Showing 561 - 580 results of 801 for search 'abiogenesis~', query time: 3.11s Refine Results
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    Whole Exome Sequencing Reveals Compound Heterozygosity for Ethnically Distinct PEX7 Mutations Responsible for Rhizomelic Chondrodysplasia Punctata, Type 1 by Jessie C. Jacobsen, Emma Glamuzina, Juliet Taylor, Brendan Swan, Shona Handisides, Callum Wilson, Michael Fietz, Tessa van Dijk, Bart Appelhof, Rosamund Hill, Rosemary Marks, Donald R. Love, Stephen P. Robertson, Russell G. Snell, Klaus Lehnert

    Published 2015-01-01
    “…Whole exome sequencing identified compound heterozygous stop mutations in the peroxisome biogenesis factor 7 gene in both individuals. Mutations in this gene cause rhizomelic chondrodysplasia punctata, type 1 (RCDP1). …”
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  12. 572

    Mitochondrial Dysfunction: A Basic Mechanism in Inflammation-Related Non-Communicable Diseases and Therapeutic Opportunities by Anna Hernández-Aguilera, Anna Rull, Esther Rodríguez-Gallego, Marta Riera-Borrull, Fedra Luciano-Mateo, Jordi Camps, Javier A. Menéndez, Jorge Joven

    Published 2013-01-01
    “…Regulating mitochondrial function may require a multifaceted approach that includes drugs and plant-derived phenolic compounds with antioxidant and anti-inflammatory activities that improve mitochondrial biogenesis and act to modulate the AMPK/mTOR pathway.…”
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  13. 573

    The BET inhibitor JQ1 targets fat metabolism and counteracts obesity by Claudia Fornelli, Alessia Sofia Cento, Lorenzo Nevi, Raffaella Mastrocola, Gustavo Ferreira Alves, Giuseppina Caretti, Massimo Collino, Fabio Penna

    Published 2025-02-01
    “…JQ1 administration did not impinge on skeletal muscle metabolism and oxidative capability, as shown by the lack of significant impact on mitochondrial mass and biogenesis. Conclusion: In conclusion, the current data highlight a potential benefit of JQ1 administration to counteract obesity, suggesting epigenetic modulation as a prospective target in the treatment of obesity and sarcopenic obesity, despite the underlying multiorgan molecular mechanism is still not completely elucidated.…”
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  14. 574

    Direct and Indirect Protein Interactions Link FUS Aggregation to Histone Post-Translational Modification Dysregulation and Growth Suppression in an ALS/FTD Yeast Model by Seth A. Bennett, Samantha N. Cobos, Raven M. A. Fisher, Elizaveta Son, Rania Frederic, Rianna Segal, Huda Yousuf, Kaitlyn Chan, David K. Dansu, Mariana P. Torrente

    Published 2025-01-01
    “…We identified Nop1 and Rrp5, a histone methyltransferase and rRNA biogenesis protein, respectively, as FUS binding partners involved in the growth suppression phenotype connected to FUS proteinopathy. …”
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  15. 575

    Compilation and functional classification of telomere length-associated genes in humans and other animal species by E. V. Ignatieva, N. S. Yudin, D. M. Larkin

    Published 2023-06-01
    “…Functional analysis has shown that telomere length can be influenced by genetic variants in the genes encoding: (1) structural components of telomerase; (2) the protein components of telomeric regions (shelterin and CST complexes); (3) the proteins involved in telomerase biogenesis and regulating its activity; (4) the proteins that regulate the functional activity of the shelterin components; (5) the proteins involved in telomere replication and/or capping; (6) the proteins involved in the alternative telomere lengthening; (7) the proteins that respond to DNA damage and are responsible for DNA repair; (8) RNA-exosome components. …”
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  16. 576

    Therapeutic Approaches in Mitochondrial Dysfunction, Inflammation, and Autophagy in Uremic Cachexia: Role of Aerobic Exercise by Yumei Zhang, Yuqing Liu, Xiao Bi, Chun Hu, Feng Ding, Wei Ding

    Published 2019-01-01
    “…In addition, aerobic exercise downregulated the overexpression of proinflammatory cytokines and NLRP3 inflammasome components and balanced the mitochondrial biogenesis and autophagy-lysosomal system. Thus, we observed that aerobic exercise may ameliorate CKD-induced muscle wasting by improving mitochondrial dysfunction, inflammation, and autophagy-lysosomal system in uremic cachexia.…”
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  17. 577

    Bifidobacterium adolescentis-derived nicotinic acid improves host skeletal muscle mitochondrial function to ameliorate sarcopenia by Zeng Zhang, Quan Guo, Zhihan Yang, Yukai Sun, Shuaiming Jiang, Yangli He, Jiahe Li, Jiachao Zhang

    Published 2025-02-01
    “…Additionally, NAD+ activation enhances the silent-information-regulator 1 (SIRT1)/peroxisome-proliferator-activated-receptor-γ-coactivator 1-alpha (PGC-1α) axis, stimulating mitochondrial biogenesis and promoting oxidative metabolism in slow-twitch fibers, ultimately improving muscle function. …”
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  18. 578

    Evaluation of reference genes for gene expression analysis in Japanese flounder (Paralichthys olivaceus) under temperature stress by Ping Han, Jianming Chen, Zhennan Sun, Shengjie Ren, Xubo Wang

    Published 2025-02-01
    “…Results In this study, we evaluated the suitability of eight genes including ribosomal protein L6 (rpl6), ribosomal protein L9 (rpl9), delta (4)-desaturase, sphingolipid 1 (degs1), cathepsin L (ctsl), eukaryotic translation elongation factor 1 gamma (eef1g), NSA2 ribosome biogenesis homolog (nsa2), eukaryotic translation initiation factor 3, subunit E, a (eif3ea), glutamine amidotransferase class 1 domain containing 1 (gatd1) analyzed from RNA sequencing (RNA-Seq) data and two genes including β-actin (actb) and 18S rRNA ribosomal RNA (18S RNA) selected from literature to obtain the best internal controls in qRT-PCR analysis of Japanese flounder under temperature stress. …”
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