overexpressing transgenicmaize than in the wild type.These results indicate that ZmmiR528 affects CS formation in maize by regulating the expression of ZmLAC3,and modification of CS formation has the potential to improve maize quality. | Yu Guo Yafei Wang Huan Chen Qingguo Du Zhonghua Wang Xiaoping Gong Qing Sun Wen-Xue Li | 2023 | Plant Communications2023,4,4: | 0 |
| 9 | Determining structural ensembles of flexiblemulti-domaTn proteins using small-angle X-rayscattering and molecular dynamics simulations显示文摘 | Yonghui Zhang Bin Wen Junhui Peng Xiaobing Zuo Qingguo Gong Zhiyong Zhang | 2015 | Protein & Cell2015,6,8: | 0 |