Milner Derek J, Kaufman Stephen J
Department of Cell and Developmental Biology, University of Illinois, B107 Chemical and Life Sciences Laboratory, 601 South Goodwin Ave., Urbana, IL 61801, USA.
Am J Pathol. 2007 Feb;170(2):609-19. doi: 10.2353/ajpath.2007.060686.
Transgenic expression of the alpha7beta1 integrin in the dystrophic mdx/utr-/- mouse decreases development of muscular dystrophy and enhances longevity. To explore the possibility that elevating alpha7beta1 integrin expression could also ameliorate different forms of muscular dystrophy, we used transgenic technology to enhance integrin expression in mice lacking delta-sarcoglycan (delta sgc), a mouse model for human limb girdle muscular dystrophy type 2F. Unlike alpha7 transgenic mdx/utr-/- mice, enhanced alpha7beta1 integrin expression in the delta sgc-null mouse did not alleviate muscular dystrophy in these animals. Expression of the transgene in the delta sgc-null did not alleviate dystrophic histopathology, nor did it decrease cardiomyopathy or restore exercise tolerance. One hallmark of integrin-mediated alleviation of muscular dystrophy in the mdx/utr-/- background is the restoration of myotendinous junction integrity. As assessed by atomic force microscopy, myotendinous junctions from normal and delta sgc-null mice were indistinguishable, thus suggesting the important influence of myotendinous junction integrity on the severity of muscular dystrophy and providing a possible explanation for the inability of enhanced integrin expression to alleviate dystrophy in the delta sgc-null mouse. These results suggest that distinct mechanisms underlie the development of the diseases that arise from deficiencies in dystrophin and sarcoglycan.
α7β1整合素在营养不良性mdx/utr-/-小鼠中的转基因表达可减少肌肉营养不良的发展并延长寿命。为了探究提高α7β1整合素表达是否也能改善不同形式的肌肉营养不良,我们利用转基因技术在缺乏δ-肌聚糖(δ-sgc)的小鼠中增强整合素表达,δ-sgc缺乏小鼠是人类2F型肢带型肌肉营养不良的小鼠模型。与α7转基因mdx/utr-/-小鼠不同,在δ-sgc基因敲除小鼠中增强α7β1整合素表达并不能减轻这些动物的肌肉营养不良。转基因在δ-sgc基因敲除小鼠中的表达并不能减轻营养不良性组织病理学变化,也不能减少心肌病或恢复运动耐力。在mdx/utr-/-背景下,整合素介导减轻肌肉营养不良的一个标志是肌-腱连接完整性的恢复。通过原子力显微镜评估,正常小鼠和δ-sgc基因敲除小鼠的肌-腱连接没有区别,这表明肌-腱连接完整性对肌肉营养不良严重程度有重要影响,并为增强整合素表达无法减轻δ-sgc基因敲除小鼠的营养不良提供了一种可能的解释。这些结果表明,由肌营养不良蛋白和肌聚糖缺乏引起的疾病的发展存在不同的机制。