Sheibani Sara, Jones Natalie K, Eid Rawan, Gharib Nada, Arab Nagla T T, Titorenko Vladimir, Vali Hojatollah, Young Paul A, Greenwood Michael T
Department of Chemistry and Chemical Engineering, Royal Military College, Kingston, Ontario Department of Anatomy and Cell Biology, McGill University, Montreal, Quebec.
Department of Chemistry and Chemical Engineering, Royal Military College, Kingston, Ontario.
FEMS Yeast Res. 2015 Aug;15(5):fov032. doi: 10.1093/femsyr/fov032. Epub 2015 May 31.
We report the identification of human L- lactate dehydrogenase B (LDHB) as a novel Bax suppressor. Yeast heterologously expressing LDHB is also resistant to the lethal effects of copper indicating that it is a general suppressor of stress mediated cell death. To identify potential LDHB targets, LDHB was expressed in yeast mutants defective in apoptosis, necrosis and autophagy. The absence of functional PCD regulators including MCA1, YBH3, cyclophilin (CPR3) and VMA3, as well as the absence of the pro-survival autophagic pathway (ATG1,7) did not interfere with the LDHB mediated protection against copper indicating that LDHB functions independently of known PCD regulators or by simply blocking or stimulating a common PCD promoting or inhibitory pathway. Measurements of lactate levels revealed that short-term copper stress (1.6 mM, 4 h), does not increase intracellular levels of lactate, instead a three-fold increase in extracellular lactate was observed. Thus, yeast cells resemble mammalian cells where different stresses are known to lead to increased lactate production leading to lactic acidosis. In agreement with this, we found that the addition of exogenous lactic acid to growth media was sufficient to induce cell death that could be inhibited by the expression of LDHB. Taken together our results suggest that lactate dehydrogenase is a general suppressor of PCD in yeast.
我们报告了人类L-乳酸脱氢酶B(LDHB)作为一种新型Bax抑制剂的鉴定。异源表达LDHB的酵母对铜的致死作用也具有抗性,这表明它是应激介导的细胞死亡的一般抑制剂。为了鉴定潜在的LDHB靶点,在凋亡、坏死和自噬缺陷的酵母突变体中表达LDHB。缺乏包括MCA1、YBH3、亲环蛋白(CPR3)和VMA3在内的功能性PCD调节因子,以及缺乏促生存自噬途径(ATG1、7),并不干扰LDHB介导的对铜的保护作用,这表明LDHB的功能独立于已知的PCD调节因子,或者通过简单地阻断或刺激共同的PCD促进或抑制途径来发挥作用。乳酸水平的测量显示,短期铜应激(1.6 mM,4小时)不会增加细胞内乳酸水平,相反,观察到细胞外乳酸增加了三倍。因此,酵母细胞类似于哺乳动物细胞,已知在哺乳动物细胞中不同的应激会导致乳酸产生增加,进而导致乳酸酸中毒。与此一致的是,我们发现向生长培养基中添加外源乳酸足以诱导细胞死亡,而LDHB的表达可以抑制这种细胞死亡。综上所述,我们的结果表明乳酸脱氢酶是酵母中PCD的一般抑制剂。