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1 型肌强直性营养不良肌肉细胞中钙离子稳态和内质网应激的改变。

Altered Ca2+ homeostasis and endoplasmic reticulum stress in myotonic dystrophy type 1 muscle cells.

机构信息

Department of Genetics, University "Tor Vergata", Roma 00133, Italy.

Department of Neurosciences SNPSRR, University of Padova, Padova 35100, Italy.

出版信息

Genes (Basel). 2013 Jun 4;4(2):275-92. doi: 10.3390/genes4020275.

Abstract

The pathogenesis of Myotonic Dystrophy type 1 (DM1) is linked to unstable CTG repeats in the DMPK gene which induce the mis-splicing to fetal/neonatal isoforms of many transcripts, including those involved in cellular Ca2+ homeostasis. Here we monitored the splicing of three genes encoding for Ca2+ transporters and channels (RyR1, SERCA1 and CACN1S) during maturation of primary DM1 muscle cells in parallel with the functionality of the Excitation-Contraction (EC) coupling machinery. At 15 days of differentiation, fetal isoforms of SERCA1 and CACN1S mRNA were significantly higher in DM1 myotubes compared to controls. Parallel functional studies showed that the cytosolic Ca2+ response to depolarization in DM1 myotubes did not increase during the progression of differentiation, in contrast to control myotubes. While we observed no differences in the size of intracellular Ca2+ stores, DM1 myotubes showed significantly reduced RyR1 protein levels, uncoupling between the segregated ER/SR Ca2+ store and the voltage-induced Ca2+ release machinery, parallel with induction of endoplasmic reticulum (ER) stress markers. In conclusion, our data suggest that perturbed Ca2+ homeostasis, via activation of ER stress, contributes to muscle degeneration in DM1 muscle cells likely representing a premature senescence phenotype.

摘要

1 型肌强直性营养不良(DM1)的发病机制与 DMPK 基因中不稳定的 CTG 重复序列有关,这些重复序列导致许多转录物的胎儿/新生儿异构体发生错误剪接,包括参与细胞内 Ca2+稳态的转录物。在这里,我们在原发性 DM1 肌细胞成熟过程中监测了三个编码 Ca2+转运体和通道(RyR1、SERCA1 和 CACN1S)的基因的剪接情况,同时监测了兴奋-收缩(EC)偶联机制的功能。在分化的第 15 天,与对照组相比,DM1 肌管中 SERCA1 和 CACN1S 的胎儿异构体 mRNA 明显升高。平行的功能研究表明,与对照组肌管相比,DM1 肌管中去极化引起的胞质 Ca2+反应在分化过程中并没有增加。虽然我们没有观察到细胞内 Ca2+储存库的大小有差异,但 DM1 肌管中 RyR1 蛋白水平明显降低,分隔的 ER/SR Ca2+储存库与电压诱导的 Ca2+释放机制解偶联,同时内质网(ER)应激标志物被诱导。总之,我们的数据表明,通过激活内质网应激导致的 Ca2+稳态失调可能导致 DM1 肌细胞中的肌肉退化,这可能代表一种过早衰老表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b95f/3899969/7f2583a15adb/genes-04-00275-g001.jpg

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