Showing 121 - 133 results of 133 for search '"Regulation of gene expression"', query time: 0.05s Refine Results
  1. 121

    Resistance Response of the Jasmonic Acid and Salicylic Acid Signaling Pathways in Mango Fruits Infected with Lasodiplodia theobromae by QU Xiangxiang, HU Meijiao, SUN Jinhua, GONG Deqiang, GAO Zhaoyin, CHEN Gengxin, LI Min

    Published 2025-01-01
    “…The gene expression of coronatin insensitive 1 (MiCOI1) was continuously down-regulated. The gene expression of isochorismate synthase (MiICS), a SA signaling pathway-related gene, was down-regulated, while the gene expression of non-expressor of pathogenesis-related genes 1 (MiNPR1) was up-regulated at the early stage and down-regulated at the late stage. …”
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  2. 122

    Tissue-specific effects of benzo[a]pyrene and DDT on microRNA expression profile in female rats by D. S. Ushakov, T. S. Kalinina, A. S. Dorozhkova, V. Y. Ovchinnikov, L. F. Gulyaeva

    Published 2018-04-01
    “…Therefore, the aim of this study was to investigate the chain of events “xenobiotic administration – receptor activation – up-regulating microRNA expression – down-regulation target genes expression” as one of the key factors in the chemically-induced carcinogenesis. …”
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  3. 123

    Activation of endogenous tolerance to bleaching stress by high salinity in cloned endosymbiotic dinoflagellates from corals by Ching-Nen Nathan Chen, Tze Ching Yong, Jih-Terng Wang

    Published 2025-01-01
    “…The findings also suggest the genomes of coral symbiotic dinoflagellates have undergone evolutionary processes to develop mechanisms, regulated by gene expression, to mitigate damages caused by high temperature and high light stress. …”
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  4. 124

    The role of sodium butyrate in modulating growth, intestinal health, and antimicrobial efficacy in turbot (Scophthalmus maximus L.) fed high soy diets by Jinjin Zhang, Cuijing Jia, Jinping Dong, Jingliang Wu, Minggang Liu, Hansong Zhang, Chengshuo Zhao

    Published 2024-12-01
    “…Meanwhile, dietary NaB protected the intestinal morphology, and regulated the gene expression of inflammatory cytokines to relieve the inflammation of turbot, such as TNFα, IL-1β, NFκB and IL-10. …”
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  5. 125

    Lactylation-driven TNFR2 expression in regulatory T cells promotes the progression of malignant pleural effusion by Yao Liu, Qiong Zhou, Siyu Zhang, Wenbei Peng, Haolei Wang, Xuan Xiang, Linlin Ye, Xiaoshan Wei, Zihao Wang, Qianqian Xue

    Published 2024-12-01
    “…Background Although tumor necrosis factor receptor 2 (TNFR2) has been recognized as an attractive next-generation candidate target for cancer immunotherapy, the factors that regulate the gene expression and their mechanistic effects on tumor-infiltrating regulatory T cells (Treg cells) remain poorly understood.Methods Single-cell RNA sequencing analysis was employed to analyze the phenotypic and functional differences between TNFR2+ Treg cells and TNFR2− Treg cells. …”
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  6. 126

    A pan-cancer analysis of homeobox family: expression characteristics and latent significance in prognosis and immune microenvironment by Yuanhui Wang, Jie Gao, Ziyi Ren, Ziyi Shen, Wei Gu, Qinyi Miao, Xiaomeng Hu, Xiaomeng Hu, Yan Wu, Yan Wu, Wei Liu, Jia Jia, Jia Jia, Yi Cai, Chunpeng (Craig) Wan, Lei Sun, Tingdong Yan, Tingdong Yan

    Published 2025-02-01
    “…Potential anti-tumor compounds for down-regulating HOX gene expression were identified, such as HDAC inhibitors and tubulin inhibitors. …”
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  7. 127

    Decoding oral cancer: insights from miRNA expression profiles and their regulatory targets by Xin Wang, Xin Wang, Shuang Zhang, Shuang Zhang, Shuyi Wang, Tao Cao, Tao Cao, Hong Fan, Hong Fan

    Published 2025-01-01
    “…MicroRNAs (miRNAs), as critical regulators of gene expression, have emerged as key players in modulating plethora of cellular mechanisms. …”
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  8. 128

    Insights Into the Role of Bmi‐1 Deregulation in Promoting Stemness and Therapy Resistance in Glioblastoma: A Narrative Review by Fatima Shaalan, Nissrine Ballout, Wafaa Takash Chamoun

    Published 2025-01-01
    “…We find that Bmi‐1 participates in regulating the gene expression and chromatin structure of several tumor suppressor genes or cell cycle inhibitors. …”
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  9. 129

    <i>CYP24A1</i> DNA Methylation in Colorectal Cancer as Potential Prognostic and Predictive Markers by Ru-Hua Zhou, Lei Li, Qing-Jian Ou, Yi-Fan Wang, Yu-Jing Fang, Cai-Xia Zhang

    Published 2025-01-01
    “…The DNA methylation of <i>CYP24A1</i> can regulate its gene expression and may play a role in the occurrence and progression of colorectal cancer (CRC). …”
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  10. 130
  11. 131

    Conjugates of Phthalocyanines With Oligonucleotides as Reagents for Sensitized or Catalytic DNA Modification

    Published 2006-01-01
    “…These results suggest the possible use of phthalocyanine-oligonucleotide conjugates as novel artificial regulators of gene expression and therapeutic agents for treatment of cancer.…”
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  12. 132

    Effects of Dietary Nano-Composite of Copper and Carbon on Antioxidant Capacity, Immunity, and Cecal Microbiota of Weaned Ira White Rabbits by Ying-Huan Zhou, Xiao-Ping Liu, Xiao-Ming Gu, Hai-Xuan Lv, Yun Yang, Zai-Xing Cai, Bin Di, Chang-Kang Wang, Yu-Yun Gao, Ling Jin

    Published 2025-01-01
    “…The results showed that dietary NCCC supplementation increased the liver Cu/Zn-SOD content and up-regulated the gene expression of Cu/Zn-SOD (<i>p</i> < 0.05), while also reducing the content of MDA in the liver and enhancing the antioxidant capacity of Ira white rabbits. …”
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  13. 133

    Molybdenum Can Regulate the Expression of Molybdase Genes, Affect Molybdase Activity and Metabolites, and Promote the Cell Wall Bio-Synthesis of Tobacco Leaves by Yuan Zhao, Yu Zhang, Kai Zhang, Jiashu Tian, Huanyu Teng, Zicheng Xu, Jiayang Xu, Huifang Shao, Wei Jia

    Published 2025-01-01
    “…Moreover, it significantly up-regulated the gene expression levels of molybdases (<i>NR</i>, <i>AO</i>, <i>SO</i>, <i>XDH</i>) and molybdate transporters in tobacco, whereby the gene expression levels of NR were upregulated by 28.48%, 52.51%, 173.05%, and 246.21%, respectively; and MOT1 and MOT2 were upregulated by 21.49/8.67%, 66.05/30.44%, 93.05/93.26%, and 166.11/114.29%, respectively. …”
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