Huang T T, Carlson E J, Raineri I, Gillespie A M, Kozy H, Epstein C J
Department of Pediatrics, University of California, San Francisco 94143-0748, USA.
Ann N Y Acad Sci. 1999;893:95-112. doi: 10.1111/j.1749-6632.1999.tb07820.x.
To distinguish the role of Mn superoxide dismutase (MnSOD) from that of cytoplasmic CuZn superoxide dismutase (CuZnSOD), the mouse MnSOD gene (Sod2) was inactivated by homologous recombination. Sod2 -/- mice on a CD1 (outbred) genetic background die within the first 10 days of life (mean, 5.4 days) with a complex phenotype that includes dilated cardiomyopathy, accumulation of lipid in liver and skeletal muscle, metabolic acidosis and ketosis, and a severe reduction in succinate dehydrogenase (complex II) and aconitase (a TCA cycle enzyme) activities in the heart and, to a lesser extent, in other organs. These findings indicate that MnSOD is required to maintain the integrity of mitochondrial enzymes susceptible to direct inactivation by superoxide. On the other hand, Lebovitz et al. reported an independently derived MnSod null mouse (Sod2tmlLeb) on a mixed C57BL/6 and 129Sv background with a different phenotype. Because a difference in genetic background is the most likely explanation for the phenotypic differences, the two mutant lines were crossed into different genetic backgrounds for further analyses. To study the phenotype of Sod2tmlLeb mice CD1 background, the Sod2tmlLeb mice were crossed to CD1 for two generations before the -/+ mice were intercrossed to generate -/- mice. The life span distribution of CD1 < Sod2-/- > Leb was shifted to the left, indicating a shortened life span on the CD1 background. Furthermore, the CD1 < Sod2-/- > Leb mice develop metabolic acidosis at an early stage as was observed with CD1 < Sod2-/- > Cje. When Sod2tmlCje was placed on C57BL/6J (B6) background, the -/- mice were found to die either during midgestation or within the first 4 days after birth. However, when the B6 < Sod2 -/+ > Cje were crossed with DBA/2J (D2) for the generation of B6D2F2 < Sod2-/- > Cje mice, an entirely different phenotype, similar to that described by Lebovitz et al., was observed. The F2 Sod -/- mice were able to survive up to 18 days, and the animals that lived for more than 15 days displayed neurological abnormalities including ataxia and seizures. Their hearts were not as severely affected as were those of the CD1 mice, and neurological degeneration rather than heart defect appears to be the cause of death.
为了区分锰超氧化物歧化酶(MnSOD)与细胞质铜锌超氧化物歧化酶(CuZnSOD)的作用,通过同源重组使小鼠MnSOD基因(Sod2)失活。在CD1(远交)遗传背景下的Sod2 -/- 小鼠在出生后的前10天内死亡(平均5.4天),表现出复杂的表型,包括扩张型心肌病、肝脏和骨骼肌中脂质积累、代谢性酸中毒和酮症,以及心脏中琥珀酸脱氢酶(复合体II)和乌头酸酶(一种三羧酸循环酶)活性严重降低,在其他器官中程度较轻。这些发现表明,MnSOD是维持易受超氧化物直接失活影响的线粒体酶完整性所必需的。另一方面,Lebovitz等人报道了在C57BL/6和129Sv混合背景下独立获得的MnSod基因敲除小鼠(Sod2tmlLeb),其表型不同。由于遗传背景差异最有可能解释表型差异,因此将这两个突变品系杂交到不同的遗传背景中进行进一步分析。为了研究Sod2tmlLeb小鼠在CD1背景下的表型,在将杂合子小鼠相互杂交产生纯合子小鼠之前,先将Sod2tmlLeb小鼠与CD1小鼠杂交两代。CD1 < Sod2-/- > Leb小鼠的寿命分布向左偏移,表明在CD1背景下寿命缩短。此外,CD1 < Sod2-/- > Leb小鼠与CD1 < Sod2-/- > Cje小鼠一样,在早期就出现代谢性酸中毒。当Sod2tmlCje置于C57BL/6J(B6)背景下时,发现纯合子小鼠在妊娠中期或出生后的前4天内死亡。然而,当B6 < Sod2 -/+ > Cje与DBA/2J(D2)杂交产生B6D2F2 < Sod2-/- > Cje小鼠时,观察到一种完全不同的表型,类似于Lebovitz等人描述的表型。F2代Sod -/- 小鼠能够存活长达18天,存活超过15天的动物表现出包括共济失调和癫痫在内的神经异常。它们的心脏不像CD1小鼠那样受到严重影响,神经变性而非心脏缺陷似乎是死亡原因。