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Review
. 2016 Dec;1866(2):232-251.
doi: 10.1016/j.bbcan.2016.09.006. Epub 2016 Sep 25.

Functional characterization of AMP-activated protein kinase signaling in tumorigenesis

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Review

Functional characterization of AMP-activated protein kinase signaling in tumorigenesis

Ji Cheng et al. Biochim Biophys Acta. 2016 Dec.

Abstract

AMP-activated protein kinase (AMPK) is a ubiquitously expressed metabolic sensor among various species. Specifically, cellular AMPK is phosphorylated and activated under certain stressful conditions, such as energy deprivation, in turn to activate diversified downstream substrates to modulate the adaptive changes and maintain metabolic homeostasis. Recently, emerging evidences have implicated the potential roles of AMPK signaling in tumor initiation and progression. Nevertheless, a comprehensive description on such topic is still in scarcity, especially in combination of its biochemical features with mouse modeling results to elucidate the physiological role of AMPK signaling in tumorigenesis. Hence, we performed this thorough review by summarizing the tumorigenic role of each component along the AMPK signaling, comprising of both its upstream and downstream effectors. Moreover, their functional interplay with the AMPK heterotrimer and exclusive efficacies in carcinogenesis were chiefly explained among genetically altered mice models. Importantly, the pharmaceutical investigations of AMPK relevant medications have also been highlighted. In summary, in this review, we not only elucidate the potential functions of AMPK signaling pathway in governing tumorigenesis, but also potentiate the future targeted strategy aiming for better treatment of aberrant metabolism-associated diseases, including cancer.

Keywords: AMPK; Energy deprivation; Kinase; LKB1; Metformin; Mouse models; Tumorigenesis.

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Figures

Figure 1
Figure 1
The graphical demonstration of the AMPK complex and its signaling components including both upstream regulators and downstream effectors.
Figure 2
Figure 2
The clinical relevance of AMPK-targeted therapies in combating human disorders including diabetes, neoplasms, ischemia and inflammation.

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