Department of Gene Expression Regulation, Institute of Development, Aging and Cancer, Tohoku University, 4-1 Seiryo-machi, Aoba-ku, Sendai, Japan.
Department of Preventive Dentistry, Tohoku University Graduate School of Dentistry, 4-1 Seiryo-machi, Aoba-ku, Sendai, Japan.
J Biochem. 2019 Apr 1;165(4):323-334. doi: 10.1093/jb/mvy108.
Metabolites are sensitive indicators of moment-to-moment cellular status and activity. Expecting that tissue-specific metabolic signatures unveil a unique function of the tissue, we examined metabolomes of mouse liver and testis and found that an unusual metabolite, 2-hydroxyglutarate (2-HG), was abundantly accumulated in the testis. 2-HG can exist as D- or L-enantiomer, and both enantiomers interfere with the activities of 2-oxoglutarate (2-OG)-dependent dioxygenases, such as the Jumonji family of histone demethylases. Whereas D-2-HG is produced by oncogenic mutants of isocitrate dehydrogenases (IDH) and known as an oncometabolite, L-2-HG was the major enantiomer detected in the testis, suggesting that a distinct mechanism underlies the testicular production of this metabolite. We clarified that lactate dehydrogenase C (LDHC), a testis-specific lactate dehydrogenase, is responsible for L-2-HG accumulation by generating and analysing Ldhc-deficient mice. Although the inhibitory effects of 2-HG on 2-OG-dependent dioxygenases were barely observed in the testis, the LDHA protein level was remarkably decreased in Ldhc-deficient sperm, indicating that LDHC is required for LDHA expression in the sperm. This unique functional interaction between LDH family members supports lactate dehydrogenase activity in the sperm. The severely impaired motility of Ldhc-deficient sperm suggests a substantial contribution of glycolysis to energy production for sperm motility.
代谢物是细胞状态和活动的瞬时敏感指标。我们预计组织特异性代谢特征揭示了组织的独特功能,因此检查了小鼠肝脏和睾丸的代谢组,发现一种不寻常的代谢物 2-羟戊二酸(2-HG)在睾丸中大量积累。2-HG 可以存在 D-或 L-对映异构体,两者都对 2-氧戊二酸(2-OG)依赖性加氧酶的活性产生干扰,如组蛋白去甲基酶的 Jumonji 家族。虽然 D-2-HG 是由异柠檬酸脱氢酶(IDH)的致癌突变体产生的,被称为致癌代谢物,但 L-2-HG 是在睾丸中检测到的主要对映异构体,这表明该代谢物在睾丸中的产生有独特的机制。我们通过生成和分析 Ldhc 缺陷型小鼠,阐明了乳酸脱氢酶 C(LDHC),一种睾丸特异性乳酸脱氢酶,通过产生和分析 Ldhc 缺陷型小鼠,负责 L-2-HG 的积累。尽管 2-HG 对 2-OG 依赖性加氧酶的抑制作用在睾丸中几乎观察不到,但 Ldhc 缺陷型精子中的 LDHA 蛋白水平显著降低,表明 LDHC 是精子中 LDHA 表达所必需的。LDH 家族成员之间的这种独特的功能相互作用支持精子中的乳酸脱氢酶活性。Ldhc 缺陷型精子的严重运动能力受损表明糖酵解对精子运动的能量产生有很大贡献。