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有缺陷的肌浆网Ca2+-ATP酶1蛋白是导致契安尼娜牛先天性假性肌强直的原因。

A defective SERCA1 protein is responsible for congenital pseudomyotonia in Chianina cattle.

作者信息

Sacchetto Roberta, Testoni Stefania, Gentile Arcangelo, Damiani Ernesto, Rossi Marco, Liguori Rocco, Drögemüller Cord, Mascarello Francesco

机构信息

Department of Experimental Veterinary Sciences, University of Padova, Padova, Italy.

出版信息

Am J Pathol. 2009 Feb;174(2):565-73. doi: 10.2353/ajpath.2009.080659. Epub 2008 Dec 30.

Abstract

Recently, a muscular disorder defined as "congenital pseudomyotonia" was described in Chianina cattle, one of the most important Italian cattle breeds for quality meat and leather. The clinical phenotype of this disease is characterized by an exercise-induced muscle contracture that prevents animals from performing muscular activities. On the basis of clinical symptoms, Chianina pseudomyotonia appeared related to human Brody's disease, a rare inherited disorder of skeletal muscle function that results from a sarcoplasmic reticulum Ca(2+)-ATPase (SERCA1) deficiency caused by a defect in the ATP2A1 gene that encodes SERCA1. SERCA1 is involved in transporting calcium from the cytosol to the lumen of the sarcoplasmic reticulum. Recently, we identified the genetic defect underlying Chianina cattle pseudomyotonia. A missense mutation in exon 6 of the ATP2A1 gene, leading to an R164H substitution in the SERCA1 protein, was found. In this study, we provide biochemical evidence for a selective deficiency in SERCA1 protein levels in sarcoplasmic reticulum membranes from affected muscles, although mRNA levels are unaffected. The reduction of SERCA1 levels accounts for the reduced Ca(2+)-ATPase activity without any significant change in Ca(2+)-dependency. The loss of SERCA1 is not compensated for by the expression of the SERCA2 isoform. We believe that Chianina cattle pseudomyotonia might, therefore, be the true counterpart of human Brody's disease, and that bovine species might be used as a suitable animal model.

摘要

最近,在契安尼娜牛(意大利最重要的优质肉用和皮革用牛品种之一)中发现了一种被定义为“先天性假性肌强直”的肌肉疾病。这种疾病的临床表型特征是运动诱发的肌肉挛缩,导致动物无法进行肌肉活动。基于临床症状,契安尼娜牛假性肌强直似乎与人类布罗迪病有关,布罗迪病是一种罕见的遗传性骨骼肌功能障碍,由编码肌浆网Ca(2 +)-ATP酶(SERCA1)的ATP2A1基因突变导致SERCA1缺乏引起。SERCA1参与将钙从细胞质转运到肌浆网腔。最近,我们确定了契安尼娜牛假性肌强直的遗传缺陷。发现ATP2A1基因外显子6存在错义突变,导致SERCA1蛋白中的R164H替换。在本研究中,我们提供了生化证据,表明受影响肌肉的肌浆网膜中SERCA1蛋白水平存在选择性缺陷,尽管mRNA水平未受影响。SERCA1水平的降低导致Ca(2 +)-ATP酶活性降低,而Ca(2 +)依赖性没有任何显著变化。SERCA1的缺失没有被SERCA2同工型的表达所补偿。因此,我们认为契安尼娜牛假性肌强直可能是人类布罗迪病的真正对应物,并且牛物种可能用作合适的动物模型。

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