Showing 1,901 - 1,920 results of 3,695 for search '(((ming OR ((lingua OR linkua) OR lineua)) OR spine) OR ((ying OR yong) OR (ling OR line)))', query time: 0.21s Refine Results
  1. 1901
  2. 1902
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  6. 1906

    Quantum dots-siRNA nanoplexes for gene silencing in central nervous system tumor cells by Lin, Guimiao, Chen, Ting, Zou, Jinyun, Wang, Yucheng, Wang, Xiaomei, Li, Jiefeng, Huang, Qijun, Fu, Zicai, Zhao, Yingying, Lin, Marie Chia-Mi, Xu, Gaixia, Yong, Ken-Tye

    Published 2018
    “…High gene transfection efficiency (>80%) was achieved on two glioblastoma cell lines, U87 and U251. The gene expression level (49.99 ± 10.23% for U87, 43.28 ± 9.66% for U251) and protein expression level (51.58 ± 7.88% for U87, 50.69 ± 7.59% for U251) of TERT is observed to decrease substantially after transfecting the tumor cells for 48 h. …”
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    Journal Article
  7. 1907

    Three distinct 3-methylcytidine (m3C) methyltransferases modify tRNA and mRNA in mice and humans by Xu, Luang, Liu, Xinyu, Sheng, Na, Oo, Kyaw Soe, Liang, Junxin, Chionh, Yok Hian, Xu, Juan, Ye, Fuzhou, Gao, Yong-Gui, Dedon, Peter C., Fu, Xin-Yuan

    Published 2018
    “…METTL8, however, modified only mRNA, as determined by biochemical and genetic analyses in Mettl8 null-mutant mice and two human METTL8 mutant cell lines. Our findings provide the first evidence of the existence of m3C modification in mRNA, and the discovery of METTL8 as an mRNA m3C writer enzyme opens the door to future studies of other m3C epitranscriptomic reader and eraser functions.…”
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    Journal Article
  8. 1908
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  13. 1913

    Effects of Sub1 and qDTY on the agro-morpho-physiological traits of rice (Oryza sativa L.) under reproductive stage drought stress by Shakirah Mohammad Nahar, Nur Sakinah Mohd Yusri, Asmuni Mohd Ikmal, Noraziyah Abd Aziz Shamsudin, Siti Nurfaeiza Abd Razak, Pui, Maggie San Sudo, Song, Beng-Kah, Bey, Hing Goh, Long, Chiau Ming

    Published 2024
    “…Breeding and screening of drought tolerant varieties are crucial to ensure the continuity of food supply. Two breeding lines, UKM-112 and UKM-114 with QTL(s) for submergence tolerance (Submergence 1 [Sub1]) and yield under drought stress (qDTY) and together with their recurrent parental line, UKM-5, and a drought-sensitive cultivar, MR219 were screened for their agro-morpho-physiological responses under reproductive stage drought stress (RS) and non-stress (NS) to determine how the Sub1 interacts with qDTY in enhancing drought tolerance. …”
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    Article
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