Neurogenetics Branch, National Institute of Neurological Disorders and Stroke, Bethesda, MD, USA.
Mouse Cancer Genetics Program, Center for Cancer Research, National Cancer Institute, Frederick, MD, USA.
Commun Biol. 2021 Mar 19;4(1):355. doi: 10.1038/s42003-021-01864-1.
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 Ldb3 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.
机械应力由收缩不断威胁肌肉 Z 盘的完整性,肌肉 Z 盘是横纹肌中重要的力承载结构。PDZ-LIM 蛋白被认为是将机械信号转导为维持 Z 盘结构的适配器,然而其潜在机制仍知之甚少。在这里,我们表明 LDB3,一种特征明确的横纹肌 PDZ-LIM 蛋白,通过与细丝蛋白 C 的机械感应域、其伴侣 HSPA8 和 PKCα 在骨骼肌 Z 盘的相互作用来调节机械应激信号。对 Ldb3 小鼠的研究表明,肌病相关的 LDB3 p.Ala165Val 突变会在突变蛋白聚集之前,在肌肉 Z 盘触发细丝蛋白 C 及其伴侣的早期聚集。该突变通过损害 PKCα 和 TSC2-mTOR,两种重要的信号通路,导致蛋白聚集,并最终破坏 Z 盘肌原纤维,这两种信号通路在骨骼肌的主要机械感受器枢纽处调节蛋白稳定性和受损细胞骨架成分的处理。