McKee Karen K, Crosson Stephanie C, Meinen Sarina, Reinhard Judith R, Rüegg Markus A, Yurchenco Peter D
J Clin Invest. 2017 Mar 1;127(3):1075-1089. doi: 10.1172/JCI90854. Epub 2017 Feb 20.
Mutations in laminin α2-subunit (Lmα2, encoded by LAMA2) are linked to approximately 30% of congenital muscular dystrophy cases. Mice with a homozygous mutation in Lama2 (dy2J mice) express a nonpolymerizing form of laminin-211 (Lm211) and are a model for ambulatory-type Lmα2-deficient muscular dystrophy. Here, we developed transgenic dy2J mice with muscle-specific expression of αLNNd, a laminin/nidogen chimeric protein that provides a missing polymerization domain. Muscle-specific expression of αLNNd in dy2J mice resulted in strong amelioration of the dystrophic phenotype, manifested by the prevention of fibrosis and restoration of forelimb grip strength. αLNNd also restored myofiber shape, size, and numbers to control levels in dy2J mice. Laminin immunostaining and quantitation of tissue extractions revealed increased Lm211 expression in αLNNd-transgenic dy2J mice. In cultured myotubes, we determined that αLNNd expression increased myotube surface accumulation of polymerization-deficient recombinant laminins, with retention of collagen IV, reiterating the basement membrane (BM) changes observed in vivo. Laminin LN domain mutations linked to several of the Lmα2-deficient muscular dystrophies are predicted to compromise polymerization. The data herein support the hypothesis that engineered expression of αLNNd can overcome polymerization deficits to increase laminin, stabilize BM structure, and substantially ameliorate muscular dystrophy.
层粘连蛋白α2亚基(由LAMA2编码的Lmα2)的突变与约30%的先天性肌营养不良病例相关。Lama2基因纯合突变的小鼠(dy2J小鼠)表达一种非聚合形式的层粘连蛋白-211(Lm211),是动态型Lmα2缺陷型肌营养不良的模型。在此,我们构建了肌肉特异性表达αLNNd的转基因dy2J小鼠,αLNNd是一种层粘连蛋白/巢蛋白嵌合蛋白,可提供缺失的聚合结构域。dy2J小鼠中αLNNd的肌肉特异性表达导致营养不良表型显著改善,表现为纤维化的预防和前肢抓握力的恢复。αLNNd还使dy2J小鼠的肌纤维形状、大小和数量恢复到对照水平。层粘连蛋白免疫染色和组织提取物定量显示,αLNNd转基因dy2J小鼠中Lm211表达增加。在培养的肌管中,我们确定αLNNd的表达增加了聚合缺陷型重组层粘连蛋白在肌管表面的积累,并保留了IV型胶原,这再次证实了体内观察到的基底膜(BM)变化。与几种Lmα2缺陷型肌营养不良相关的层粘连蛋白LN结构域突变预计会损害聚合作用。本文的数据支持这样的假设,即αLNNd的工程化表达可以克服聚合缺陷,增加层粘连蛋白,稳定BM结构,并显著改善肌营养不良。