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Structural basis of AMPK regulation by adenine nucleotides and glycogen.


ABSTRACT: AMP-activated protein kinase (AMPK) is a central cellular energy sensor and regulator of energy homeostasis, and a promising drug target for the treatment of diabetes, obesity, and cancer. Here we present low-resolution crystal structures of the human ?1?2?1 holo-AMPK complex bound to its allosteric modulators AMP and the glycogen-mimic cyclodextrin, both in the phosphorylated (4.05 Å) and non-phosphorylated (4.60 Å) state. In addition, we have solved a 2.95 Å structure of the human kinase domain (KD) bound to the adjacent autoinhibitory domain (AID) and have performed extensive biochemical and mutational studies. Together, these studies illustrate an underlying mechanism of allosteric AMPK modulation by AMP and glycogen, whose binding changes the equilibria between alternate AID (AMP) and carbohydrate-binding module (glycogen) interactions.

SUBMITTER: Li X 

PROVIDER: S-EPMC4650587 | biostudies-literature | 2015 Jan

REPOSITORIES: biostudies-literature

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Structural basis of AMPK regulation by adenine nucleotides and glycogen.

Li Xiaodan X   Wang Lili L   Zhou X Edward XE   Ke Jiyuan J   de Waal Parker W PW   Gu Xin X   Tan M H Eileen MH   Wang Dongye D   Wu Donghai D   Xu H Eric HE   Melcher Karsten K  

Cell research 20141121 1


AMP-activated protein kinase (AMPK) is a central cellular energy sensor and regulator of energy homeostasis, and a promising drug target for the treatment of diabetes, obesity, and cancer. Here we present low-resolution crystal structures of the human α1β2γ1 holo-AMPK complex bound to its allosteric modulators AMP and the glycogen-mimic cyclodextrin, both in the phosphorylated (4.05 Å) and non-phosphorylated (4.60 Å) state. In addition, we have solved a 2.95 Å structure of the human kinase domai  ...[more]

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