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Faux by E. Davies
Faux by E.  Davies








Both proteins are produced from a single post-translationally modified polypeptide, and are heavily glycosylated prior to being sorted to their respective extracellular and transmembrane locations. The widely expressed α and β dystroglycans make up the core of the DAPC, establishing the transmembrane link between laminin-2 and dystrophin. Dystrophin deficiency results in loss of the associated protein complex and severe muscular dystrophy, underscoring the central role that dystrophin plays in assembling and maintaining the link between cytoskeletal actin and the extracellular matrix.

Faux by E. Davies

elegans homologue possessing the same number of spectrin repeats, much of the rod domain appears dispensable and a dystrophin molecule comprising at least eight integral repeats remains relatively functional( Harper et al., 2002). Although remarkable evolutionary conservation exists, with even the C. Dystrophin stretches laterally along F-actin filaments, binding primarily via three sites within the N-terminal region( Norwood et al., 2000) and electrostatically through a cluster of basic repeats (11-17) within the rod domain ( Amann et al., 1998). The muscle isoform of dystrophin is a 427 kDa protein consisting of an N-terminal actin-binding domain, a central rod-like domain comprising 24 spectrin-like triple helical coiled coils, and a cysteine-rich C-terminus that allows assembly of the DAPC. This brief review offers a glimpse of the major known proteins that constitute the DAPC and the defects caused by their absence.

Faux by E. Davies

Various members of the DAPC, such as the sarcoglycans, have already been implicated in a number of muscle diseases, illustrating the vital role this complex plays in the maintenance of muscle integrity. There is also evidence that the DAPC is involved in cell signalling via its interactions with calmodulin, Grb2 and nNOS( Rando, 2001). The DAPC is thought to play a structural role in linking the actin cytoskeleton to the extracellular matrix,stabilizing the sarcolemma during repeated cycles of contraction and relaxation, and transmitting force generated in the muscle sarcomeres to the extracellular matrix ( Petrof et al.,1993). In skeletal and cardiac muscle, dystrophin associates with various proteins to form the dystrophin-associated protein complex (DAPC).

Faux by E. Davies

The lethal muscle-wasting disorder, Duchenne muscular dystrophy, is caused by mutations or deletions in the dystrophin gene.










Faux by E.  Davies