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肌联蛋白弹簧段免疫球蛋白样结构域缺失改变了小鼠骨骼肌中的肌联蛋白剪接并导致肌病。

Removal of immunoglobulin-like domains from titin's spring segment alters titin splicing in mouse skeletal muscle and causes myopathy.

机构信息

Department of Physiology and 2 Department of Molecular and Cellular Biology, University of Arizona, Tucson, AZ 85721.

出版信息

J Gen Physiol. 2014 Feb;143(2):215-30. doi: 10.1085/jgp.201311129.

DOI:10.1085/jgp.201311129
PMID:24470489
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4001778/
Abstract

Titin is a molecular spring that determines the passive stiffness of muscle cells. Changes in titin's stiffness occur in various myopathies, but whether these are a cause or an effect of the disease is unknown. We studied a novel mouse model in which titin's stiffness was slightly increased by deleting nine immunoglobulin (Ig)-like domains from titin's constitutively expressed proximal tandem Ig segment (IG KO). KO mice displayed mild kyphosis, a phenotype commonly associated with skeletal muscle myopathy. Slow muscles were atrophic with alterations in myosin isoform expression; functional studies in soleus muscle revealed a reduced specific twitch force. Exon expression analysis showed that KO mice underwent additional changes in titin splicing to yield smaller than expected titin isoforms that were much stiffer than expected. Additionally, splicing occurred in the PEVK region of titin, a finding confirmed at the protein level. The titin-binding protein Ankrd1 was highly increased in the IG KO, but this did not play a role in generating small titin isoforms because titin expression was unaltered in IG KO mice crossed with Ankrd1-deficient mice. In contrast, the splicing factor RBM20 (RNA-binding motif 20) was also significantly increased in IG KO mice, and additional differential splicing was reversed in IG KO mice crossed with a mouse with reduced RBM20 activity. Thus, increasing titin's stiffness triggers pathological changes in skeletal muscle, with an important role played by RBM20.

摘要

肌联蛋白是一种分子弹簧,决定着肌肉细胞的被动硬度。肌联蛋白硬度的变化发生在各种肌病中,但这些变化是疾病的原因还是结果尚不清楚。我们研究了一种新型的小鼠模型,该模型通过从肌联蛋白的组成性表达的近端串联免疫球蛋白段中删除九个免疫球蛋白(Ig)样结构域,使肌联蛋白的硬度略有增加(IG KO)。KO 小鼠表现出轻度的脊柱后凸,这是一种与骨骼肌肌病常见相关的表型。慢肌发生萎缩,肌球蛋白同工型表达发生改变;比目鱼肌的功能研究显示,特定的抽搐力降低。外显子表达分析表明,KO 小鼠在肌联蛋白剪接上发生了额外的变化,产生的肌联蛋白亚型比预期的小,硬度比预期的大。此外,肌联蛋白的 PEVK 区域发生了剪接,在蛋白质水平上得到了证实。ANKRD1 是一种肌联蛋白结合蛋白,在 IG KO 中高度增加,但由于 IG KO 小鼠与缺乏 ANKRD1 的小鼠杂交后肌联蛋白表达没有改变,因此它在产生小肌联蛋白亚型中不起作用。相比之下,RNA 结合基序 20(RBM20)在 IG KO 中的表达也显著增加,IG KO 小鼠中发生的其他差异剪接在与 RBM20 活性降低的小鼠杂交后得到逆转。因此,增加肌联蛋白的硬度会引发骨骼肌的病理变化,而 RBM20 起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf3/4001778/bd7dd430007c/JGP_201311129_Fig8.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf3/4001778/bd7dd430007c/JGP_201311129_Fig8.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf3/4001778/bd7dd430007c/JGP_201311129_Fig8.jpg

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Rbm20 regulates titin alternative splicing as a splicing repressor.
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