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聚腺苷酸结合蛋白核 1(PABPN1)中眼咽型肌营养不良突变的功能影响

Functional impact of an oculopharyngeal muscular dystrophy mutation in PABPN1.

作者信息

García-Castañeda Maricela, Vega Ana Victoria, Rodríguez Rocío, Montiel-Jaen Maria Guadalupe, Cisneros Bulmaro, Zarain-Herzberg Angel, Avila Guillermo

机构信息

Department of Biochemistry, Cinvestav-IPN AP 14-740, México City, México.

UBIMED FES-Iztacala, National Autonomous University of Mexico, Mexico City, México.

出版信息

J Physiol. 2017 Jul 1;595(13):4167-4187. doi: 10.1113/JP273948. Epub 2017 Apr 25.

Abstract

KEY POINTS

Mutations in the gene encoding poly(A)-binding protein nuclear 1 (PABPN1) result in oculopharyngeal muscular dystrophy (OPMD). This disease is of late-onset, but the underlying mechanism is unclear. Ca stimulates muscle growth and contraction and, because OPMD courses with muscle atrophy and weakness, we hypothesized that the homeostasis of Ca is altered in this disorder. C2C12 myotubes were transfected with cDNAs encoding either PABPN1 or the PABPN1-17A OPMD mutation. Subsequently, they were investigated concerning not only excitation-contraction coupling (ECC) and intracellular levels of Ca , but also differentiation stage and nuclear structure. PABPN1-17A gave rise to: inhibition of Ca release during ECC, depletion of sarcoplasmic reticulum Ca content, reduced expression of ryanodine receptors, altered nuclear morphology and incapability to stimulate myoblast fusion. PABPN1-17A failed to inhibit ECC in adult muscle fibres, suggesting that its effects are primarily related to muscle regeneration.

ABSTRACT

Oculopharyngeal muscular dystrophy (OPMD) is linked to mutations in the gene encoding poly(A)-binding protein nuclear 1 (PABPN1). OPMD mutations consist of an expansion of a tract that contains 10 alanines (to 12-17). This disease courses with muscle weakness that begins in adulthood, but the underlying mechanism is unclear. In the present study, we investigated the functional effects of PABPN1 and an OPMD mutation (PABPN1-17A) using myotubes transfected with cDNAs encoding these proteins (GFP-tagged). PABPN1 stimulated myoblast fusion (100%), whereas PABPN1-17A failed to mimic this effect. Additionally, the OPMD mutation markedly altered nuclear morphology; specifically, it led to nuclei with a more convoluted and ovoid shape. Although PABPN1 and PABPN1-17A modified the expression of sarcoplasmic/endoplasmic reticulum Ca -ATPase and calsequestrin, the corresponding changes did not have a clear impact on [Ca ]. Interestingly, neither L-type Ca channels, nor voltage-gated sarcoplasmic reticulum (SR) Ca release (VGCR) was altered by PABPN1. However, PABPN1-17A produced a selective inhibition of VGCR (50%). This effect probably arises from both lower expression of RyR1 and depletion of SR Ca . The latter, however, was not related to inhibition of store-operated Ca entry. Both PABPN1 constructs promoted a moderated decrease in cytosolic [Ca ], which apparently results from down-regulation of excitation-coupled Ca entry. On the other hand, PABPN1-17A did not alter ECC in muscle fibres, suggesting that adult muscle is less prone to developing deleterious effects. These results demonstrate that PABPN1 proteins regulate essential processes during myotube formation and support the notion that OPMD involves disruption of myogenesis, nuclear structure and homeostasis of Ca .

摘要

关键点

编码聚腺苷酸结合蛋白核1(PABPN1)的基因突变会导致眼咽型肌营养不良(OPMD)。这种疾病发病较晚,但其潜在机制尚不清楚。钙可刺激肌肉生长和收缩,由于OPMD伴有肌肉萎缩和无力,我们推测这种疾病中钙的稳态发生了改变。用编码PABPN1或PABPN1 - 17A OPMD突变体的cDNA转染C2C12肌管。随后,不仅对它们的兴奋 - 收缩偶联(ECC)和细胞内钙水平进行了研究,还对分化阶段和核结构进行了研究。PABPN1 - 17A导致:ECC期间钙释放受到抑制、肌浆网钙含量耗尽、兰尼碱受体表达降低、核形态改变以及无法刺激成肌细胞融合。PABPN1 - 17A未能抑制成年肌纤维中的ECC,这表明其作用主要与肌肉再生有关。

摘要

眼咽型肌营养不良(OPMD)与编码聚腺苷酸结合蛋白核1(PABPN1)的基因突变有关。OPMD突变包括一段含有10个丙氨酸的序列扩展(至12 - 17个)。这种疾病伴有成年期开始的肌肉无力,但其潜在机制尚不清楚。在本研究中,我们使用转染了编码这些蛋白(绿色荧光蛋白标记)的cDNA的肌管,研究了PABPN1和一种OPMD突变体(PABPN1 - 17A)的功能作用。PABPN1刺激成肌细胞融合(100%),而PABPN1 - 17A无法模拟这种作用。此外,OPMD突变显著改变了核形态;具体而言,它导致细胞核形状更加卷曲和呈椭圆形。尽管PABPN1和PABPN1 - 17A改变了肌浆网/内质网钙 - ATP酶和钙结合蛋白的表达,但相应变化对[Ca]没有明显影响。有趣的是,PABPN1既未改变L型钙通道,也未改变电压门控肌浆网(SR)钙释放(VGCR)。然而,PABPN1 - 17A对VGCR产生了选择性抑制(50%)。这种作用可能源于RyR1表达降低和SR钙耗尽。然而,后者与储存 - 操作性钙内流的抑制无关。两种PABPN1构建体均促进了胞质[Ca]的适度降低,这显然是由兴奋偶联钙内流的下调导致的。另一方面,PABPN1 - 17A未改变肌纤维中的ECC,这表明成年肌肉不太容易产生有害影响。这些结果表明,PABPN1蛋白在肌管形成过程中调节重要过程,并支持OPMD涉及肌生成、核结构和钙稳态破坏的观点。

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