Biodonostia Health Research Institute, Neurosciences Area, San Sebastian, Spain.
Spanish Ministry of Economy & Competitiveness, Carlos III Health Institute, CIBER, Madrid, Spain.
Orphanet J Rare Dis. 2020 May 24;15(1):119. doi: 10.1186/s13023-020-01372-1.
Limb-girdle muscular dystrophy recessive 1 calpain3-related (LGMDR1), previously known as LGMD2A, is a disease caused by mutations in the CAPN3 gene. It is characterized by progressive weakness and muscle degeneration. Frizzled related protein (FRZB), upregulated in LGMDR1, was identified as a key regulator of the crosstalk between Wnt and integrin signalling pathways. FRZB gene silencing showed a recovery in the expression of some of the costamere protein levels in myotubes.
Here, we performed a comprehensive characterization of Frzb mice muscles to study the absence of Frzb in skeletal muscle and eventual links with the molecular characteristics of LGMDR1 patient muscles. Frzb mice showed reduced muscle size and strength. Gait analysis showed that Frzb mice moved more slowly but no impaired regeneration capacity was observed after muscle injury. Additionally, Frzb mice muscle showed an increased number of mesoangioblasts. Lack of Frzb gene in Frzb mice and its increased expression in LGMDR1 patients, showed contrary regulation of Rora, Slc16a1, Tfrc and Capn3 genes. The reciprocal regulation of Frzb and Capn3 genes further supports this axis as a potential target for LGMDR1 patients.
Our data confirm a role for Frzb in the regulation of Rora, Slc16a1, Tfrc, and Capn3 genes in muscle cells. In vivo, reduced muscle strength and gait in the Frzb mice are intriguing features. The reciprocal relationship between FRZB and CAPN3 further supports a key role for this axis in patients with LGMDR1.
隐性肢带型肌营养不良症 1 型钙蛋白酶 3 相关(LGMDR1),以前称为 LGMD2A,是由 CAPN3 基因突变引起的疾病。其特征为进行性肌无力和肌肉退化。在 LGMDR1 中上调的卷曲相关蛋白(FRZB)被鉴定为 Wnt 和整合素信号通路之间串扰的关键调节因子。FRZB 基因沉默显示肌管中一些细胞骨架蛋白水平的表达得到恢复。
在这里,我们对 Frzb 小鼠的肌肉进行了全面表征,以研究 Frzb 在骨骼肌中的缺失以及与 LGMDR1 患者肌肉的分子特征的最终联系。Frzb 小鼠表现出肌肉体积和力量减小。步态分析表明 Frzb 小鼠移动速度较慢,但在肌肉损伤后没有观察到再生能力受损。此外,Frzb 小鼠肌肉中出现了更多的中胚层成肌细胞。Frzb 小鼠缺乏 Frzb 基因及其在 LGMDR1 患者中的高表达,显示出 Rora、Slc16a1、Tfrc 和 Capn3 基因的相反调节。Frzb 和 Capn3 基因的相互调节进一步支持该轴作为 LGMDR1 患者的潜在靶标。
我们的数据证实了 Frzb 在调节肌肉细胞中 Rora、Slc16a1、Tfrc 和 Capn3 基因方面的作用。在体内,Frzb 小鼠的肌肉力量和步态减弱是一个有趣的特征。FRZB 和 CAPN3 之间的相互关系进一步支持了该轴在 LGMDR1 患者中的关键作用。