GLUT3 and PKM2 regulate OCT4 expression and support the hypoxic culture of human embryonic stem cells

被引:46
作者
Christensen, David R. [1 ,2 ]
Calder, Philip C. [2 ,3 ,4 ]
Houghton, Franchesca D. [1 ,2 ]
机构
[1] Univ Southampton, Fac Med, Ctr Human Dev Stem Cells & Regenerat, Southampton SO16 6YD, Hants, England
[2] Univ Southampton, Fac Med, Human Dev & Hlth Acad Unit, Southampton SO16 6YD, Hants, England
[3] Univ Southampton, NIHR Southampton Biomed Res Ctr, Southampton SO16 6YD, Hants, England
[4] Univ Hosp Southampton NHS Fdn Trust, Southampton SO16 6YD, Hants, England
基金
英国医学研究理事会;
关键词
PYRUVATE-KINASE M2; NUCLEAR TRANSLOCATION; GLUCOSE TRANSPORTERS; GENE-TRANSCRIPTION; UP-REGULATION; METABOLISM; PLURIPOTENCY; PROTEIN; LINES; PHOSPHORYLATION;
D O I
10.1038/srep17500
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
Human embryonic stem cells (hESCs) have the capacity to differentiate into all cell types and thus have great potential for regenerative medicine. hESCs cultured at low oxygen tensions are more pluripotent and display an increased glycolytic rate but how this is regulated is unknown. This study therefore aimed to investigate the regulation of glucose metabolism in hESCs and whether this might impact OCT4 expression. In contrast to the glucose transporter GLUT1, GLUT3 was regulated by environmental oxygen and localised to hESC membranes. Silencing GLUT3 caused a reduction in glucose uptake and lactate production as well as OCT4 expression. GLUT3 and OCT4 expression were correlated suggesting that hESC self-renewal is regulated by the rate of glucose uptake. Surprisingly, PKM2, a rate limiting enzyme of glycolysis displayed a nuclear localisation in hESCs and silencing PKM2 did not alter glucose metabolism suggesting a role other than as a glycolytic enzyme. PKM2 expression was increased in hESCs cultured at 5% oxygen compared to 20% oxygen and silencing PKM2 reduced OCT4 expression highlighting a transcriptional role for PKM2 in hESCs. Together, these data demonstrate two separate mechanisms by which genes regulating glucose uptake and metabolism are involved in the hypoxic support of pluripotency in hESCs.
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页数:14
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