Cytosolic calcium regulates cytoplasmic accumulation of TDP-43 through Calpain-A and Importin α3.

Park, Jeong Hyang; Chung, Chang Geon; Park, Sung Soon; Lee, Davin; Kim, Kyung Min; Jeong, Yeonjin; Kim, Eun Seon; Cho, Jae Ho et al. · Elife · 2020

basic_science · Level V

Where this comes from

Abstract

Cytoplasmic accumulation of TDP-43 in motor neurons is the most prominent pathological feature in amyotrophic lateral sclerosis (ALS). A feedback cycle between nucleocytoplasmic transport (NCT) defect and TDP-43 aggregation was shown to contribute to accumulation of TDP-43 in the cytoplasm. However, little is known about cellular factors that can control the activity of NCT, thereby affecting TDP-43 accumulation in the cytoplasm. Here, we identified via FRAP and optogenetics cytosolic calcium as a key cellular factor controlling NCT of TDP-43. Dynamic and reversible changes in TDP-43 localization were observed in <i>Drosophila</i> sensory neurons during development. Genetic and immunohistochemical analyses identified the cytosolic calcium-Calpain-A-Importin α3 pathway as a regulatory mechanism underlying NCT of TDP-43. In <i>C9orf72</i> ALS fly models, upregulation of the pathway activity by increasing cytosolic calcium reduced cytoplasmic accumulation of TDP-43 and mitigated behavioral defects. Together, these results suggest the calcium-Calpain-A-Importin α3 pathway as a potential therapeutic target of ALS.

Medical subject headings