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13篇 您的检索式:作者名="Wei RO"
    题名 作者 年代 出处 被引量
1The mitochondrial genome encodes abundant small noncoding RNAs显示文摘识别的小 noncoding RNA 都被原子染色体远因此编码。这里,我们主要报导鼠科、人的 mitochondrial 染色体编码几千小 noncoding RNA,它是源于 mitochondrial 基因(主人基因) 的感觉抄本,并且我们称为这些小 RNA mitochondrial 编码染色体的小 RNA (mitosRNAs ) 。影响的 DICER inactivation,但是完全没废除 mitosRNA 生产。MitosRNAs 看起来是当前未辩别出的 mitochondrial ribonucleases 的产品。提高的表示在 vitro 他们的主人基因铺平的 mitosRNAs 的 Overexpression,和 dysregulated mitosRNA 表示通常在 vivo 与异常 mitochondrial 基因表示被联系。我们的数据证明除了 37 已知的 mitochondrial 基因,哺乳动物的 mitochondrial 染色体也编码丰富的 mitosRNAs,它可以在房间在 mitochondrial 基因表示的控制起一个重要规章的作用。Seungil Ro Hsiu-Yen Ma Chanjae Park Nicole Ortogero Rui Song Grant W Hennig Huili Zheng Yung-Ming Lin2 Loredana Moro Jer-Tsong Hsieh wei Yant 2013Cell Research2013,23,6:3
2Inhibition of UV light and Fenton reaction induced oxidative DNA damage by the soybean isoflavone genistein 显示文摘Wei H Cai Q Rahn RO 1996Carcinogenesis1996,17,:1
3Inhibition of UV light and Fenton reaction-induced oxidation DNA damage by the soybean isoflavone genistein 显示文摘Wei H Cai Q Rahn RO 1996Carcinogenesis1996,17,1:1
4Inhibition of UV light-and Fenton reaction-induced oxidative DNA damage by the soybean isoflavone genistein 显示文摘Wei H Cai Q Rahn RO 1996Carcinogenesis1996,17,1:1
5Inhibition of UV light-and Fenton reaction-induced oxidative DNA damage by the soybean isoflavone genistein显示文摘Wei H Cai Q Rahn RO 1996Carcinogenesis1996,17,1:1
6Inhibition of UV light and Fenton reaction-induced oxidative DNA damage by the soybean isoflavone genistein显示文摘Wei H Cai Q Rahn RO 0,,01:1
7Evaluation of posttonsillectomy hemorrhage and risk factors显示文摘Wei JL Beatty CW Gustafson RO 2000Otolaryngol Head Neck Surg2000,123,3:1
8Cloning and expression profiling of smallRNAs expressed in the mouse ovary显示文摘Ro S Song R Papk C Zheng H L Sanders K M Wei Y 2007RNA2007,13,12:1
9Enzyme-linked immunosorbont assay for microcystins in blue-green algal blooms显示文摘 Huang X Wei RO 1990J Assoc Off Analyt Chem1990,73,:1
10Structural and functional bases for broad-spectrum neutralization of avian and human influenza A viruses 显示文摘Sui J Hwang WC Perez S Wei G Aird D Chen LM Santelli E Stec B Cadwell G Ali M Wan H Murakami A Yammanuru A Han T Cox NJ Bankston LA Donis RO Liddington RC Marasco WA 2009Nat Struct Mol Biol2009,16,3:1
11Enzyme-linked immunosorbent assay for microcystins in blue-green algal blooms显示文摘Chu FS Huang X Wei RO 1990J Assoc Analyt Chem1990,73,3:1
12East Asian VLBI Network observations of active galactic nuclei jets:imaging with KaVA+Tianma+Nanshan显示文摘The East Asian Very Long Baseline Interferometry(VLBI) Network(EAVN) is a rapidly evolving international VLBI array that is currently promoted under joint efforts among China,Japan and Korea.EAVN aims at forming a joint VLBI Network by combining a large number of radio telescopes distributed over East Asian regions.After the combination of the Korean VLBI Network(KVN) and the VLBI Exploration of Radio Astrometry(VERA) into Ka VA,further expansion with the joint array in East Asia is actively promoted.Here we report the first imaging results(at 22 and 43 GHz) of bright radio sources obtained with Ka VA connected to Tianma 65-m and Nanshan 26-m Radio Telescopes in China.To test the EAVN imaging performance for different sources,we observed four active galactic nuclei(AGN) having different brightness and morphology.As a result,we confirmed that the Tianma 65-m Radio Telescope(TMRT) significantly enhances the overall array sensitivity,a factor of 4 improvement in baseline sensitivity and 2 in image dynamic range compared to the case of Ka VA only.The addition of the Nanshan 26-m Radio Telescope(NSRT) further doubled the east-west angular resolution.With the resulting high-dynamic-range,high-resolution images with EAVN(Ka VA+TMRT+NSRT),various fine-scale structures in our targets,such as the counter-jet in M87,a kink-like morphology of the 3 C 273 jet and the weak emission in other sources are successfully detected.This demonstrates the powerful capability of EAVN to study AGN jets and to achieve other science goals in general.Ongoing expansion of EAVN will further enhance the angular resolution,detection sensitivity and frequency coverage of the network.崔玉竹 Kazuhiro Hada Motoki Kino Bong-Won Sohn Jongho Park Hyun-Wook Ro Satoko Sawada-Satoh Wu Jiang Lang Cui Mareki Honma 沈志强 Fumie Tazaki 安涛 Ilje Cho Guang-Yao Zhao Xiao-Peng Cheng Kotaro Niinuma Kiyoaki Wajima Ying-Kang Zhang Noriyuki Kawaguchi Juan-Carlos Algaba Shoko Koyama Tomoya Hirota Yoshinori Yonekura Nobuyuki Sakai Bo Xia Yong-Bin Jiang Lin-Feng Yu Wei Gou Ju-Yeon Hwang Yong-Chen Jiang Yun-Xia Sun Dong-Kyu Jung Hyo-Ryoung Kim Jeong-Sook Kim Hideyuki Kobayashi Jee-Won Lee Jeong-Ae Lee Hua Zhang Guang-Hui Li Zhi-Qiang Xu Peng Li Jung-Hwan Oh Se-Jin Oh Chung-Sik Oh Tomoaki Oyama Duk-Gyoo Roh Katsunori-M.Shibata 郭文 Rong-Bing Zhao Wei-Ye Zhong Jin-Qing Wang Wen-Jun Yang 闫浩 Jae-Hwan Yeom Bin Li 李笑飞 Jian-Ping Yuan Jian Dong Zhong Chen Kazunori Akiyama Keiichi Asada Do-Young Byun Yoshiaki Hagiwara Jeffrey Hodgson Tae-Hyun Jung Kee-Tae Kim Sang-Sung Lee Kunwoo Yi Qing-Hui Liu Xiang Liu Ru-Sen Lu Masanori Nakamura Sascha Trippe Na Wang Xue-Zheng Wang 张波 2021Research in Astronomy and Astrophysics2021,21,8:0
13Author Correction: The mitochondrial genome encodesabundant small noncoding RNAs显示文摘It has been brought to our attention that our paper1 published in Cell Research in 2013 contains duplicated panels in Fig.3A(HX1_30-51 and mmu-let-7d).By examining the lab records,we found that the gel image of H-X1_30-51 appeared to be used as a place holder for mmu-let-7d(the loading control)when the original figure was first assembled.Unfortunately,it was never replaced by the real mmu-let-7d gel image.We repeated the PCR assays and added the mmu-let-7d gel image to the corrected Fig.3A.This correction does not affect the major findings and conclusions of this work.We apologize for this oversight.Seungil Ro Hsiu-Yen Ma Chanjae Park Nicole Ortogero Rui Song Grant W.Hennig Huili Zheng Yung-Ming Lin Loredana Moro Jer-Tsong Hsieh Wei Yan 2021Cell Research2021,31,12:0
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