Forner Francesca, Furlan Sandra, Salvatori Sergio
Department of Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, D-82152 Martinsried, Germany.
Biochim Biophys Acta. 2010 Jun;1804(6):1334-41. doi: 10.1016/j.bbapap.2010.02.011. Epub 2010 Feb 25.
Myotonic dystrophy type 1 (DM1) is caused by an expansion of CTG repeats at the 3'-UTR of the serine/threonine protein kinase DMPK. Expanded CTG repeats are toxic since they are transcribed into an RNA molecule which is then sequestered within the nucleus in the form of foci. RNA cytotoxicity is linked to the aberrant splicing of several developmentally regulated genes. DMPK transcripts undergo alternative splicing giving rise to many isoforms but do not seem to be involved in the splicing dysregulation of DM1. However, decreased levels of DMPK in DM1 patients and DMPK involvement in muscle weakness and cardiac dysfunction in animal models have been reported. The variability in phenotypic expression of DMPK together with its differential subcellular targeting, suggests that different splicing isoforms may be involved in different signalling pathways, possibly through DMPK-interacting proteins. To gain better insight into the DMPK function, we used mass spectrometry to identify proteins co-segregating with DMPK in soluble complexes isolated from high-speed supernatant of rat muscles. We carried out experiments with native DMPK to preserve the physiological stoichiometry with potential partners. DMPK-containing complexes were isolated and immuno-detected by non-denaturing electrophoresis, gel filtration, ionic-exchange chromatography and immunoprecipitation. DMPK peptides were identified by high-resolution mass spectrometry together with several putative DMPK-binding proteins, including several heat shock proteins such as HSP20/HSPB6, HSP60/CPN60, HSP70 and HSP90. We also obtained evidence of a direct interaction of DMPK with alphaB-crystallin/HSPB5 and HSP25/HSPB1.
1型强直性肌营养不良症(DM1)是由丝氨酸/苏氨酸蛋白激酶DMPK的3'-非翻译区CTG重复序列扩增引起的。扩增的CTG重复序列具有毒性,因为它们被转录成RNA分子,然后以核内包涵体的形式被隔离在细胞核中。RNA细胞毒性与几个发育调控基因的异常剪接有关。DMPK转录本经历可变剪接产生许多异构体,但似乎不参与DM1的剪接失调。然而,有报道称DM1患者中DMPK水平降低,并且在动物模型中DMPK与肌肉无力和心脏功能障碍有关。DMPK表型表达的变异性及其不同的亚细胞定位表明,不同的剪接异构体可能参与不同的信号通路,可能是通过与DMPK相互作用的蛋白质。为了更好地了解DMPK的功能,我们使用质谱法鉴定了从大鼠肌肉高速上清液中分离的可溶性复合物中与DMPK共分离的蛋白质。我们用天然DMPK进行实验以保持与潜在伴侣的生理化学计量。通过非变性电泳、凝胶过滤、离子交换色谱和免疫沉淀分离并免疫检测含DMPK的复合物。通过高分辨率质谱鉴定DMPK肽以及几种推定的DMPK结合蛋白,包括几种热休克蛋白,如HSP20/HSPB6、HSP60/CPN60、HSP70和HSP90。我们还获得了DMPK与αB-晶状体蛋白/HSPB5和HSP25/HSPB1直接相互作用的证据。