Department of Integrative Biology and Physiology, University of California, Los Angeles, CA 90095, USA.
Hum Mol Genet. 2012 Oct 15;21(20):4378-93. doi: 10.1093/hmg/dds271. Epub 2012 Jul 13.
Sarcospan (SSPN) is a core component of the major adhesion complexes in skeletal muscle, the dystrophin- and utrophin (Utr)-glycoprotein complexes (DGC and UGC). We performed a rigorous analysis of SSPN-null mice and discovered that loss of SSPN decreased DGC and UGC abundance, leading to impaired laminin-binding activity and susceptibility to eccentric contraction-induced injury in skeletal muscle. We show that loss of SSPN increased levels of α7β1 integrin. To genetically test whether integrin compensates for the loss of DGC and UGC function in SSPN-nulls, we generated mice lacking both SSPN and α7 integrin (DKO, double knockout). Muscle regeneration, sarcolemma integrity and fibrosis were exacerbated in DKO mice and were remarkably similar to muscle from Duchenne muscular dystrophy (DMD) patients, suggesting that secondary loss of integrin contributes significantly to pathogenesis. Expression of the DGC and UGC, laminin binding and Akt signaling were negatively impacted in DKO muscle, resulting in severely diminished specific force properties. We demonstrate that SSPN is a necessary component of dystrophin and Utr function and that SSPN modulation of integrin signaling is required for extracellular matrix attachment and muscle force development.
肌肉中的主要黏附复合物——肌营养不良蛋白和 utrophin (Utr)-糖蛋白复合物(DGC 和 UGC——含有 sarcospan (SSPN),是其核心成分。我们对 sarcospan 缺失小鼠进行了严格的分析,发现 SSPN 的缺失减少了 DGC 和 UGC 的丰度,导致层粘连蛋白结合活性受损,易发生离心收缩诱导的骨骼肌损伤。我们表明 SSPN 的缺失会增加α7β1 整合素的水平。为了从遗传学上测试整合素是否能补偿 SSPN 缺失小鼠中 DGC 和 UGC 功能的丧失,我们生成了既缺失 SSPN 又缺失α7 整合素的小鼠(DKO,双重缺失)。DKO 小鼠的肌肉再生、肌膜完整性和纤维化加剧,与杜氏肌营养不良症(DMD)患者的肌肉非常相似,这表明整合素的继发性缺失对发病机制有重要贡献。DKO 肌肉中的 DGC 和 UGC、层粘连蛋白结合和 Akt 信号转导表达受到负面影响,导致特定力性能严重下降。我们证明 SSPN 是肌营养不良蛋白和 Utr 功能的必要组成部分,SSPN 对整合素信号的调节对于细胞外基质附着和肌肉力量发展是必需的。