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α7β1整合素的转基因表达可维持肌肉完整性、增强再生能力、促进肥大并减轻营养不良小鼠的心肌病。

Transgenic expression of {alpha}7{beta}1 integrin maintains muscle integrity, increases regenerative capacity, promotes hypertrophy, and reduces cardiomyopathy in dystrophic mice.

作者信息

Burkin Dean J, Wallace Gregory Q, Milner Derek J, Chaney Eric J, Mulligan James A, Kaufman Stephen J

机构信息

Department of Cell and Structural Biology, University of Illinois, B107 Chemical and Life Sciences Laboratory, 601 South Goodwin Ave., Urbana, IL 61801, USA.

出版信息

Am J Pathol. 2005 Jan;166(1):253-63. doi: 10.1016/s0002-9440(10)62249-3.

Abstract

We previously reported that enhanced expression of the alpha7beta1 integrin ameliorates the development of muscular dystrophy and extends longevity in alpha7BX2-mdx/utr(-/-) transgenic mice (Burkin DJ, Wallace GQ, Nicol KJ, Kaufman DJ, Kaufman SJ: Enhanced expression of the alpha7beta1 integrin reduces muscular dystrophy and restores viability in dystrophic mice. We now report on the mechanism by which these mice were rescued by the integrin. As a result of increased integrin in alpha7BX2-mdx/utr(-/-) mice the structural integrity of the myotendinous and neuromuscular junctions are maintained. A twofold increase in satellite cells in alpha7BX2-mdx/utr(-/-) skeletal muscle was detected by immunofluorescence using the satellite cell marker c-met. These cells enhanced the regenerative capacity of muscle in the transgenic animals as determined by fusion of BrdUrd-labeled cells into muscle fibers. Increased integrin also leads to hypertrophy. Finally, transgenic expression of alpha7BX2 integrin chain in skeletal muscle secondarily reduces the development of cardiomyopathy, the ultimate cause of death in these animals. We believe this multiplicity of responses to increased alpha7beta1 integrin collectively inhibits the development of muscle disease and increases longevity in these mice.

摘要

我们之前报道过,α7β1整合素的表达增强可改善肌肉萎缩症的发展,并延长α7BX2-mdx/utr(-/-)转基因小鼠的寿命(Burkin DJ、Wallace GQ、Nicol KJ、Kaufman DJ、Kaufman SJ:α7β1整合素的表达增强可减轻肌肉萎缩症并恢复营养不良小鼠的活力)。我们现在报告这些小鼠通过整合素获救的机制。由于α7BX2-mdx/utr(-/-)小鼠中整合素增加,肌腱和神经肌肉接头的结构完整性得以维持。使用卫星细胞标记物c-met通过免疫荧光检测到α7BX2-mdx/utr(-/-)骨骼肌中的卫星细胞增加了两倍。如通过BrdUrd标记的细胞融合到肌纤维中所确定的,这些细胞增强了转基因动物肌肉的再生能力。整合素增加还会导致肥大。最后,骨骼肌中α7BX2整合素链的转基因表达继而减少了心肌病的发展,心肌病是这些动物死亡的最终原因。我们认为,对α7β1整合素增加的这种多种反应共同抑制了肌肉疾病的发展并延长了这些小鼠的寿命。

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