Ansseau Eugénie, Eidahl Jocelyn O, Lancelot Céline, Tassin Alexandra, Matteotti Christel, Yip Cassandre, Liu Jian, Leroy Baptiste, Hubeau Céline, Gerbaux Cécile, Cloet Samuel, Wauters Armelle, Zorbo Sabrina, Meyer Pierre, Pirson Isabelle, Laoudj-Chenivesse Dalila, Wattiez Ruddy, Harper Scott Q, Belayew Alexandra, Coppée Frédérique
Laboratory of Molecular Biology, Research Institute for Health Sciences and Technology, University of Mons, Mons, Belgium.
Center for Gene Therapy, Research Institute at Nationwide Children's Hospital, Columbus, OH, United States of America.
PLoS One. 2016 Jan 27;11(1):e0146893. doi: 10.1371/journal.pone.0146893. eCollection 2016.
Hundreds of double homeobox (DUX) genes map within 3.3-kb repeated elements dispersed in the human genome and encode DNA-binding proteins. Among these, we identified DUX4, a potent transcription factor that causes facioscapulohumeral muscular dystrophy (FSHD). In the present study, we performed yeast two-hybrid screens and protein co-purifications with HaloTag-DUX fusions or GST-DUX4 pull-down to identify protein partners of DUX4, DUX4c (which is identical to DUX4 except for the end of the carboxyl terminal domain) and DUX1 (which is limited to the double homeodomain). Unexpectedly, we identified and validated (by co-immunoprecipitation, GST pull-down, co-immunofluorescence and in situ Proximal Ligation Assay) the interaction of DUX4, DUX4c and DUX1 with type III intermediate filament protein desmin in the cytoplasm and at the nuclear periphery. Desmin filaments link adjacent sarcomere at the Z-discs, connect them to sarcolemma proteins and interact with mitochondria. These intermediate filament also contact the nuclear lamina and contribute to positioning of the nuclei. Another Z-disc protein, LMCD1 that contains a LIM domain was also validated as a DUX4 partner. The functionality of DUX4 or DUX4c interactions with cytoplasmic proteins is underscored by the cytoplasmic detection of DUX4/DUX4c upon myoblast fusion. In addition, we identified and validated (by co-immunoprecipitation, co-immunofluorescence and in situ Proximal Ligation Assay) as DUX4/4c partners several RNA-binding proteins such as C1QBP, SRSF9, RBM3, FUS/TLS and SFPQ that are involved in mRNA splicing and translation. FUS and SFPQ are nuclear proteins, however their cytoplasmic translocation was reported in neuronal cells where they associated with ribonucleoparticles (RNPs). Several other validated or identified DUX4/DUX4c partners are also contained in mRNP granules, and the co-localizations with cytoplasmic DAPI-positive spots is in keeping with such an association. Large muscle RNPs were recently shown to exit the nucleus via a novel mechanism of nuclear envelope budding. Following DUX4 or DUX4c overexpression in muscle cell cultures, we observed their association with similar nuclear buds. In conclusion, our study demonstrated unexpected interactions of DUX4/4c with cytoplasmic proteins playing major roles during muscle differentiation. Further investigations are on-going to evaluate whether these interactions play roles during muscle regeneration as previously suggested for DUX4c.
数百个双同源盒(DUX)基因定位于分散在人类基因组中的3.3 kb重复元件内,并编码DNA结合蛋白。其中,我们鉴定出DUX4,一种导致面肩肱型肌营养不良症(FSHD)的强效转录因子。在本研究中,我们进行了酵母双杂交筛选以及与HaloTag-DUX融合蛋白的蛋白质共纯化或GST-DUX4下拉实验,以鉴定DUX4、DUX4c(除羧基末端结构域外与DUX4相同)和DUX1(仅限于双同源结构域)的蛋白质伴侣。出乎意料的是,我们通过共免疫沉淀、GST下拉、共免疫荧光和原位邻近连接分析鉴定并验证了DUX4、DUX4c和DUX1与细胞质和核周的III型中间丝蛋白结蛋白的相互作用。结蛋白丝在Z盘处连接相邻的肌节,将它们连接到肌膜蛋白并与线粒体相互作用。这些中间丝还接触核纤层并有助于细胞核的定位。另一种含有LIM结构域的Z盘蛋白LMCD1也被验证为DUX4的伴侣。成肌细胞融合时在细胞质中检测到DUX4/DUX4c,这突出了DUX4或DUX4c与细胞质蛋白相互作用的功能。此外,我们通过共免疫沉淀、共免疫荧光和原位邻近连接分析鉴定并验证了几种参与mRNA剪接和翻译的RNA结合蛋白,如C1QBP、SRSF9、RBM3、FUS/TLS和SFPQ作为DUX4/4c的伴侣。FUS和SFPQ是核蛋白,然而据报道它们在神经元细胞中发生细胞质易位,并与核糖核蛋白颗粒(RNP)相关联。其他几个经过验证或鉴定的DUX4/DUX4c伴侣也存在于mRNP颗粒中,并且与细胞质DAPI阳性斑点的共定位与此种关联一致。最近研究表明,大型肌肉RNP通过一种新的核膜出芽机制离开细胞核。在肌肉细胞培养物中过表达DUX4或DUX4c后,我们观察到它们与类似的核芽相关联。总之,我们的研究证明了DUX4/4c与在肌肉分化过程中起主要作用的细胞质蛋白之间存在意想不到的相互作用。正如之前对DUX4c所建议的那样,正在进行进一步研究以评估这些相互作用在肌肉再生过程中是否发挥作用。