AMPK Methods and Protocols

(Rick Simeone) #1

References



  1. Hardie DG, Ross FA, Hawley SA (2012)
    AMPK: a nutrient and energy sensor that main-
    tains energy homeostasis. Nat Rev Mol Cell
    Biol 13(4):251–262. https://doi.org/10.
    1038/nrm3311

  2. Hardie DG (2014) AMP-activated protein
    kinase: maintaining energy homeostasis at the
    cellular and whole-body levels. Annu Rev Nutr
    34:31–55. https://doi.org/10.1146/
    annurev-nutr-071812-161148

  3. Scott JW, Hawley SA, Green KA, Anis M,
    Stewart G, Scullion GA, Norman DG, Hardie
    DG (2004) CBS domains form energy-sensing
    modules whose binding of adenosine ligands is
    disrupted by disease mutations. J Clin Invest
    113(2):274–284. https://doi.org/10.1172/
    JCI19874

  4. Kemp BE (2004) Bateman domains and aden-
    osine derivatives form a binding contract. J
    Clin Invest 113(2):182–184. https://doi.
    org/10.1172/JCI20846

  5. Xiao B, Heath R, Saiu P, Leiper FC, Leone P,
    Jing C, Walker PA, Haire L, Eccleston JF, Davis
    CT, Martin SR, Carling D, Gamblin SJ (2007)
    Structural basis for AMP binding to mamma-
    lian AMP-activated protein kinase. Nature 449
    (7161):496–500. https://doi.org/10.1038/
    nature06161

  6. Chen L, Jiao ZH, Zheng LS, Zhang YY, Xie
    ST, Wang ZX, Wu JW (2009) Structural
    insight into the autoinhibition mechanism of
    AMP-activated protein kinase. Nature 459
    (7250):1146–1149. https://doi.org/10.
    1038/nature08075

  7. Xiao B, Sanders MJ, Underwood E, Heath R,
    Mayer FV, Carmena D, Jing C, Walker PA,
    Eccleston JF, Haire LF, Saiu P, Howell SA,
    Aasland R, Martin SR, Carling D, Gamblin SJ
    (2011) Structure of mammalian AMPK and its
    regulation by ADP. Nature 472
    (7342):230–233. https://doi.org/10.1038/
    nature09932

  8. Shackelford DB, Shaw RJ (2009) The LKB1-
    AMPK pathway: metabolism and growth con-
    trol in tumour suppression. Nat Rev Cancer 9
    (8):563–575. https://doi.org/10.1038/
    nrc2676

  9. Hawley SA, Davison M, Woods A, Davies SP,
    Beri RK, Carling D, Hardie DG (1996) Char-
    acterization of the AMP-activated protein
    kinase kinase from rat liver and identification
    of threonine 172 as the major site at which it
    phosphorylates AMP-activated protein kinase.
    J Biol Chem 271(44):27879–27887
    10. Oakhill JS, Chen ZP, Scott JW, Steel R, Castelli
    LA, Ling N, Macaulay SL, Kemp BE (2010)
    beta-Subunit myristoylation is the gatekeeper
    for initiating metabolic stress sensing by
    AMP-activated protein kinase (AMPK). Proc
    Natl Acad Sci U S A 107(45):19237–19241.
    https://doi.org/10.1073/pnas.1009705107
    11. Gowans GJ, Hawley SA, Ross FA, Hardie DG
    (2013) AMP is a true physiological regulator of
    AMP-activated protein kinase by both alloste-
    ric activation and enhancing net phosphoryla-
    tion. Cell Metab 18(4):556–566.https://doi.
    org/10.1016/j.cmet.2013.08.019
    12. Hardie DG, Carling D, Gamblin SJ (2011)
    AMP-activated protein kinase: also regulated
    by ADP? Trends Biochem Sci 36(9):470–477.
    https://doi.org/10.1016/j.tibs.2011.06.004
    13. Davies SP, Helps NR, Cohen PT, Hardie DG
    (1995) 5^0 -AMP inhibits dephosphorylation, as
    well as promoting phosphorylation, of the
    AMP-activated protein kinase. Studies using
    bacterially expressed human protein
    phosphatase-2C alpha and native bovine pro-
    tein phosphatase-2AC. FEBS Lett 377
    (3):421–425. https://doi.org/10.1016/
    0014-5793(95)01368-7
    14. Oakhill JS, Steel R, Chen ZP, Scott JW, Ling N,
    Tam S, Kemp BE (2011) AMPK is a direct
    adenylate charge-regulated protein kinase. Sci-
    ence 332(6036):1433–1435.https://doi.org/
    10.1126/science.1200094
    15. Zhang CS, Jiang B, Li M, Zhu M, Peng Y,
    Zhang YL, Wu YQ, Li TY, Liang Y, Lu Z,
    Lian G, Liu Q, Guo H, Yin Z, Ye Z, Han J,
    Wu JW, Yin H, Lin SY, Lin SC (2014) The
    lysosomal v-ATPase-Ragulator complex is a
    common activator for AMPK and mTORC1,
    acting as a switch between catabolism and
    anabolism. Cell Metab 20(3):526–540.
    https://doi.org/10.1016/j.cmet.2014.06.
    014
    16. Zhang CS, Li MQ, Ma T, Zong Y, Cui JW,
    Feng JW, Wu YQ, Lin SY, Lin SC (2016) Met-
    formin activates AMPK through the lysosomal
    pathway. Cell Metab 24(4):521–522.https://
    doi.org/10.1016/j.cmet.2016.09.003
    17. Zhang YL, Guo H, Zhang CS, Lin SY, Yin Z,
    Peng Y, Luo H, Shi Y, Lian G, Zhang C, Li M,
    Ye Z, Ye J, Han J, Li P, Wu JW, Lin SC (2013)
    AMP as a low-energy charge signal autono-
    mously initiates assembly of AXIN-AMPK-
    LKB1 complex for AMPK activation. Cell
    Metab 18(4):546–555. https://doi.org/10.
    1016/j.cmet.2013.09.005


410 Chen-Song Zhang et al.

Free download pdf