Department of Cellular and Molecular Medicine, Center for Neuromuscular Disease, University of Ottawa, Ottawa, Ontario K1H 8M5, Canada.
Mol Biol Cell. 2010 Jul 1;21(13):2182-90. doi: 10.1091/mbc.e10-02-0154. Epub 2010 Apr 28.
In adult skeletal muscle, brain-derived neurotrophic factor (BDNF) is expressed in myogenic progenitors known as satellite cells. To functionally address the role of BDNF in muscle satellite cells and regeneration in vivo, we generated a mouse in which BDNF is specifically depleted from skeletal muscle cells. For comparative purposes, and to determine the specific role of muscle-derived BDNF, we also examined muscles of the complete BDNF(-/-) mouse. In both models, expression of the satellite cell marker Pax7 was significantly decreased. Furthermore, proliferation and differentiation of primary myoblasts was abnormal, exhibiting delayed induction of several markers of differentiation as well as decreased myotube size. Treatment with exogenous BDNF protein was sufficient to rescue normal gene expression and myotube size. Because satellite cells are responsible for postnatal growth and repair of skeletal muscle, we next examined whether regenerative capacity was compromised. After injury, BDNF-depleted muscle showed delayed expression of several molecular markers of regeneration, as well as delayed appearance of newly regenerated fibers. Recovery of wild-type BDNF levels was sufficient to restore normal regeneration. Together, these findings suggest that BDNF plays an important role in regulating satellite cell function and regeneration in vivo, particularly during early stages.
在成人骨骼肌中,脑源性神经营养因子(BDNF)表达在称为卫星细胞的成肌祖细胞中。为了在体内从功能上研究 BDNF 在肌肉卫星细胞和再生中的作用,我们生成了一种 BDNF 特异性缺失骨骼肌细胞的小鼠模型。出于比较的目的,并确定肌肉源性 BDNF 的特定作用,我们还检查了完全 BDNF(-/-) 小鼠的肌肉。在这两种模型中,卫星细胞标志物 Pax7 的表达均显著降低。此外,原代成肌细胞的增殖和分化异常,表现为分化的几个标志物的诱导延迟以及肌管大小减小。外源性 BDNF 蛋白的处理足以挽救正常的基因表达和肌管大小。由于卫星细胞负责骨骼肌的出生后生长和修复,我们接下来检查了再生能力是否受损。损伤后,BDNF 缺失的肌肉中几种再生分子标志物的表达延迟,以及新再生纤维的出现延迟。恢复野生型 BDNF 水平足以恢复正常的再生。这些发现表明,BDNF 在体内调节卫星细胞功能和再生中发挥着重要作用,尤其是在早期阶段。