Search Results - "Shankar, Rani"

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    G9a promotes proliferation and inhibits cell cycle exit during myogenic differentiation by Rao, Vinay Kumar, Ow, Jin Rong, Shankar, Shilpa Rani, Bharathy, Narendra, Manikandan, Jayapal, Wang, Yaju, Taneja, Reshma

    Published in Nucleic acids research (30-09-2016)
    “…Differentiation of skeletal muscle cells, like most other cell types, requires a permanent exit from the cell cycle. The epigenetic programming underlying…”
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    Journal Article
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    The Practice of Prelacteal Feeding to Newborns Among Hindu and Muslim Families by McKenna, Kathleen M., Shankar, Rani T.

    Published in Journal of midwifery & women's health (01-01-2009)
    “…ABSTRACT A 21‐year‐old gravida 2, para 1001 female at 39 weeks and 4/7 days gestation was admitted to the labor and birth unit in active labor. She moved to…”
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    Unraveling the role of aurora A beyond centrosomes and spindle assembly: implications in muscle differentiation by Dhanasekaran, Karthigeyan, Bose, Arnab, Rao, Vinay J., Boopathi, Ramachandran, Shankar, Shilpa Rani, Rao, Vinay Kumar, Swaminathan, Amrutha, Vasudevan, Madavan, Taneja, Reshma, Kundu, Tapas K.

    Published in The FASEB journal (01-01-2019)
    “…ABSTRACT Aurora kinases are critical mitotic serine/threonine kinases and are often implicated in tumorigenesis. Recent studies of the interphase functions for…”
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    G9a mediates Sharp-1-dependent inhibition of skeletal muscle differentiation by Ling, Belinda Mei Tze, Gopinadhan, Suma, Kok, Wai Kay, Shankar, Shilpa Rani, Gopal, Pooja, Bharathy, Narendra, Wang, Yaju, Taneja, Reshma

    Published in Molecular biology of the cell (15-12-2012)
    “…Sharp-1, a basic helix-loop-helix transcription factor, is a potent repressor of skeletal muscle differentiation and is dysregulated in muscle pathologies…”
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    Sumoylation of the Basic Helix-Loop-Helix Transcription Factor Sharp-1 Regulates Recruitment of the Histone Methyltransferase G9a and Function in Myogenesis by Wang, Yaju, Shankar, Shilpa Rani, Kher, Devaki, Ling, Belinda Mei Tze, Taneja, Reshma

    Published in The Journal of biological chemistry (14-06-2013)
    “…Sumoylation is an important post-translational modification that alters the activity of many transcription factors. However, the mechanisms that link…”
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    Functional differences in mesenchymal stromal cells from human dental pulp and periodontal ligament by Vasandan, Anoop Babu, Shankar, Shilpa Rani, Prasad, Priya, Sowmya Jahnavi, Vulugundam, Bhonde, Ramesh Ramachandra, Jyothi Prasanna, Susarla

    Published in Journal of cellular and molecular medicine (01-02-2014)
    “…Clinically reported reparative benefits of mesenchymal stromal cells (MSCs) are majorly attributed to strong immune‐modulatory abilities not exactly shared by…”
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    An interplay between BRD4 and G9a regulates skeletal myogenesis by Yang, Naidi, Das, Dipanwita, Shankar, Shilpa Rani, Goy, Pierre-Alexis, Guccione, Ernesto, Taneja, Reshma

    “…Histone acetylation and methylation are epigenetic modifications that are dynamically regulated by chromatin modifiers to precisely regulate gene expression…”
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    Pro-inflammatory cytokines, IFNgamma and TNFalpha, influence immune properties of human bone marrow and Wharton jelly mesenchymal stem cells differentially by Prasanna, S Jyothi, Gopalakrishnan, Divya, Shankar, Shilpa Rani, Vasandan, Anoop Babu

    Published in PloS one (02-02-2010)
    “…Wharton's jelly derived stem cells (WJMSCs) are gaining attention as a possible clinical alternative to bone marrow derived mesenchymal stem cells (BMMSCs)…”
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    Visceral abdominal-fat accumulation associated with use of indinavir by Miller, Kirk D, Jones, Elizabeth, Yanovski, Jack A, Shankar, Rani, Feuerstein, Irwin, Falloon, Judith

    Published in The Lancet (British edition) (21-03-1998)
    “…After the addition of the protease inhibitor indinavir to combination drug regimens for HIV-1 infection, some patients have experienced an increase in…”
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    Pro-Inflammatory Cytokines, IFNγ and TNFα, Influence Immune Properties of Human Bone Marrow and Wharton Jelly Mesenchymal Stem Cells Differentially by Prasanna, S. Jyothi, Gopalakrishnan, Divya, Shankar, Shilpa Rani, Vasandan, Anoop Babu

    Published in PloS one (02-02-2010)
    “…Background Wharton's jelly derived stem cells (WJMSCs) are gaining attention as a possible clinical alternative to bone marrow derived mesenchymal stem cells…”
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    Clinical round: The Practice of Prelacteal Feeding to Newborns Among Hindu and Muslim Families by McKenna, Kathleen M, Shankar, Rani T

    Published in Journal of midwifery & women's health (01-01-2009)
    “…A 21-year-old gravida 2, para 1001 female at 39 weeks and 4/7 days gestation was admitted to the labor and birth unit in active labor. She moved to the United…”
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    Journal Article
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    G9a, a multipotent regulator of gene expression by Shankar, Shilpa Rani, Bahirvani, Avinash G., Rao, Vinay Kumar, Bharathy, Narendra, Ow, Jin Rong, Taneja, Reshma

    Published in Epigenetics (01-01-2013)
    “…Lysine methylation of histone and non-histone substrates by the methyltransferase G9a is mostly associated with transcriptional repression. Recent studies,…”
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    Chromatin Immunoprecipitation in Skeletal Myoblasts by Rao, Vinay Kumar, Shankar, Shilpa Rani, Taneja, Reshma

    “…Chromatin immunoprecipitation (ChIP) is a powerful and sensitive technique that is widely used to study DNA-protein interactions. It enables an unbiased…”
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    SUMOylation of G9a regulates its function as an activator of myoblast proliferation by Srinivasan, Shruti, Shankar, Shilpa Rani, Wang, Yaju, Taneja, Reshma

    Published in Cell death & disease (13-03-2019)
    “…The lysine methyltransferase G9a plays a role in many cellular processes. It is a potent repressor of gene expression, a function attributed to its ability to…”
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    Sharp-1 regulates TGF-β signaling and skeletal muscle regeneration by Acharjee, Sujata, Chung, Teng-Kai, Gopinadhan, Suma, Shankar, Shilpa Rani, Wang, Yaju, Li, Li, Vercherat, Cecile, Gulbagci, Neriman Tuba, Rossner, Moritz, Taneja, Reshma

    Published in Journal of cell science (01-02-2014)
    “…Sharp-1 is a basic helix-loop-helix (bHLH) transcriptional repressor that is involved in a number of cellular processes. Our previous studies have demonstrated…”
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