FKBP12 contributes to α-synuclein toxicity by regulating the calcineurin-dependent phosphoproteome.

Caraveo, Gabriela; Soste, Martin; Cappelleti, Valentina; Fanning, Saranna; van Rossum, Damian B; Whitesell, Luke; Huang, Yanmei; Chung, Chee Yeun et al. · Proc Natl Acad Sci U S A · 2017

basic_science · Level V

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Abstract

Calcineurin is an essential Ca<sup>2+</sup>-dependent phosphatase. Increased calcineurin activity is associated with α-synuclein (α-syn) toxicity, a protein implicated in Parkinson's Disease (PD) and other neurodegenerative diseases. Calcineurin can be inhibited with Tacrolimus through the recruitment and inhibition of the 12-kDa <i>cis-trans</i> proline isomerase FK506-binding protein (FKBP12). Whether calcineurin/FKBP12 represents a native physiologically relevant assembly that occurs in the absence of pharmacological perturbation has remained elusive. We leveraged α-syn as a model to interrogate whether FKBP12 plays a role in regulating calcineurin activity in the absence of Tacrolimus. We show that FKBP12 profoundly affects the calcineurin-dependent phosphoproteome, promoting the dephosphorylation of a subset of proteins that contributes to α-syn toxicity. Using a rat model of PD, partial elimination of the functional interaction between FKBP12 and calcineurin, with low doses of the Food and Drug Administration (FDA)-approved compound Tacrolimus, blocks calcineurin's activity toward those proteins and protects against the toxic hallmarks of α-syn pathology. Thus, FKBP12 can endogenously regulate calcineurin activity with therapeutic implications for the treatment of PD.

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