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布鲁迪病和布鲁迪综合征患者肌肉中的 SERCA1 蛋白表达及培养的人肌纤维中的表达。

SERCA1 protein expression in muscle of patients with Brody disease and Brody syndrome and in cultured human muscle fibers.

机构信息

Department of Neurological, Neuropsychological, Morphological and Movement Sciences, Section of Clinical Neurology, University of Verona, Italy.

出版信息

Mol Genet Metab. 2013 Sep-Oct;110(1-2):162-9. doi: 10.1016/j.ymgme.2013.07.015. Epub 2013 Jul 20.

Abstract

Brody disease is an inherited myopathy associated with a defective function of sarcoplasmic/endoplasmic reticulum Ca(2+)-ATPase 1 (SERCA1) protein. Mutations in the ATP2A1 gene have been reported only in some patients. Therefore it has been proposed to distinguish patients with ATP2A1 mutations, Brody disease (BD), from patients without mutations, Brody syndrome (BS). We performed a detailed study of SERCA1 protein expression in muscle of patients with BD and BS, and evaluated the alternative splicing of SERCA1 in primary cultures of normal human muscle and in infant muscle. SERCA1 reactivity was observed in type 2 muscle fibers of patients with and without ATP2A1 mutations and staining intensity was similar in patients and controls. Immunoblot analysis showed a significant reduction of SERCA1 band in muscle of BD patients. In addition we demonstrated that the wild type and mutated protein exhibits similar solubility properties and that RIPA buffer improves the recovery of the wild type and mutated SERCA1 protein. We found that SERCA1b, the SERCA1 neonatal form, is the main protein isoform expressed in cultured human muscle fibers and infant muscle. Finally, we identified two novel heterozygous mutations within exon 3 of the ATP2A1 gene from a previously described patient with BD.

摘要

布罗迪病是一种与肌浆/内质网 Ca(2+) -ATP 酶 1 (SERCA1)蛋白功能缺陷相关的遗传性肌病。已经报道了在 ATP2A1 基因中的突变仅在一些患者中存在。因此,有人提出将具有 ATP2A1 突变的患者(布罗迪病[BD])与无突变的患者(布罗迪综合征[BS])区分开来。我们对 BD 和 BS 患者的肌肉中 SERCA1 蛋白表达进行了详细研究,并评估了正常人类肌肉和婴儿肌肉的原发性培养物中 SERCA1 的选择性剪接。在有和没有 ATP2A1 突变的患者的 2 型肌纤维中观察到 SERCA1 反应性,并且患者和对照之间的染色强度相似。免疫印迹分析显示 BD 患者的肌肉中 SERCA1 带显著减少。此外,我们证明野生型和突变型蛋白表现出相似的溶解性特性,并且 RIPA 缓冲液可改善野生型和突变型 SERCA1 蛋白的回收。我们发现,SERCA1b,即 SERCA1 新生儿形式,是培养的人类肌纤维和婴儿肌肉中表达的主要蛋白同工型。最后,我们在先前描述的 BD 患者的 ATP2A1 基因的外显子 3 中鉴定出两个新的杂合突变。

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