Department of Molecular & Integrative Physiology, University of Michigan, Ann Arbor, Michigan 48109-0622, USA.
Am J Physiol Cell Physiol. 2010 Dec;299(6):C1430-40. doi: 10.1152/ajpcell.00192.2010. Epub 2010 Sep 15.
The glycosylation of dystroglycan is required for its function as a high-affinity laminin receptor, and loss of dystroglycan glycosylation results in congenital muscular dystrophy. The purpose of this study was to investigate the functional defects in slow- and fast-twitch muscles of glycosylation-deficient Large(myd) mice. While a partial alteration in glycosylation of dystroglycan in heterozygous Large(myd/+) mice was not sufficient to alter muscle function, homozygous Large(myd/myd) mice demonstrated a marked reduction in specific force in both soleus and extensor digitorum longus (EDL) muscles. Although EDL muscles from Large(myd/myd) mice were highly susceptible to lengthening contraction-induced injury, Large(myd/myd) soleus muscles surprisingly showed no greater force deficit compared with wild-type soleus muscles even after five lengthening contractions. Despite no increased susceptibility to injury, Large(myd/myd) soleus muscles showed loss of dystroglycan glycosylation and laminin binding activity and dystrophic pathology. Interestingly, we show that soleus muscles have a markedly higher sarcolemma expression of β(1)-containing integrins compared with EDL and gastrocnemius muscles. Therefore, we conclude that β(1)-containing integrins play an important role as matrix receptors in protecting muscles containing slow-twitch fibers from contraction-induced injury in the absence of dystroglycan function, and that contraction-induced injury appears to be a separable phenotype from the dystrophic pathology of muscular dystrophy.
肌聚糖的糖基化对于其作为高亲和力层粘连蛋白受体的功能是必需的,而肌聚糖糖基化的缺失会导致先天性肌肉营养不良。本研究的目的是研究糖基化缺陷的 Large(myd) 小鼠的慢肌和快肌的功能缺陷。尽管杂合子 Large(myd/+) 小鼠中肌聚糖的糖基化部分改变不足以改变肌肉功能,但纯合子 Large(myd/myd) 小鼠的比目鱼肌和趾长伸肌(EDL)的特定力量明显降低。虽然 EDL 肌肉极易受到伸展收缩引起的损伤,但令人惊讶的是,与野生型比目鱼肌相比,Large(myd/myd) 比目鱼肌在经过五次伸展收缩后并没有更大的力量缺陷。尽管没有增加的易感性损伤,Large(myd/myd) 比目鱼肌表现出肌聚糖糖基化和层粘连蛋白结合活性以及肌营养不良病理的缺失。有趣的是,我们发现比目鱼肌的β1 整联蛋白的表达明显高于 EDL 和腓肠肌。因此,我们得出结论,β1 整联蛋白作为基质受体在缺乏肌聚糖功能的情况下,在保护含有慢肌纤维的肌肉免受收缩引起的损伤方面起着重要作用,并且收缩引起的损伤似乎是肌肉营养不良的肌营养不良病理的一个可分离的表型。