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Ichimura, A.

Publications and source records attributed to Ichimura, A..

2 recordsLinked to original sources

Atypical cell death in the growth plate chondrocytes of Tric-b-knockout mice

TRIC-A and TRIC-B proteins form homotrimeric cation-permeable channels in the sarco/endoplasmic reticulum (SR/ER) and nuclear membranes and are thought to contribute to counterionic flux coupled with store Ca2+ release in various cell types. Serious mutations in the TRIC-B locus cause autosomal recessive osteogenesis imperfecta (OI), which is characterized by insufficient bone mineralization. We have reported that Tric-b-knockout mice can be used as an OI model. Here we report irregular cell death in proliferating growth plate chondrocytes in developing Tric-b-knockout bones. In the knockout chondrocytes, excess pro-collagen fibers were occasionally accumulated in severely dilated ER elements. Of the major ER stress pathways, the PERK pathway was preferentially hyperactivated in the knockout chondrocytes, and most likely altered gene expression to induce apoptosis-related proteins including CHOP and caspase 12. In Ca2+ imaging experiments, the knockout chondrocytes exhibited aberrant Ca2+ handling; ER Ca2+ release was impaired, and intracellular Ca2+ concentration was elevated. Our data suggest that Tric-b deficiency directs growth plate chondrocytes to pro-apoptotic stages by compromising cellular Ca2+-handling and exacerbating ER stress, leading to atypical apoptotic cell death.

developmental biology↗

C-type natriuretic peptide facilitates autonomic Ca2+ entry in growth plate chondrocytes for stimulating bone growth

The growth plates are cartilage tissues found at both ends of developing bones, and vital proliferation and differentiation of growth plate chondrocytes are primarily responsible for bone growth. C-type natriuretic peptide (CNP) stimulates bone growth by activating natriuretic peptide receptor 2 (NPR2) which is equipped with guanylate cyclase on the cytoplasmic side, but its signaling pathway is unclear in growth plate chondrocytes. We previously reported that transient receptor potential melastatin-like 7 (TRPM7) channels mediate intermissive Ca2+ influx in growth plate chondrocytes, leading to activation of Ca2+/calmodulin-dependent protein kinase II (CaMKII) for promoting bone growth. In this report, we provide experimental evidence indicating a functional link between CNP and TRPM7 channels. Our pharmacological data suggest that CNP-evoked NPR2 activation elevates cellular cGMP content and stimulates big-conductance Ca2+-dependent K+ (BK) channels as a substrate for cGMP-dependent protein kinase (PKG). BK channel-induced hyperpolarization likely enhances the driving force of TRPM7-mediated Ca2+ entry and seems to accordingly activate CaMKII. Indeed, ex vivo organ culture analysis indicates that CNP-facilitated bone growth is abolished by chondrocyte-specific Trpm7 gene ablation. The defined CNP signaling pathway, the NPR2-PKG-BK channel-TRPM7 channel-CaMKII axis, likely pinpoints promising target proteins for developing new therapeutic treatments for divergent growth disorders.

cell biology↗