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| 1 | Plant E3 Ligases: Flexible Enzymes in a Sessile World显示文摘自从它在 1970 年代末的发现, ubiquitin proteasome 小径看起来在许多研究地里无所不在。尽管原来在动物发现了,小径在植物有一个很中央的角色,它可以被相关到他们的无柄的生活方式。同样灵活的 E3 ligases 功能和在由为 ubiquitylation 指向底层蛋白质的小径以内的高度多样的关键管理者,和经由 26S proteasome 的经常解朊的降级。这评论在到目前为止在植物描述的 E3 ligases 的最普通的班上提供简明概述,并且在植物生物学关于这些有趣、灵活的酶和他们的多样的功能强调最近的调查结果。 | Liyuan Chen Hanjo Hellmann | 2013 | Molecular Plant2013,6,5: | 16 |
| 2 | Acupuncture in ancient China: How important was it really?显示文摘Although acupuncture theory is a fundamental part of the Huangdi Neijing, the clinical application of the needle therapy in ancient China was always a limited one. From early times there have been warnings that acupuncture might do harm. In books like Zhang Zhongjing's Shanghanlun it plays only a marginal role. Among the 400 emperors in Chinese history, acupuncture was hardly ever applied. After Xu Dachun called acupuncture a 'lost tradition' in 1757, the abolition of acupuncture and moxibustion from the Imperial Medical Academy in 1822 was a radical, but consequent act. When traditional Chinese medicine was revived after 1954, the 'New Acupuncture' was completely different from what it had been in ancient China. The conclusion, however, is a positive one: The best time acupuncture ever had was not the Song dynasty or Yuan dynasty, but is now - and the future of acupuncture does not lie in old scripts, but in ourselves. | Hanjo Lehmann | 2013 | Journal of Integrative Medicine2013,11,1: | 10 |
| 3 | 一个西方人对中医的思考:阴阳和五行学说的哲学和医学解读(英文)显示文摘The Yinyang concept and the Wuxing concept are two basic concepts of Chinese philosophy,as well as of traditional Chinese medicine(TCM).When I started studying TCM in Shanghai 30 years ago,I met the Yinyang concept and the | Hanjo Lehmann | 2012 | 中西医结合学报2012,10,3: | 7 |
| 4 | Identification of Arabidopsis MYB56 as a Nove Substrate for CRL3BPM E3 Ligases显示文摘蛋白质的控制稳定性是高度有效的机制在生活房间指导多样的过程。一 ? 为蛋白质稳定性的关键规章的系统被 ubiquitin proteasome 小径给,它使用 E3 ligases 为降级标记特定的蛋白质。在这个工作,当 CULLIN3 (CUL3 ) 的一个新奇目标基于 E3 ligase, MYB56 被识别。它的稳定性取决于 MATH-BTB/POZ (BPM ) 蛋白质的存在,它作为底层适配器工作到 E3 ligase。基因研究显示了 MYB56 是 ? 一 ? flowering 的否定管理者,当 BPM 断然影响这个发展程序时。在 BPM 和 MYB56 之间的相互作用发生在 FLOWERING 的倡导者地点 T (英尺) ,在在 Arabidopsis 开始 flowering 的一个关键管理者,和在 MYB56 的不稳定性的结果。总的来说,工作作为 BPM 蛋白质的底层建立 MYB 抄写因素,并且在参予在工厂控制 flowering 时间的部件上提供新奇信息。 | Liyuan Chen Anne Bernhardt JooHyun Lee Hanjo Hellmann | 2015 | Molecular Plant2015,8,2: | 6 |
| 5 | Complex Assembly and Metabolic Profiling of Arabidopsis thaliana PlantsOverexpressing Vitamin B6 Biosynthesis Proteins显示文摘在植物,维生素 B6 生合成要求 PDX1 和 PDX2 蛋白质的活动。Arabidopsis thaliana 为三 PDX1 蛋白质编码,命名 PDX1.1, 1.2,和 1.3,但是仅仅一 PDX2。这里,我们在 PDX 蛋白质的 planta 建筑群汇编出现,基于 split-YFP 和 FPLC 试金,并且能在约 750 的更高的建筑群表明他们的存在 ? kDa。宫外地表示不同 PDX 蛋白质的植物的新陈代谢的介绍为 PDX1.3 明确地在在异常维生素 B6 内容, PDX1 基因表示,和轻敏感之间的维生素 B6 生合成和关联上显示 PDX1.2 的否定影响。这些调查结果提供第一卓见进在 planta 维生素 B6 synthase,不同 PDX 蛋白质怎么影响的复杂汇编和新信息种新陈代谢。 | Jan Erik Leuendorf Sonia Osorio Agnieszka Szewczyk Alisdair R. Fernie Hanjo Hellmann | 2010 | Molecular Plant2010,3,5: | 3 |
| 6 | root uv-b sensitive Mutants Are Suppressed by Specific Mutations in ASPARTATE AMINOTRANSFERASE2 and by Exogenous Vitamin B6显示文摘维生素 B6 (vitB6 ) 为超过 140 酶用作一个必要余因子。Pyridoxal 5'-phosphate (PLP ) , vitB6 的活跃余因子形式,能被 ultraviolet-B (UV-B ) 的踪迹数量 photolytically 破坏。暴露太阳的有机体怎么应付 PLP 光敏度并且调制 vitB6 动态平衡,当前是未知的。我们以前在二 Arabidopsis 异种, rus1 和 rus2 上报导了,那是过分敏感的跟踪 UV-B 光的数量。我们为 rus 异种显型的秒地点 suppressors 执行了 mutagenesis 屏幕并且在 ASPARTATE AMINOTRANSFERASE2 (ASP2 ) 基因识别了变化。ASP2 为 cytosolic aspartate aminotransferase (AAT ) 编码,在碳和氮起一个关键作用的 PLP 依赖的酶新陈代谢。基因分析证明了在 ASP2 的特定的氨基酸替换制服 rus1 和 rus2 单身者异种以及 rus1 rus2 的显型两倍异种。这些替换,都出现在 PLP 有约束力的衣袋里住在特定的位置,导致了没有 PLP 绑定。废除 AAT 的另外的 asp2 异种酶的活动,但是它在 PLP 有约束力的衣袋外面改变氨基酸,没能压制 rus 显型。而且,外长地在生长媒介增加 vitB6 能救 rus1 和 rus2。我们的数据建议 AAT 在 Arabidopsis 在 vitB6 动态平衡起一个作用。 | Colin D. Leasure Hong-Yun Tong Xue-Wen Hou Amy Shelton Mike Minton Raymond Esquerra Sanja Roje Hanjo Hellmann Zheng-Hui He | 2011 | Molecular Plant2011,4,4: | 2 |
| 7 | Highly efficient pho- tonic crysyal-based multi-channel drop filters of three-port system with re- flection eedback显示文摘 | SANGIN Kim IKOM Park HANJO Lim | 2004 | Opt Express2004,12,22: | 1 |
| 8 | Long-term cycle stability at a high current for nanocrystalline LiFePO4 coated with a conductive polymer显示文摘 | Hung-Cuong Dinh Hanjo Lim Ki Dong Park In-Hyeong Yeo Yongku Kang Sun-il Mho | 2013 | Advances in Natural Sciences: Nanoscience and Nanotechnology2013,,: | 1 |
| 9 | In vivo rapid reduction of alloantigen-activated CD8+ mature cytotoxic T cells by inhibitors of acidification of intracellular organells,prodigiosin 25-C and Concanamycin B显示文摘 | Lee MH Kataoka T Hanjo N | 2000 | Immunology2000,99,: | 1 |
| 10 | Business Failure of New Firms: An empirical analysis using a multiplicative hazards model显示文摘 | Hanjo Y | 2000 | International Journal of Industrial Organization2000,184,: | 1 |
| 11 | Generation of intense pulsed microwave from a high-density virtual cathode of a reflex triode显示文摘 | Hanjo H Nakagawa Y | 1991 | J Appl Phys1991,70,: | 1 |
| 12 | High-speed integrated QKD system显示文摘Quantum key distribution(QKD)is nowadays a well-established method for generating secret keys at a distance in an information-theoretically secure way,as the secrecy of QKD relies on the laws of quantum physics and not on computational complexity.In order to industrialize QKD,low-cost,mass-manufactured,and practical QKD setups are required.Hence,photonic and electronic integration of the sender's and receiver's respective components is currently in the spotlight.Here we present a high-speed(2.5 GHz)integrated QKD setup featuring a transmitter chip in silicon photonics allowing for high-speed modulation and accurate state preparation,as well as a polarization-independent low-loss receiver chip in aluminum borosilicate glass fabricated by the femtosecond laser micromachining technique.Our system achieves raw bit error rates,quantum bit error rates,and secret key rates equivalent to a much more complex state-of-the-art setup based on discrete components[A.Boaron et al.,Phys.Rev.Lett.121,190502(2018)]. | REBECKA SAX ALBERTO BOARON GIANLUCA BOSO SIMONE ATZENI ANDREA CRESPI FADRI GRÜNENFELDER DAVIDE RUSCA AWS AL-SAADI DANILO BRONZI SEBASTIAN KUPIJAI HANJO RHEE ROBERTO OSELLAME HUGO ZBINDEN | 2023 | Photonics Research2023,11,6: | 0 |