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硒蛋白 N 缺乏症的小鼠与肺部发育异常有关。

Selenoprotein N deficiency in mice is associated with abnormal lung development.

机构信息

Division of Genetics, The Manton Center for Orphan Disease Research, Boston Children's Hospital, Boston, MA 02115, USA.

出版信息

FASEB J. 2013 Apr;27(4):1585-99. doi: 10.1096/fj.12-212688. Epub 2013 Jan 16.

Abstract

Mutations in the human SEPN1 gene, encoding selenoprotein N (SepN), cause SEPN1-related myopathy (SEPN1-RM) characterized by muscle weakness, spinal rigidity, and respiratory insufficiency. As with other members of the selenoprotein family, selenoprotein N incorporates selenium in the form of selenocysteine (Sec). Most selenoproteins that have been functionally characterized are involved in oxidation-reduction (redox) reactions, with the Sec residue located at their catalytic site. To model SEPN1-RM, we generated a Sepn1-knockout (Sepn1(-/-)) mouse line. Homozygous Sepn1(-/-) mice are fertile, and their weight and lifespan are comparable to wild-type (WT) animals. Under baseline conditions, the muscle histology of Sepn1(-/-) mice remains normal, but subtle core lesions could be detected in skeletal muscle after inducing oxidative stress. Ryanodine receptor (RyR) calcium release channels showed lower sensitivity to caffeine in SepN deficient myofibers, suggesting a possible role of SepN in RyR regulation. SepN deficiency also leads to abnormal lung development characterized by enlarged alveoli, which is associated with decreased tissue elastance and increased quasi-static compliance of Sepn1(-/-) lungs. This finding raises the possibility that the respiratory syndrome observed in patients with SEPN1 mutations may have a primary pulmonary component in addition to the weakness of respiratory muscles.

摘要

人类 SEPN1 基因(编码硒蛋白 N,SepN)的突变会导致 SEPN1 相关性肌病(SEPN1-RM),其特征是肌肉无力、脊柱僵硬和呼吸功能不全。与其他硒蛋白家族成员一样,硒蛋白 N 以硒代半胱氨酸(Sec)的形式掺入硒。大多数具有功能特征的硒蛋白都参与氧化还原(redox)反应,Sec 残基位于其催化位点。为了模拟 SEPN1-RM,我们生成了 Sepn1 敲除(Sepn1(-/-))小鼠品系。纯合性 Sepn1(-/-) 小鼠具有繁殖能力,其体重和寿命与野生型(WT)动物相当。在基线条件下,Sepn1(-/-) 小鼠的肌肉组织学仍然正常,但在诱导氧化应激后,可在骨骼肌中检测到细微的核心病变。Ryanodine 受体(RyR)钙释放通道在缺乏 SepN 的肌纤维中对咖啡因的敏感性降低,表明 SepN 可能在 RyR 调节中发挥作用。SepN 缺乏还会导致异常的肺发育,表现为肺泡增大,这与 Sepn1(-/-) 肺组织的弹性降低和准静态顺应性增加有关。这一发现提示 SEPN1 突变患者中观察到的呼吸综合征除了呼吸肌无力之外,可能还有原发性肺部成分。

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