Showing 161 - 180 results of 974 for search '"epigenetic"', query time: 0.07s Refine Results
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    Epigenetic Changes in Endothelial Progenitors as a Possible Cellular Basis for Glycemic Memory in Diabetic Vascular Complications by Poojitha Rajasekar, Christina L. O’Neill, Lydia Eeles, Alan W. Stitt, Reinhold J. Medina

    Published 2015-01-01
    “…Furthermore, various epigenetic marks have been proposed to closely associate with vascular glycemic memory. …”
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    A Review of Three Different Studies on Hidden Markov Models for Epigenetic Problems: A Computational Perspective by Kyung-Eun Lee, Hyun-Seok Park

    Published 2014-12-01
    “…Here, we review three HMM-based studies that have contributed to epigenetic research, from a computational perspective. …”
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  7. 167

    Inhibition of Mitochondrial Fission Reverses Simulated Microgravity-Induced Osteoblast Dysfunction by Enhancing Mechanotransduction and Epigenetic Modification by Qiusheng Shi, Yaxin Song, Jingqi Cao, Jing Na, Zhijie Yang, Xinyuan Chen, Ziyi Wang, Yubo Fan, Lisha Zheng

    Published 2025-01-01
    “…Moreover, our study showed that SMG-induced chromatin remodeling and histone methylation, which are epigenetic barriers to osteogenic differentiation, can be reversed by targeting mitochondrial fission, further highlighting the significance of mitochondrial dynamics in osteoblast function in an SMG environment. …”
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    Nucleolar PARP-1 Expression Is Decreased in Alzheimer’s Disease: Consequences for Epigenetic Regulation of rDNA and Cognition by Jianying Zeng, Jenny Libien, Fatima Shaik, Jason Wolk, A. Iván Hernández

    Published 2016-01-01
    “…PARP-1 has been identified as an epigenetic regulator of plasticity and memory. Thus, we hypothesize that PARP-1 may be altered in postmortem hippocampus of individuals with AD compared to age-matched controls without neurologic disease. …”
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    Development of nucleus-targeted histone-tail-based photoaffinity probes to profile the epigenetic interactome in native cells by Yu Wang, Jian Fan, Xianbin Meng, Qingyao Shu, Yincui Wu, Guo-Chao Chu, Rong Ji, Yinshan Ye, Xiangwei Wu, Jing Shi, Haiteng Deng, Lei Liu, Yi-Ming Li

    Published 2025-01-01
    “…Abstract Dissection of the physiological interactomes of histone post-translational modifications (hPTMs) is crucial for understanding epigenetic regulatory pathways. Peptide- or protein-based histone photoaffinity tools expanded the ability to probe the epigenetic interactome, but in situ profiling in native cells remains challenging. …”
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    12,13-diHOME Promotes Inflammatory Macrophages and Epigenetically Modifies Their Capacity to Respond to Microbes and Allergens by Din L. Lin, Kevin M. Magnaye, Cara E. Porsche, Sophia R. Levan, Elze Rackaityte, Mustafa Özçam, Susan V. Lynch

    Published 2024-01-01
    “…We hypothesized that macrophages, which are key to both antimicrobial and antigen responses, are functionally and epigenetically modified by 12,13-diHOME leading to short- and long-term dysfunction with consequences for both antimicrobial and antigenic responses. …”
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    Knockout of the ING5 epigenetic regulator confirms roles in stem cell maintenance and tumor suppression in vivo. by Buthaina Al Shueili, Arthur Dantas, Etienne Mahe, Tak Ho Chu, Yang Yang, Elodie Labit, Eren Kutluberk, Nicolas Lasaleta, Anand Masson, Hiba Omairi, Kenichi Ito, Roman J Krawetz, Rajiv Midha, Gregory Cairncross, Karl Riabowol

    Published 2025-01-01
    “…INhibitor of Growth (ING1-5) proteins are epigenetic readers that target histone acetyltransferase (HAT) or histone deacetylase (HDAC) complexes to the H3K4Me3 mark of active transcription. …”
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    N6-Methyladenosine in RNA and DNA: An Epitranscriptomic and Epigenetic Player Implicated in Determination of Stem Cell Fate by Pengfei Ji, Xia Wang, Nina Xie, Yujing Li

    Published 2018-01-01
    “…N6-Methyladenosine modification in DNA (m6dA), mRNA (m6A), tRNA, and other noncoding RNAs has been defined as another important epigenetic and epitranscriptomic marker in eukaryotes in recent years. …”
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