OAK

AKT-induced PKM2 phosphorylation signals for IGF-1-stimulated cancer cell growth

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Abstract
Pyruvate kinase muscle type 2 (PKM2) exhibits post-translational modifications in response to various signals from the tumor microenvironment. Insulin-like growth factor 1 (IGF-1) is a crucial signal in the tumor microenvironment that promotes cell growth and survival in many human cancers. Herein, we report that AKT directly interacts with PKM2 and phosphorylates it at Ser-202, which is essential for the nuclear translocation of PKM2 protein under stimulation of IGF-1. In the nucleus, PKM2 binds to STAT5A and induces IGF-1-stimulated cyclin D1 expression, suggesting that PKM2 acts as an important factor inducing STAT5A activation under IGF-1 signaling. Concordantly, overexpression of STAT5A in cells deficient in PKM2 expression failed to restore IGF-induced growth, whereas reconstitution of PKM2 in PKM2 knockdown cells restored the IGF-induced growth capacity. Our findings suggest a novel role of PKM2 in promoting the growth of cancers with dysregulated IGF/phosphoinositide 3-kinase/AKT signaling.
Author(s)
Park, Young SooKim, Dong JoonKoo, HanJang, Se HwanYou, Yeon-MiCho, Jung HeeYang, Suk-JinYu, Eun SilJung, YuriLee, Dong ChulKim, Jung-AePark, Zee-YongPark, Kyung ChanYeom, Young Il
Issued Date
2016-07
Type
Article
DOI
10.18632/oncotarget.10179
URI
https://scholar.gist.ac.kr/handle/local/14175
Publisher
Impact Journals LLC
Citation
Oncotarget, v.7, no.30, pp.48155 - 48167
ISSN
1949-2553
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
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