Huang Yanchao, Laval Steven H, van Remoortere Alexandra, Baudier Jacques, Benaud Chriselle, Anderson Louise V B, Straub Volker, Deelder Andre, Frants Rune R, den Dunnen Johan T, Bushby Kate, van der Maarel Silvère M
Center for Human and Clinical Genetics, Leiden Univesity Medical Center, Leiden, The Netherlands.
FASEB J. 2007 Mar;21(3):732-42. doi: 10.1096/fj.06-6628com. Epub 2006 Dec 21.
Mutations in dysferlin cause limb girdle muscular dystrophy 2B, Miyoshi myopathy and distal anterior compartment myopathy. Dysferlin is proposed to play a role in muscle membrane repair. To gain functional insight into the molecular mechanisms of dysferlin, we have searched for dysferlin-interacting proteins in skeletal muscle. By coimmunoprecipitation coupled with mass spectrometry, we demonstrate that AHNAK interacts with dysferlin. We defined the binding sites in dysferlin and AHNAK as the C2A domain in dysferlin and the carboxyterminal domain of AHNAK by glutathione S-transferase (GST)-pull down assays. As expected, the N-terminal domain of myoferlin also interacts with the carboxyterminal domain of AHNAK. In normal skeletal muscle, dysferlin and AHNAK colocalize at the sarcolemmal membrane and T-tubules. In dysferlinopathies, reduction or absence of dysferlin correlates with a secondary muscle-specific loss of AHNAK. Moreover, in regenerating rat muscle, dysferlin and AHNAK showed a marked increase and cytoplasmic localization, consistent with the direct interaction between them. Our data suggest that dysferlin participates in the recruitment and stabilization of AHNAK to the sarcolemma and that AHNAK plays a role in dysferlin membrane repair process. It may also have significant implications for understanding the biology of AHNAK-containing exocytotic vesicles, "enlargosomes," in plasma membrane remodeling and repair.
dysferlin基因突变可导致2B型肢带型肌营养不良症、宫下肌病和远端前间隔肌病。有人提出dysferlin在肌膜修复中发挥作用。为了深入了解dysferlin的分子机制,我们在骨骼肌中寻找与dysferlin相互作用的蛋白。通过免疫共沉淀结合质谱分析,我们证明AHNAK与dysferlin相互作用。我们通过谷胱甘肽S-转移酶(GST)下拉实验确定dysferlin和AHNAK中的结合位点分别为dysferlin中的C2A结构域和AHNAK的羧基末端结构域。正如预期的那样,肌铁蛋白的N末端结构域也与AHNAK的羧基末端结构域相互作用。在正常骨骼肌中,dysferlin和AHNAK共定位于肌膜和T小管。在dysferlin病中,dysferlin的减少或缺失与AHNAK的继发性肌肉特异性丢失相关。此外,在再生的大鼠肌肉中,dysferlin和AHNAK显著增加并定位于细胞质中,这与它们之间的直接相互作用一致。我们的数据表明,dysferlin参与了AHNAK在肌膜上的募集和稳定,并且AHNAK在dysferlin介导的膜修复过程中发挥作用。这对于理解含AHNAK的胞吐小泡“增大体”在质膜重塑和修复中的生物学特性也可能具有重要意义。