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Bit-1 is an essential regulator of myogenic differentiation. | LitMetric

AI Article Synopsis

  • Muscle differentiation involves complex signaling pathways that lead to the formation of multinucleated myofibers, but the regulation of these pathways is not fully understood.
  • Mutations in the Bit-1 protein are linked to muscle weakness in infants, and research shows that Bit-1 plays a crucial role in skeletal muscle development through caspase-mediated signaling.
  • Bit-1 influences myoblast differentiation; its absence causes early expression of muscle proteins and myopathy, while maintaining its levels is necessary for proper muscle formation.

Article Abstract

Muscle differentiation requires a complex signaling cascade that leads to the production of multinucleated myofibers. Genes regulating the intrinsic mitochondrial apoptotic pathway also function in controlling cell differentiation. How such signaling pathways are regulated during differentiation is not fully understood. Bit-1 (also known as PTRH2) mutations in humans cause infantile-onset multisystem disease with muscle weakness. We demonstrate here that Bit-1 controls skeletal myogenesis through a caspase-mediated signaling pathway. Bit-1-null mice exhibit a myopathy with hypotrophic myofibers. Bit-1-null myoblasts prematurely express muscle-specific proteins. Similarly, knockdown of Bit-1 expression in C2C12 myoblasts promotes early differentiation, whereas overexpression delays differentiation. In wild-type mice, Bit-1 levels increase during differentiation. Bit-1-null myoblasts exhibited increased levels of caspase 9 and caspase 3 without increased apoptosis. Bit-1 re-expression partially rescued differentiation. In Bit-1-null muscle, Bcl-2 levels are reduced, suggesting that Bcl-2-mediated inhibition of caspase 9 and caspase 3 is decreased. Bcl-2 re-expression rescued Bit-1-mediated early differentiation in Bit-1-null myoblasts and C2C12 cells with knockdown of Bit-1 expression. These results support an unanticipated yet essential role for Bit-1 in controlling myogenesis through regulation of Bcl-2.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4446732PMC
http://dx.doi.org/10.1242/jcs.158964DOI Listing

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