Department of Biochemistry and Molecular Biology, Graduate School of Medical Science, Yamagata University, Yamagata, Japan.
Department of Immunology, Yamagata University Faculty of Medicine, Yamagata, Japan.
Free Radic Res. 2019 Dec;53(11-12):1060-1072. doi: 10.1080/10715762.2019.1677901. Epub 2019 Oct 24.
New Zealand white (NZW) mouse is a mutant strain that has a larval defect in the immune system, and a F1 hybrid between NZW and New Zealand Black mouse spontaneously develops systemic lupus erythematosus (SLE). In meantime, the ablation of superoxide dismutase 1 (Sod1) causes autoimmune haemolytic anaemia, a clinical condition of SLE, in mice with a C57BL/6 background. On the basis of our previous studies, we hypothesised that oxidative stress may trigger this aberrant autoimmunity in NZW mice without crossing with another strain. To validate this, we attempted to establish Sod1/NZW mice but this attempt failed to obtain any objective mouse. The congenic Sod1/NZW male mice were completely infertile because of severe oligozoospermia attributed to a defect in spermatogenesis. The levels of the SOD1 protein were about a half in the testes of the Sod1/NZW mice. Sperm from the Sod1/NZW mice were largely defective and showed quite low fertilising ability in in vitro fertilisation assays. Concomitant with an increase in the oxidatively modified proteins, spermatogenic cells underwent more cell death in the testes of the Sod1/NZW mice compared to those of WT/NZW mice. An examination of immunocompetent cells from Sod1/NZW mice indicated an abnormality in T-cell responses. These collective results suggest that the oxidative stress caused by an SOD1 haploinsufficiency exerts deleterious effects on the testis, either directly on spermatogenic cells or via the destabilisation of the autoimmune response in Sod1/NZW mice.
新西兰白 (NZW) 小鼠是一种免疫系统幼虫缺陷的突变株,NZW 与新西兰黑鼠的 F1 杂种自发发展为系统性红斑狼疮 (SLE)。与此同时,超氧化物歧化酶 1 (Sod1) 的缺失导致 C57BL/6 背景下的小鼠发生自身免疫性溶血性贫血,这是 SLE 的一种临床病症。基于我们之前的研究,我们假设氧化应激可能会引发 NZW 小鼠的这种异常自身免疫反应,而无需与另一品系杂交。为了验证这一点,我们试图建立 Sod1/NZW 小鼠,但未能获得任何客观的小鼠。由于精子发生缺陷,雄性 Sod1/NZW 同基因小鼠完全不育,严重少精症。Sod1/NZW 小鼠睾丸中的 SOD1 蛋白水平约为 WT/NZW 小鼠的一半。Sod1/NZW 小鼠的精子大部分有缺陷,在体外受精试验中受精能力相当低。伴随着氧化修饰蛋白的增加,Sod1/NZW 小鼠睾丸中的生殖细胞比 WT/NZW 小鼠中的生殖细胞经历更多的细胞死亡。对 Sod1/NZW 小鼠免疫活性细胞的检查表明 T 细胞反应异常。这些结果表明,SOD1 杂合不足引起的氧化应激对睾丸产生有害影响,要么直接影响生精细胞,要么通过破坏 Sod1/NZW 小鼠的自身免疫反应的稳定性。