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Lysine-5 acetylation negatively regulates lactate dehydrogenase A and is decreased in pancreatic cancer.


ABSTRACT: Tumor cells commonly have increased glucose uptake and lactate accumulation. Lactate is produced from pyruvate by lactate dehydrogenase A (LDH-A), which is frequently overexpressed in tumor cells and is important for cell growth. Elevated transcription by c-Myc or HIF1? may contribute to increased LDH-A in some cancer types. Here, we show that LDH-A is acetylated at lysine 5 (K5) and that this acetylation inhibits LDH-A activity. Furthermore, the K5-acetylated LDH-A is recognized by the HSC70 chaperone and delivered to lysosomes for degradation. Replacement of endogenous LDH-A with an acetylation mimetic mutant decreases cell proliferation and migration. Importantly, K5 acetylation of LDH-A is reduced in human pancreatic cancers. Our study reveals a mechanism of LDH-A upregulation in pancreatic cancers.

SUBMITTER: Zhao D 

PROVIDER: S-EPMC3885615 | biostudies-literature | 2013 Apr

REPOSITORIES: biostudies-literature

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Lysine-5 acetylation negatively regulates lactate dehydrogenase A and is decreased in pancreatic cancer.

Zhao Di D   Zou Shao-Wu SW   Liu Ying Y   Zhou Xin X   Mo Yan Y   Wang Ping P   Xu Yan-Hui YH   Dong Bo B   Xiong Yue Y   Lei Qun-Ying QY   Guan Kun-Liang KL  

Cancer cell 20130321 4


Tumor cells commonly have increased glucose uptake and lactate accumulation. Lactate is produced from pyruvate by lactate dehydrogenase A (LDH-A), which is frequently overexpressed in tumor cells and is important for cell growth. Elevated transcription by c-Myc or HIF1α may contribute to increased LDH-A in some cancer types. Here, we show that LDH-A is acetylated at lysine 5 (K5) and that this acetylation inhibits LDH-A activity. Furthermore, the K5-acetylated LDH-A is recognized by the HSC70 ch  ...[more]

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