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Pyruvate kinase M2 regulates photoreceptor structure, function, and viability

机译:丙酮酸激酶M2调节感光器的结构,功能和生存能力

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Pyruvate kinase M2 (PKM2) is a glycolytic enzyme that is expressed in cancer cells. Its role in tumor metabolism is not definitively established, but investigators have suggested that regulation of PKM2 activity can cause accumulation of glycolytic intermediates and increase flux through the pentose phosphate pathway. Recent evidence suggests that PKM2 also may have non-metabolic functions, including as a transcriptional co-activator in gene regulation. We reported previously that PKM2 is abundant in photoreceptor cells in mouse retinas. In the present study, we conditionally deleted PKM2 (rod-cre PKM2-KO) in rod photoreceptors and found that the absence of PKM2 causes increased expression of PKM1 in rods. Analysis of metabolic flux from U-13C glucose shows that rod-cre PKM2-KO retinas accumulate glycolytic intermediates, consistent with an overall reduction in the amount of pyruvate kinase activity. Rod-cre PKM2-KO mice also have an increased NADPH availability could favor lipid synthesis, but we found no difference in phospholipid synthesis between rod-cre PKM2 KO and PKM2-positive controls. As rod-cre PKM2-KO mice aged, we observed a significant loss of rod function, reduced thickness of the photoreceptor outer segment layer, and reduced expression of photoreceptor proteins, including PDE6β. The rod-cre PKM2-KO retinas showed greater TUNEL staining than wild-type retinas, indicating a slow retinal degeneration. In vitro analysis showed that PKM2 can regulate transcriptional activity from the PDE6β promoter in vitro. Our findings indicate that both the metabolic and transcriptional regulatory functions of PKM2 may contribute to photoreceptor structure, function, and viability.
机译:丙酮酸激酶M2(PKM2)是在癌细胞中表达的糖酵解酶。它在肿瘤代谢中的作用尚未确定,但研究人员建议调节PKM2活性可引起糖酵解中间体的积累并增加通过戊糖磷酸途径的通量。最近的证据表明,PKM2也可能具有非代谢功能,包括在基因调控中作为转录共激活因子。我们以前报道过,PKM2在小鼠视网膜的感光细胞中含量很高。在本研究中,我们有条件地删除了杆感光器中的PKM2(杆-cre PKM2-KO),发现缺少PKM2会导致杆中PKM1的表达增加。从U-13C葡萄糖进行的代谢通量分析表明,棒状PKM2-KO视网膜积聚了糖酵解中间体,这与丙酮酸激酶活性的总体下降是一致的。 Rod-cre PKM2-KO小鼠也具有增加的NADPH利用率,可能有助于脂质合成,但我们发现Rod-cre PKM2 KO和PKM2阳性对照之间的磷脂合成没有差异。随着杆crem PKM2-KO小鼠的衰老,我们观察到杆功能的显着丧失,光感受器外部节段层的厚度减小以及光感受器蛋白(包括PDE6β)的表达降低。杆状PKM2-KO视网膜比野生型视网膜表现出更大的TUNEL染色,表明视网膜变性缓慢。体外分析显示PKM2可以在体外调节PDE6β启动子的转录活性。我们的发现表明,PKM2的代谢和转录调节功能均可能与感光器的结构,功能和生存能力有关。

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