Showing 41 - 60 results of 109 for search '"regulation of gene expression"', query time: 0.07s Refine Results
  1. 41

    Promoter engineering with programmable upstream activating sequences in Aspergillus Niger cell factory by Xiaomei Zheng, Yuting Guo, Meiling Chen, Yudan Lu, Yimou Du, Yu Lei, Ping Zheng, Jibin Sun

    Published 2025-01-01
    “…A wide dynamic range of promoters, particularly strong promoters, are required for fine-tuning the regulation of gene expression to balance metabolic flux and achieve the high yields of desired products. …”
    Get full text
    Article
  2. 42

    Butyrate Supplementation Improves Intestinal Health and Growth Performance in Livestock: A Review by Wenting Chen, Qingshan Ma, Yan Li, Lin Wei, Zhenwei Zhang, Adnan Khan, Muhammad Zahoor Khan, Changfa Wang

    Published 2025-01-01
    “…Additionally, butyrate plays a role in the epigenetic regulation of gene expression through histone acetylation, influencing tissue development and immune modulation. …”
    Get full text
    Article
  3. 43

    Robust genome editing activity and the applications of enhanced miniature CRISPR-Cas12f1 by Soo-Ji Park, Sungjin Ju, Won Jun Jung, Tae Yeong Jeong, Da Eun Yoon, Jang Hyeon Lee, Jiyun Yang, Hojin Lee, Jungmin Choi, Hyeon Soo Kim, Kyoungmi Kim

    Published 2025-01-01
    “…Furthermore, we demonstrate that eCas12f1 efficiently induces apoptosis in cancer cells and is compatible with base editing and regulation of gene expression, verifying its high utility and applicability in gene therapy research.…”
    Get full text
    Article
  4. 44

    Role of sirtuins in epigenetic regulation and aging control by E. M. Samoilova, S. E. Romanov, D.  A. Chudakova, P. P. Laktionov

    Published 2024-04-01
    “…However, the SIRT influence on the epigenetic regulation of gene expression during the aging process and the development of disorders is one of the most important aspects of maintaining the homeostasis of organs and tissues. …”
    Get full text
    Article
  5. 45

    Introduction to genetic analysis / by Griffiths, Anthony J. F., Doebley, John F., Peichel, Catherine L., 1969-, Wassarman, David A.

    Published 2020
    Table of Contents: “…Gene Isolation and Manipulation -- 11. Regulation of Gene Expression in Bacteria and Their Viruses -- 12. …”
    View in OPAC
    Book
  6. 46

    Effects of polyamines and indole on the expression of ribosome hibernation factors in <i>Escherichia coli</i> at the translational level by E. A. Khaova, A. G. Tkachenko

    Published 2024-03-01
    “…Polyamines and indole are small regulatory molecules that are involved in the adaptation to stress in bacteria, including the regulation of gene expression. Genes, the translation of which is under the regulatory effects of polyamines, form the polyamine modulon. …”
    Get full text
    Article
  7. 47

    Different functions of PHF10 isoforms – subunits of the PBAF chromatin remodeling complex by A. A. Sheynov, V. V. Tatarskiy, A. M. Azieva, S. G. Georgieva, N. V. Soshnikova

    Published 2019-03-01
    “…Chromatin remodelling multiprotein complexes play an important role in regulation of gene expression in embryogenesis and in the adult organism. …”
    Get full text
    Article
  8. 48

    MicroRNA-223 Expression Is Upregulated in Insulin Resistant Human Adipose Tissue by Tung-Yueh Chuang, Hsiao-Li Wu, Chen-Chun Chen, Gloria Mabel Gamboa, Lawrence C. Layman, Michael P. Diamond, Ricardo Azziz, Yen-Hao Chen

    Published 2015-01-01
    “…MicroRNAs (miRNAs) are short noncoding RNAs involved in posttranscriptional regulation of gene expression and influence many cellular functions including glucose and lipid metabolism. …”
    Get full text
    Article
  9. 49

    Research Progress on Natural Products That Regulate miRNAs in the Treatment of Osteosarcoma by Lin Wang, Xinyu Liu, Haoze Lv, Han Zhang, Rimei Lin, Shan Xu, Chaojing Zhang, Shilei Lou, Zhidong Qiu, Cong Sun, Ning Cui

    Published 2025-01-01
    “…miRNAs are small non-coding RNA molecules that play critical roles in the regulation of gene expression and have been closely associated with various diseases, including cancer. …”
    Get full text
    Article
  10. 50

    Identification of new genes regulating nodule development in Medicago truncatula: an in-silico approach by Mahboobeh Azarakhsh, Sara Eslami, Maryam Moghadas, Zahra Ataei

    Published 2024-09-01
    “…This shows that IPD3 through interaction with these proteins could be involved in regulation of gene expression and cell cycle. Besides, we found a possible cytokinin transport gene ABCG38 and showed the activation of its expression in nodules compared to root. …”
    Get full text
    Article
  11. 51

    Argonaute2 modulates megakaryocyte development and sex-specific control of platelet protein expression and reactivity by Sophia Lazar, Jeremy G.T. Wurtzel, Shayan Askari, Matthew Cooper, Xuefei Zhao, Peisong Ma, Lawrence E. Goldfinger

    Published 2025-01-01
    “…Platelet reactivity controlled by Ago2 reflects sex-specific regulation of gene expression potentially at both transcriptional and translational levels in megakaryocytes and platelets.…”
    Get full text
    Article
  12. 52

    A nociceptor-specific RNAi screen in Drosophila larvae identifies RNA-binding proteins that regulate thermal nociception by Amber Dyson, Gita Gajjar, Katherine C. Hoffman, Dakota Lewis, Sara Palega, Erik Rangel Silva, James Auwn, Andrew Bellemer

    Published 2025-01-01
    “…Diverse RNA-binding proteins regulate the development and morphology of larval nociceptors, implying important roles for post-transcriptional regulation of gene expression in these neurons, but the importance of these mechanisms for nociceptive behavior has not been investigated systematically. …”
    Get full text
    Article
  13. 53

    Endometrial Cancer and Hypermethylation: Regulation of DNA and MicroRNA by Epigenetics by Kouji Banno, Iori Kisu, Megumi Yanokura, Kenta Masuda, Yusuke Kobayashi, Arisa Ueki, Kosuke Tsuji, Wataru Yamagami, Hiroyuki Nomura, Nobuyuki Susumu, Daisuke Aoki

    Published 2012-01-01
    “…Silencing of genes such as APC and CHFR, Sprouty 2, RASSF1A, GPR54, CDH1, and RSK4 by DNA hypermethylation, onset of Lynch syndrome due to hereditary epimutation of hMLH1 and hMSH2 mismatch repair genes, and regulation of gene expression by microRNAs may also underlie the carcinogenic mechanisms of endometrial cancer. …”
    Get full text
    Article
  14. 54

    Mono-allelic epigenetic regulation of polycistronic transcription initiation by RNA polymerase II in Trypanosoma brucei by Rudo Kieft, Laura Cliffe, Haidong Yan, Robert J. Schmitz, Stephen L. Hajduk, Robert Sabatini

    Published 2025-02-01
    “…These findings suggest epigenetic chromatin-based regulation of gene expression is deeply conserved among eukaryotes, including early divergent eukaryotes that rely on polycistronic transcription.IMPORTANCEThe single-cell parasite Trypanosoma brucei causes lethal diseases in both humans and livestock. …”
    Get full text
    Article
  15. 55

    Identifying a Serum Exosomal-Associated lncRNA/circRNA-miRNA-mRNA Network in Coronary Heart Disease by Jia Mao, Yufei Zhou, Licheng Lu, Ping Zhang, Runhua Ren, Yaqiong Wang, Jing Wang

    Published 2021-01-01
    “…Functional enrichment analysis showed that DEMs were significantly enriched in “chromatin silencing at rDNA,” “telomere organization,” and “negative regulation of gene expression, epigenetic.” PPI network analysis showed that 25 hub DEMs were closely related to CHD, of which ubiquitin C (UBC) was the most important. …”
    Get full text
    Article
  16. 56

    Mycochemistry, antioxidant, anticancer activity, and molecular docking of compounds of F12 of ethyl acetate extract of Astraeus asiaticus with BcL2 and Caspase 3 by Swapan Kumar Ghosh, Koushik Pandey, Madhuparna Ghosh, Pradip Kumar Sur

    Published 2025-02-01
    “…The mechanism of anticancer effect of F12 (AAEAE) on cancer cell lines included induction of apoptosis, LDH leakage, and up regulation of gene expression levels of Caspase 3, Caspase 9, P53, and down regulation of BcL2 of all three cell lines. …”
    Get full text
    Article
  17. 57

    Identification of RNA Editing Sites Reveals Functional Modifications with the Addition of Methionine to the Daily Rations of Yaks by Shiyu Wu, Xinrui Liu, Yaxin Liu, Shikai Wang, Wei Peng, Ming Zhang, Binglin Yue, Hui Wang, Jikun Wang, Jincheng Zhong, Fang Sun, Yixi Kangzhu, Jiabo Wang

    Published 2025-01-01
    “…This provides further understanding of the mechanism of yak muscle tissue and regulation of gene expression after the addition of methionine to daily rations.…”
    Get full text
    Article
  18. 58

    <i>METTL3</i> and <i>FTO</i> Regulate Heat Stress Response in Hu Sheep Through Lipid Metabolism via m6A Modification by Bowen Chen, Chao Yuan, Tingting Guo, Jianbin Liu, Zengkui Lu

    Published 2025-01-01
    “…In the lipid deposition heat stress model of preadipocytes, the regulation of gene expression was similar to that in hepatocytes.…”
    Get full text
    Article
  19. 59

    Reconstruction and computational analysis of the microRNA regulation gene network in wheat drought response mechanisms by M. A. Kleshchev, A. V. Maltseva, E. A. Antropova, P. S. Demenkov, T. V. Ivanisenko, Y. L. Orlov, H. Chao, M. Chen, N. A. Kolchanov, V. A. Ivanisenko

    Published 2025-01-01
    “…Wheat adaptation to water deficit is ensured by complex molecular genetic mechanisms, including the coordinated work of multiple genes regulated by transcription factors and signaling non-coding RNAs, particularly microRNAs (miRNAs). miRNA-mediated regulation of gene expression is considered one of the main mechanisms of plant resistance to abiotic stresses. …”
    Get full text
    Article
  20. 60

    Cooperative mechanisms of LexA and HtpG in the regulation of virulence gene expression in Pseudomonas plecoglossicida by Rongchao He, Yanfei Zuo, Qiu Li, Qingpi Yan, Lixing Huang

    Published 2025-01-01
    “…Our previous research suggested that LexA might collaboratively regulate virulence gene expression with HtpG during infection. This study aims to elucidate the molecular mechanism by which LexA controls virulence gene expression. …”
    Get full text
    Article