| Literature DB >> 33742095 |
Pankaj Pathak1, Yotam Blech-Hermoni1, Kalpana Subedi1, Jessica Mpamugo1, Charissa Obeng-Nyarko1, Rachel Ohman1, Ilda Molloy1, Malcolm Kates1, Jessica Hale1, Stacey Stauffer2, Shyam K Sharan2, Ami Mankodi3.
Abstract
Mechanical stress induced by contractions constantly threatens the integrity of muscle Z-disc, a crucial force-bearing structure in striated muscle. The PDZ-LIM proteins have been proposed to function as adaptors in transducing mechanical signals to preserve the Z-disc structure, however the underlying mechanisms remain poorly understood. Here, we show that LDB3, a well-characterized striated muscle PDZ-LIM protein, modulates mechanical stress signaling through interactions with the mechanosensing domain in filamin C, its chaperone HSPA8, and PKCα in the Z-disc of skeletal muscle. Studies of Ldb3Ala165Val/+ mice indicate that the myopathy-associated LDB3 p.Ala165Val mutation triggers early aggregation of filamin C and its chaperones at muscle Z-disc before aggregation of the mutant protein. The mutation causes protein aggregation and eventually Z-disc myofibrillar disruption by impairing PKCα and TSC2-mTOR, two important signaling pathways regulating protein stability and disposal of damaged cytoskeletal components at a major mechanosensor hub in the Z-disc of skeletal muscle.Entities:
Year: 2021 PMID: 33742095 PMCID: PMC7979776 DOI: 10.1038/s42003-021-01864-1
Source DB: PubMed Journal: Commun Biol ISSN: 2399-3642