Results for 'adipogenesis'

5 found
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  1.  27
    The curious case of TMEM120A: Mechanosensor, fat regulator, or antiviral defender?Nianchao Qian, Shuo Li & Xu Tan - 2022 - Bioessays 44 (6):2200045.
    Mechanical pain sensing, adipogenesis, and STING‐dependent innate immunity seem three distinct biological processes without substantial relationships. Intriguingly, TMEM120A, a transmembrane protein, has been shown to detect mechanical pain stimuli as a mechanosensitive channel, contribute to adipocyte differentiation/function by regulating genome organization and promote STING trafficking to active cellular innate immune response. However, the role of TMEM120A as a mechanosensitive channel was challenged by recent studies which cannot reproduce data supporting its role in mechanosensing. Furthermore, the molecular mechanism by which (...)
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  2.  48
    Protein partners of KCTD proteins provide insights about their functional roles in cell differentiation and vertebrate development.Mikhail Skoblov, Andrey Marakhonov, Ekaterina Marakasova, Anna Guskova, Vikas Chandhoke, Aybike Birerdinc & Ancha Baranova - 2013 - Bioessays 35 (7):586-596.
    The KCTD family includes tetramerization (T1) domain containing proteins with diverse biological effects. We identified a novel member of the KCTD family, BTBD10. A comprehensive analysis of protein‐protein interactions (PPIs) allowed us to put forth a number of testable hypotheses concerning the biological functions for individual KCTD proteins. In particular, we predict that KCTD20 participates in the AKT‐mTOR‐p70 S6k signaling cascade, KCTD5 plays a role in cytokinesis in a NEK6 and ch‐TOG‐dependent manner, KCTD10 regulates the RhoA/RhoB pathway. Developmental regulator KCTD15 (...)
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  3.  21
    Alternative splicing switches: Important players in cell differentiation.Ana Fiszbein & Alberto R. Kornblihtt - 2017 - Bioessays 39 (6):1600157.
    Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generation of multiple mature mRNAs from a limited number of genes. Although the massive switch in AS profiles that often accompanies variations in gene expression patterns occurring during cell differentiation has been characterized for a variety of models, their causes and mechanisms remain largely unknown. Here, we integrate foundational and recent studies indicating the AS switches that govern the processes of cell fate determination. We include some distinct (...)
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  4.  40
    Of bears, frogs, meat, mice and men: complexity of factors affecting skeletal muscle mass and fat.Thea Shavlakadze & Miranda Grounds - 2006 - Bioessays 28 (10):994-1009.
    Extreme loss of skeletal muscle mass (atrophy) occurs in human muscles that are not used. In striking contrast, skeletal muscles do not rapidly waste away in hibernating mammals such as bears, or aestivating frogs, subjected to many months of inactivity and starvation. What factors regulate skeletal muscle mass and what mechanisms protect against muscle atrophy in some species? Severe atrophy also occurs with ageing and there is much clinical interest in reducing such loss of muscle mass and strength (sarcopenia). In (...)
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  5.  53
    Hedgehog signalling as an antagonist of ageing and its associated diseases.Monireh Dashti, Maikel P. Peppelenbosch & Farhad Rezaee - 2012 - Bioessays 34 (10):849-856.
    Hedgehog is an important morphogenic signal that directs pattern formation during embryogenesis, but its activity also remains present through adult life. It is now becoming increasingly clear that during the reproductive phase of life and beyond it continues to direct cell renewal (which is essential to combat the chronic environmental stress to which the body is constantly exposed) and counteracts vascular, osteolytic and sometimes oncological insults to the body. Conversely, down‐regulation of hedgehog signalling is associated with ageing‐related diseases such as (...)
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