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There are 14566 results for: content related to: The QKI-PLP pathway controls SIRT2 abundance in CNS myelin

  1. Posters


    Volume 59, Issue S1, October 2011, Pages: S42–S154,

    Version of Record online : 17 AUG 2011, DOI: 10.1002/glia.21210

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    SIRT2 overexpression in hepatocellular carcinoma mediates epithelial to mesenchymal transition by protein kinase B/glycogen synthase kinase-3β/β-catenin signaling


    Volume 57, Issue 6, June 2013, Pages: 2287–2298, Juan Chen, Anthony W.H. Chan, Ka-Fai To, Weixian Chen, Zhenzhen Zhang, Jihua Ren, Chunli Song, Yue-Sun Cheung, Paul B.S. Lai, Suk-Hang Cheng, Margaret H.L. Ng, Ailong Huang and Ben C.B. Ko

    Version of Record online : 26 APR 2013, DOI: 10.1002/hep.26278

  3. The Current State of NAD+-Dependent Histone Deacetylases (Sirtuins) as Novel Therapeutic Targets

    Medicinal Research Reviews

    Matthias Schiedel, Dina Robaa, Tobias Rumpf, Wolfgang Sippl and Manfred Jung

    Version of Record online : 17 JAN 2017, DOI: 10.1002/med.21436

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    Modulation of rumpshaker phenotype with wild-type PLP/DM20 suggests several pathogenic mechanisms

    Journal of Neuroscience Research

    Volume 88, Issue 10, 1 August 2010, Pages: 2135–2145, Jennifer A. Barrie, Paul Montague, Saadia Karim, Douglas Kirkham, Klaus-Armin Nave, Thomas J. Anderson, Ian R. Griffiths and Mark McLaughlin

    Version of Record online : 19 FEB 2010, DOI: 10.1002/jnr.22379

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    The NAD-dependent deacetylase sirtuin 2 is a suppressor of microglial activation and brain inflammation

    The EMBO Journal

    Volume 32, Issue 19, October 2, 2013, Pages: 2603–2616, Teresa Faria Pais, Éva M Szegő, Oldriska Marques, Leonor Miller-Fleming, Pedro Antas, Patrícia Guerreiro, Rita Machado de Oliveira, Burcu Kasapoglu and Tiago Fleming Outeiro

    Version of Record online : 6 SEP 2013, DOI: 10.1038/emboj.2013.200

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    SIRT2 down-regulation in HeLa can induce p53 accumulation via p38 MAPK activation-dependent p300 decrease, eventually leading to apoptosis

    Genes to Cells

    Volume 16, Issue 1, January 2011, Pages: 34–45, Yanze Li, Haruka Matsumori, Yuji Nakayama, Mitsuhiko Osaki, Hirotada Kojima, Akihiro Kurimasa, Hisao Ito, Seiichi Mori, Motonobu Katoh, Mitsuo Oshimura and Toshiaki Inoue

    Version of Record online : 9 NOV 2010, DOI: 10.1111/j.1365-2443.2010.01460.x

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    SIRT2 deacetylates FOXO3a in response to oxidative stress and caloric restriction

    Aging Cell

    Volume 6, Issue 4, August 2007, Pages: 505–514, Fei Wang, Margaret Nguyen, F. Xiao-Feng Qin and Qiang Tong

    Version of Record online : 18 APR 2007, DOI: 10.1111/j.1474-9726.2007.00304.x

  8. Posters


    Volume 61, Issue S1, July 2013, Pages: S49–S216,

    Version of Record online : 14 JUN 2013, DOI: 10.1002/glia.22530

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    Role of NAD-dependent deacetylases SIRT1 and SIRT2 in radiation and cisplatin-induced cell death in vertebrate cells

    Genes to Cells

    Volume 10, Issue 4, April 2005, Pages: 321–332, Nobuko Matsushita, Yasunari Takami, Masayo Kimura, Seiji Tachiiri, Masamichi Ishiai, Takeo Nakayama and Minoru Takata

    Version of Record online : 1 MAR 2005, DOI: 10.1111/j.1365-2443.2005.00836.x

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    SIRT2 induces the checkpoint kinase BubR1 to increase lifespan

    The EMBO Journal

    Volume 33, Issue 13, 1 July 2014, Pages: 1438–1453, Brian J North, Michael A Rosenberg, Karthik B Jeganathan, Angela V Hafner, Shaday Michan, Jing Dai, Darren J Baker, Yana Cen, Lindsay E Wu, Anthony A Sauve, Jan M van Deursen, Anthony Rosenzweig and David A Sinclair

    Version of Record online : 13 MAY 2014, DOI: 10.15252/embj.201386907

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    SIRT2 is a negative regulator of anoxia–reoxygenation tolerance via regulation of 14-3-3 ζ and BAD in H9c2 cells

    FEBS Letters

    Volume 582, Issue 19, August 20, 2008, Pages: 2857–2862, Edward G. Lynn, Christopher J. McLeod, Jeffrey P. Gordon, Jianjun Bao and Michael N. Sack

    Version of Record online : 18 JUL 2008, DOI: 10.1016/j.febslet.2008.07.016

  12. Sox10 is required for Schwann-cell homeostasis and myelin maintenance in the adult peripheral nerve


    Volume 59, Issue 7, July 2011, Pages: 1022–1032, Magdalena Bremer, Franziska Fröb, Tatjana Kichko, Peter Reeh, Ernst R. Tamm, Ueli Suter and Michael Wegner

    Version of Record online : 12 APR 2011, DOI: 10.1002/glia.21173

  13. SIRT2 mediates NADH-induced increases in Nrf2, GCL, and glutathione by modulating Akt phosphorylation in PC12 cells

    FEBS Letters

    Volume 590, Issue 14, July 2016, Pages: 2241–2255, Wei Cao, Yunyi Hong, Heyu Chen, Fan Wu, Xunbin Wei and Weihai Ying

    Version of Record online : 17 JUN 2016, DOI: 10.1002/1873-3468.12236

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    SIRT2 inhibition exacerbates neuroinflammation and blood–brain barrier disruption in experimental traumatic brain injury by enhancing NF-κB p65 acetylation and activation

    Journal of Neurochemistry

    Volume 136, Issue 3, February 2016, Pages: 581–593, Fang Yuan, Zhi-Ming Xu, Li-Yan Lu, Hui Nie, Jun Ding, Wei-Hai Ying and Heng-Li Tian

    Version of Record online : 7 DEC 2015, DOI: 10.1111/jnc.13423

  15. Structure–Activity Studies on Suramin Analogues as Inhibitors of NAD+-Dependent Histone Deacetylases (Sirtuins)


    Volume 2, Issue 10, October 8, 2007, Pages: 1419–1431, Johannes Trapp, Rene Meier, Darunee Hongwiset, Matthias U. Kassack, Wolfgang Sippl and Manfred Jung

    Version of Record online : 12 JUL 2007, DOI: 10.1002/cmdc.200700003

  16. The Discovery of a Highly Selective 5,6,7,8-Tetrahydrobenzo[4,5]thieno[2,3-d]pyrimidin-4(3H)-one SIRT2 Inhibitor that is Neuroprotective in an in vitro Parkinson’s Disease Model


    Volume 10, Issue 1, January 2015, Pages: 69–82, Dr. Paolo Di Fruscia, Emmanouil Zacharioudakis, Chang Liu, Dr. Sébastien Moniot, Sasiwan Laohasinnarong, Mattaka Khongkow, Ian F. Harrison, Konstantina Koltsida, Dr. Christopher R. Reynolds, Karin Schmidtkunz, Prof. Dr. Manfred Jung, Dr. Kathryn L. Chapman, Prof. Dr. Clemens Steegborn, Prof. David T. Dexter, Prof. Michael J. E. Sternberg, Prof. Eric W.-F. Lam and Dr. Matthew J. Fuchter

    Version of Record online : 13 NOV 2014, DOI: 10.1002/cmdc.201402431

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    SIRT2 knockdown increases basal autophagy and prevents postslippage death by abnormally prolonging the mitotic arrest that is induced by microtubule inhibitors

    The FEBS Journal

    Volume 281, Issue 11, June 2014, Pages: 2623–2637, Toshiaki Inoue, Yuji Nakayama, Yanze Li, Haruka Matsumori, Haruka Takahashi, Hirotada Kojima, Hideki Wanibuchi, Motonobu Katoh and Mitsuo Oshimura

    Version of Record online : 30 APR 2014, DOI: 10.1111/febs.12810

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    Molecular Docking and Dynamics Simulation, Receptor-based Hypothesis: Application to Identify Novel Sirtuin 2 Inhibitors

    Chemical Biology & Drug Design

    Volume 80, Issue 2, August 2012, Pages: 315–327, Sugunadevi Sakkiah, Sundarapandian Thangapandian, Chanin Park, Minky Son and Keun W. Lee

    Version of Record online : 21 JUN 2012, DOI: 10.1111/j.1747-0285.2012.01406.x

  19. High glucose-induced oxidative stress represses sirtuin deacetylase expression and increases histone acetylation leading to neural tube defects

    Journal of Neurochemistry

    Volume 137, Issue 3, May 2016, Pages: 371–383, Jingwen Yu, Yanqing Wu and Peixin Yang

    Version of Record online : 17 MAR 2016, DOI: 10.1111/jnc.13587

  20. You have full text access to this OnlineOpen article
    Sirtuin 2 aggravates postischemic liver injury by deacetylating mitogen-activated protein kinase phosphatase-1


    Volume 65, Issue 1, January 2017, Pages: 225–236, Jie Wang, Hyoung-Won Koh, Lu Zhou, Ui-Jin Bae, Hwa-Suk Lee, In Hyuk Bang, Sun-O Ka, Seon-Hee Oh, Eun Ju Bae and Byung-Hyun Park

    Version of Record online : 7 OCT 2016, DOI: 10.1002/hep.28777