Search Results - "Oleinikova, Galina N."

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    Insulin Downregulates the Expression of ATP-binding Cassette Transporter A-I in Human Hepatoma Cell Line HepG2 in a FOXO1 and LXR Dependent Manner by Shavva, Vladimir S., Babina, Anna V., Nekrasova, Ekaterina V., Lisunov, Alexey V., Dizhe, Ella B., Oleinikova, Galina N., Orlov, Sergey V.

    Published in Cell biochemistry and biophysics (01-03-2023)
    “…ATP-binding cassette transporter A-I (ABCA1) is an ubiquitously expressed protein whose main function is the transmembrane transport of cholesterol and…”
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    PPARγ Represses Apolipoprotein A-I Gene but Impedes TNFα-Mediated ApoA-I Downregulation in HepG2 Cells by Shavva, Vladimir S., Mogilenko, Denis A., Bogomolova, Alexandra M., Nikitin, Artemy A., Dizhe, Ella B., Efremov, Alexander M., Oleinikova, Galina N., Perevozchikov, Andrej P., Orlov, Sergey V.

    Published in Journal of cellular biochemistry (01-09-2016)
    “…ABSTRACT Apolipoprotein A‐I (ApoA‐I) is the main anti‐atherogenic component of human high‐density lipoproteins (HDL). ApoA‐I gene expression is regulated by…”
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    PPAR[gamma] Represses Apolipoprotein A-I Gene but Impedes TNF[alpha]-Mediated ApoA-I Downregulation in HepG2 Cells by Shavva, Vladimir S, Mogilenko, Denis A, Bogomolova, Alexandra M, Nikitin, Artemy A, Dizhe, Ella B, Efremov, Alexander M, Oleinikova, Galina N, Perevozchikov, Andrej P, Orlov, Sergey V

    Published in Journal of cellular biochemistry (01-09-2016)
    “…Apolipoprotein A-I (ApoA-I) is the main anti-atherogenic component of human high-density lipoproteins (HDL). ApoA-I gene expression is regulated by several…”
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    Hepatic nuclear factor 4α positively regulates complement C3 expression and does not interfere with TNFα-mediated stimulation of C3 expression in HepG2 cells by Shavva, Vladimir S., Mogilenko, Denis A., Dizhe, Ella B., Oleinikova, Galina N., Perevozchikov, Andrej P., Orlov, Sergey V.

    Published in Gene (25-07-2013)
    “…Complement C3 is involved in various protective and regulatory mechanisms of immune system. Recently it was established that C3 expression is regulated by…”
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    FOXO1 and LXRα downregulate the apolipoprotein A-I gene expression during hydrogen peroxide-induced oxidative stress in HepG2 cells by Shavva, Vladimir S., Bogomolova, Alexandra M., Nikitin, Artemy A., Dizhe, Ella B., Oleinikova, Galina N., Lapikov, Ivan A., Tanyanskiy, Dmitry A., Perevozchikov, Andrej P., Orlov, Sergey V.

    Published in Cell stress & chaperones (01-01-2017)
    “…Reactive oxygen species damage various cell components including DNA, proteins, and lipids, and these impairments could be a reason for severe human diseases…”
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    Insulin downregulates C3 gene expression in human HepG2 cells through activation of PPARγ by Shavva, Vladimir S., Bogomolova, Alexandra M., Efremov, Alexander M., Trofimov, Alexander N., Nikitin, Artemy A., Babina, Anna V., Nekrasova, Ekaterina V., Dizhe, Ella B., Oleinikova, Galina N., Missyul, Boris V., Orlov, Sergey V.

    Published in European journal of cell biology (01-04-2018)
    “…[Display omitted] •Insulin downregulates human C3 gene in hepatoma cell line HepG2.•PI3K/mTORC1, p38, MEK1/2 pathways take part in the insulin-mediated…”
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    Adiponectin Stimulates Apolipoprotein A-1 Gene Expression in HepG2 Cells via AMPK, PPAR[alpha], and LXRs Signaling Mechanisms by Tanyanskiy, Dmitry A, Shavva, Vladimir S, Dizhe, Ella B, Oleinikova, Galina N, Lizunov, Alexey V, Nekrasova, Ekaterina V, Mogilenko, Denis A

    Published in Biochemistry (Moscow) (01-11-2022)
    “…Adiponectin is an adipose tissue hormone, participating in energy metabolism and involved in atherogenesis. Previously, it was found that adiponectin increases…”
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    FOXO1 and LXR[alpha] downregulate the apolipoprotein A-I gene expression during hydrogen peroxide-induced oxidative stress in HepG2 cells by Shavva, Vladimir S, Bogomolova, Alexandra M, Nikitin, Artemy A, Dizhe, Ella B, Oleinikova, Galina N, Lapikov, Ivan A, Tanyanskiy, Dmitry A, Perevozchikov, Andrej P, Orlov, Sergey V

    Published in Cell stress & chaperones (01-01-2017)
    “…Reactive oxygen species damage various cell components including DNA, proteins, and lipids, and these impairments could be a reason for severe human diseases…”
    Get full text
    Journal Article