Showing 521 - 540 results of 5,293 for search '"RNA"', query time: 0.09s Refine Results
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    Argonaute2 and Argonaute4 Involved in the Pathogenesis of Kawasaki Disease via mRNA Expression Profiles by Zon-Min Lee, Hui-Chuan Chang, Shih-Feng Liu, Ying-Hsien Huang, Ho-Chang Kuo

    Published 2025-01-01
    “…These proteins consist of small, single-stranded RNA or DNA and may provide a route for detecting and silencing complementary mobile genetic elements. …”
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  5. 525

    A microscale thermophoresis-based enzymatic RNA methyltransferase assay enables the discovery of DNMT2 inhibitors by Zarina Nidoieva, Mark O. Sabin, Tristan Dewald, Annabelle C. Weldert, Sabrina N. Hoba, Mark Helm, Fabian Barthels

    Published 2025-02-01
    “…Abstract RNA methyltransferases (MTases) have recently become increasingly important in drug discovery. …”
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  6. 526

    Expression of a mammalian RNA demethylase increases flower number and floral stem branching in Arabidopsis thaliana by Kasey Markel, Lucas Waldburger, Patrick M. Shih

    Published 2024-08-01
    “…Abstract RNA methylation plays a central regulatory role in plant biology and is a relatively new target for plant improvement efforts. …”
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  7. 527

    MicroRNA-147a Targets SLC40A1 to Induce Ferroptosis in Human Glioblastoma by Peng Xu, Fei-Hang Ge, Wen-Xin Li, Zhen Xu, Xue-Li Wang, Jing-Lan Shen, Ai-Bo Xu, Rong-Rong Hao

    Published 2022-01-01
    “…This study aims to determine the involvement of microRNA (miR)-147a in regulating ferroptosis of glioblastoma in vitro. …”
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  8. 528

    Methylated RNA Immunoprecipitation Sequencing Reveals the m6A Landscape in Oral Squamous Cell Carcinoma by Xi Wang, Jie Wu, Leyu Zhang, Wei Zhao, Jiayin Deng

    Published 2022-01-01
    “…The m6A peaks are always distributed in the junction of the 3′-untranslated regions (3′-UTRs) and the coding sequences (CDS) of mRNAs, as well as the entire genome of long noncoding RNA (lncRNA). Furthermore, enrichment analysis showed that differentially methylated genes were significantly enriched in NF-kappa B signaling pathway, Hedgehog signaling pathway, etc. …”
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  9. 529

    Temperature-induced flexibility of graphene sheet facilitates RNA duplex unzipping: A molecular dynamics study by Maksym V. Karachevtsev, Victor A. Karachevtsev

    Published 2025-01-01
    “…Many genetic processes are based on unzipping the DNA/RNA double helix. Therefore, the development of methods for rapid duplex unzipping is highly desirable for biomedical applications. …”
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  10. 530

    Co-Delivery of Dacarbazine and miRNA 34a Combinations to Synergistically Improve Malignant Melanoma Treatments by Ding B, Li M, Zhang J, Zhang X, Gao H, Gao J, Shen C, Zhou Y, Li F, Liu A

    Published 2025-01-01
    “…Additionally, the synergetic effects of DTIC and miRNA 34a in melanoma therapy were investigated in vitro and in vivo.Results: Compared to DTIC treatment alone, Co-PHRD treatment exhibited 1.84-fold greater cytotoxicity in A375 cells, demonstrating that miRNA 34a enhanced the efficacy of DTIC. …”
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    Proper 5'-3' cotranslational mRNA decay in yeast requires import of Xrn1 to the nucleus. by Antonio Jordán-Pla, Yujie Zhang, José García-Martínez, Shiladitya Chattopadhyay, Anabel Forte, Mordechai Choder, Vicent Pelechano, José E Pérez-Ortín

    Published 2025-01-01
    “…The budding yeast Xrn1 protein shuttles between the nucleus, where it stimulates transcription, and the cytoplasm, where it executes the major cytoplasmic mRNA decay. In the cytoplasm, apart from catalyzing 5'→3' decay onto non translated mRNAs, Xrn1 can follow the last translating ribosome to degrade the decapped mRNA template, a process known as "cotranslational mRNA decay". …”
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  14. 534

    RNA Sequencing Reveals the Differentially Expressed circRNAs between Stable and Unstable Carotid Atherosclerotic Plaques by Xueguang Lin, Ying Deng, Lujuan Ye, Bo Chen, Jindong Tong, Weijun Shi, Bo Wang, Bo Yu, Jingdong Tang

    Published 2023-01-01
    “…This study aimed to identify circular RNA profiles (circRNAs) via high-throughput RNA sequencing and distinguish the differentially expressed (DE) circRNAs between stable and unstable plaques. …”
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    Study of RNA Interference Targeting NET-1 Combination with Sorafenib for Hepatocellular Carcinoma Therapy In Vitro and In Vivo by Song He, Ying-ze Wei, Gui-lan Wang, Yu-yin Xu, Jia-ming Zhou, Yi-xin Zhang, Li Chen

    Published 2013-01-01
    “…NET-1 mRNA and protein were reduced sharply in MHCC97H cells transfected with NET-1shRNA. …”
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  17. 537

    The Long Noncoding RNA Gm9866/Nuclear Factor-κB Axis Promotes Macrophage Polarization by Xiaomin Liao, Xianxian Ruan, Xiubing Chen, Biaolin Zheng, Xianbin Wu, Zhejun Deng, Zhe Yang, Feng Wang, Shanyu Qin, Haixing Jiang

    Published 2023-01-01
    “…Fluorescence in situ hybridization revealed that long noncoding RNA Gm9866 was expressed mainly in the nucleus. …”
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  18. 538

    Molecular Cloning, Characterization, and mRNA Expression of Hemocyanin Subunit in Oriental River Prawn Macrobrachium nipponense by Youqin Kong, Liqiao Chen, Zhili Ding, Jianguang Qin, Shengming Sun, Ligai Wang, Jinyun Ye

    Published 2016-01-01
    “…In the infection trial, the MnHc-1 mRNA transcripts in the hemocytes were significantly downregulated at 3 h after injection of Aeromonas hydrophila and then upregulated at 6 h and 12 h, followed by a gradual recovery from 24 to 48 h. …”
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    Identification of the crucial circ-mi-mRNA interaction networks regulating testicular development and spermatogenesis in ganders by Xiaopeng Li, Xiaoyong He, Guibi Li, Zhujun Wang, Fuli Huang, Jiasen Chen, Yang Song, Tanze Liu, Zhaoyan Chen, Xiangfeng Wang, Jiwei Hu, Hua He, Hehe Liu, Liang Li, Jiwen Wang, Shenqiang Hu

    Published 2025-03-01
    “…By constructing the core ceRNA regulatory networks, several key DEcircRNAs, including 1:98100313|98104995, 1:171413706|171419341, 6:3414226|3418193, and 2:115876735|115880760, were identified to regulate the expression of TGFB2 and BCL2 through interactions with specific miRNAs such as novel-miR-265 and novel-miR-266, and such interactions could play crucial roles in regulating the gander testicular cell apoptosis, proliferation, and spermatogenesis. …”
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